-
1
-
-
0030882381
-
Mutations predisposing to hereditary nonpolyposis colorectal cancer: Database and results of a collaborative study. The International Collaborative Group on Hereditary Nonpolyposis Colorectal Cancer
-
Peltomäki P, Vasen HF Mutations predisposing to hereditary nonpolyposis colorectal cancer: database and results of a collaborative study. The International Collaborative Group on Hereditary Nonpolyposis Colorectal Cancer. Gastroenterology. 113:1997;1146-1158.
-
(1997)
Gastroenterology
, vol.113
, pp. 1146-1158
-
-
Peltomäki, P.1
Vasen, H.F.2
-
3
-
-
0026355962
-
Mechanisms and biological effects of mismatch repair
-
Modrich P Mechanisms and biological effects of mismatch repair. Annu Rev Genet. 25:1991;229-253.
-
(1991)
Annu Rev Genet
, vol.25
, pp. 229-253
-
-
Modrich, P.1
-
4
-
-
0029784320
-
Biochemistry and genetics of eukaryotic mismatch repair
-
Kolodner R Biochemistry and genetics of eukaryotic mismatch repair. Genes Dev. 10:1996;1433-1442.
-
(1996)
Genes Dev
, vol.10
, pp. 1433-1442
-
-
Kolodner, R.1
-
5
-
-
0029943449
-
Mismatch repair in replication fidelity, genetic recombination, and cancer biology
-
Modrich P, Lahue R Mismatch repair in replication fidelity, genetic recombination, and cancer biology. Annu Rev Biochem. 65:1996;101-133.
-
(1996)
Annu Rev Biochem
, vol.65
, pp. 101-133
-
-
Modrich, P.1
Lahue, R.2
-
6
-
-
0030803659
-
Strand-specific mismatch repair in mammalian cells
-
Modrich P Strand-specific mismatch repair in mammalian cells. J Biol Chem. 272:1997;24727-24730.
-
(1997)
J Biol Chem
, vol.272
, pp. 24727-24730
-
-
Modrich, P.1
-
7
-
-
0032538880
-
Replication errors: Cha(lle)nging the genome
-
Jiricny J Replication errors: cha(lle)nging the genome. EMBO J. 17:1998;6427-6436.
-
(1998)
EMBO J
, vol.17
, pp. 6427-6436
-
-
Jiricny, J.1
-
8
-
-
0000943131
-
Mismatch repair systems in Saccharomyces cerevisiae
-
J.A. Nickoloff, & M.F. Hoekstra. Totowa NJ: Humana Press
-
Crouse GF Mismatch repair systems in Saccharomyces cerevisiae. Nickoloff JA, Hoekstra MF DNA Repair in Prokaryotes and Lower Eukaryotes, vol 1. 1998;411-448 Humana Press, Totowa NJ.
-
(1998)
DNA Repair in Prokaryotes and Lower Eukaryotes, Vol 1
, pp. 411-448
-
-
Crouse, G.F.1
-
9
-
-
0029868110
-
Redundancy of Saccharomyces cerevisiae MSH3 and MSH6 in MSH2-dependent mismatch repair
-
Marsischky GT, Filosi N, Kane MF, Kolodner R Redundancy of Saccharomyces cerevisiae MSH3 and MSH6 in MSH2-dependent mismatch repair. Genes Dev. 10:1996;407-420.
-
(1996)
Genes Dev
, vol.10
, pp. 407-420
-
-
Marsischky, G.T.1
Filosi, N.2
Kane, M.F.3
Kolodner, R.4
-
10
-
-
0030953472
-
Frameshift intermediates in homopolymer runs are removed efficiently by yeast mismatch repair proteins
-
Greene CN, Jinks-Robertson S Frameshift intermediates in homopolymer runs are removed efficiently by yeast mismatch repair proteins. Mol Cell Biol. 17:1997;2844-2850.
-
(1997)
Mol Cell Biol
, vol.17
, pp. 2844-2850
-
-
Greene, C.N.1
Jinks-Robertson, S.2
-
11
-
-
0030897578
-
Microsatellite instability in yeast: Dependence on repeat unit size and DNA mismatch repair genes
-
Reports mutation rates of repeat sequences in MMR-defective mutants as a function of repeat unit length. Demonstrates that MSH3 and MSH6 are redundant with regards to stability of mononucleotide repeats whereas mutations in MSH3 effect the stability of larger repeat unit lengths.
-
Sia EA, Kokoska RJ, Dominska M, Greenwell P, Petes TD Microsatellite instability in yeast: dependence on repeat unit size and DNA mismatch repair genes. Mol Cell Biol. 17:1997;2851-2858. Reports mutation rates of repeat sequences in MMR-defective mutants as a function of repeat unit length. Demonstrates that MSH3 and MSH6 are redundant with regards to stability of mononucleotide repeats whereas mutations in MSH3 effect the stability of larger repeat unit lengths.
-
(1997)
Mol Cell Biol
, vol.17
, pp. 2851-2858
-
-
Sia, E.A.1
Kokoska, R.J.2
Dominska, M.3
Greenwell, P.4
Petes, T.D.5
-
12
-
-
0031894343
-
Functional overlap in mismatch repair by human MSH3 and MSH6
-
Umar A, Risinger JI, Glaab WE, Tindall KR, Barrett JC, Kunkel TA Functional overlap in mismatch repair by human MSH3 and MSH6. Genetics. 148:1998;1637-1646.
-
(1998)
Genetics
, vol.148
, pp. 1637-1646
-
-
Umar, A.1
Risinger, J.I.2
Glaab, W.E.3
Tindall, K.R.4
Barrett, J.C.5
Kunkel, T.A.6
-
13
-
-
0032500576
-
Characterization of distinct human endometrial carcinoma cell lines deficient in mismatch repair that originated from a single tumor
-
Glaab WE, Risinger JI, Umar A, Kunkel TA, Barrett JC, Tindall KR Characterization of distinct human endometrial carcinoma cell lines deficient in mismatch repair that originated from a single tumor. J Biol Chem. 273:1998;26662-26669.
-
(1998)
J Biol Chem
, vol.273
, pp. 26662-26669
-
-
Glaab, W.E.1
Risinger, J.I.2
Umar, A.3
Kunkel, T.A.4
Barrett, J.C.5
Tindall, K.R.6
-
14
-
-
0030709433
-
Mutation in the mismatch repair gene Msh6 causes cancer susceptibility
-
A report that mutations in the mouse MSH6 gene do not cause mono- or dinucleotide repeat instability but do cause increased cancer susceptibility. Suggests that MSH6 will prove to be an important human cancer susceptibility gene.
-
Edelmann W, Yang K, Umar A, Heyer J, Lau K, Fan K, Liedtke W, Cohen PE, Kane MF, Lipford JRet al. Mutation in the mismatch repair gene Msh6 causes cancer susceptibility. Cell. 91:1997;467-477. A report that mutations in the mouse MSH6 gene do not cause mono- or dinucleotide repeat instability but do cause increased cancer susceptibility. Suggests that MSH6 will prove to be an important human cancer susceptibility gene.
-
(1997)
Cell
, vol.91
, pp. 467-477
-
-
Edelmann, W.1
Yang, K.2
Umar, A.3
Heyer, J.4
Lau, K.5
Fan, K.6
Liedtke, W.7
Cohen, P.E.8
Kane, M.F.9
Lipford, J.R.10
-
15
-
-
0031769438
-
Interactions of human hMSH2 with hMSH3 and hMSH2 with hMSH6: Examination of mutations found in hereditary nonpolyposis colorectal cancer
-
Guerrette S, Wilson T, Gradia S, Fishel R Interactions of human hMSH2 with hMSH3 and hMSH2 with hMSH6: examination of mutations found in hereditary nonpolyposis colorectal cancer. Mol Cell Biol. 18:1998;6616-6623.
-
(1998)
Mol Cell Biol
, vol.18
, pp. 6616-6623
-
-
Guerrette, S.1
Wilson, T.2
Gradia, S.3
Fishel, R.4
-
16
-
-
0032584384
-
Isolation of MutSβ from human cells and comparison of the mismatch repair specificities of MutSβ and MutSα
-
Genschel J, Littman SJ, Drummond JT, Modrich P Isolation of MutSβ from human cells and comparison of the mismatch repair specificities of MutSβ and MutSα J Biol Chem. 273:1998;19895-19901.
-
(1998)
J Biol Chem
, vol.273
, pp. 19895-19901
-
-
Genschel, J.1
Littman, S.J.2
Drummond, J.T.3
Modrich, P.4
-
17
-
-
0032582794
-
RuvAB acts at arrested replication forks
-
The authors report that arrested replication forks are actively converted to double-strand breaks in DNA. Such breaks could promote genome instability.
-
Seigneur M, Bidnenko V, Ehrlich SD, Michel B RuvAB acts at arrested replication forks. Cell. 95:1998;419-430. The authors report that arrested replication forks are actively converted to double-strand breaks in DNA. Such breaks could promote genome instability.
-
(1998)
Cell
, vol.95
, pp. 419-430
-
-
Seigneur, M.1
Bidnenko, V.2
Ehrlich, S.D.3
Michel, B.4
-
18
-
-
0030742948
-
Repair of DNA loops involves DNA-mismatch and nucleotide-excision repair proteins
-
Kirkpatrick DT, Petes TD Repair of DNA loops involves DNA-mismatch and nucleotide-excision repair proteins. Nature. 387:1997;929-931.
-
(1997)
Nature
, vol.387
, pp. 929-931
-
-
Kirkpatrick, D.T.1
Petes, T.D.2
-
19
-
-
0033574043
-
Triplet repeats form secondary structures that escape DNA repair in yeast
-
in press
-
Moore H, Greenwell PW, Liu C-P, Arnheim N, Petes TD: Triplet repeats form secondary structures that escape DNA repair in yeast. Proc Natl Acad Sci USA 1999, in press.
-
(1999)
Proc Natl Acad Sci USA
-
-
Moore, H.1
Greenwell, P.W.2
Liu, C.-P.3
Arnheim, N.4
Petes, T.D.5
-
20
-
-
0031908637
-
Analysis of in vivo correction of defined mismatches in the DNA mismatch repair mutants msh2, msh3 and msh6 of Saccharomyces cerevisiae
-
Luhr B, Scheller J, Meyer P, Kramer W Analysis of in vivo correction of defined mismatches in the DNA mismatch repair mutants msh2, msh3 and msh6 of Saccharomyces cerevisiae. Mol Gen Genet. 257:1998;362-367.
-
(1998)
Mol Gen Genet
, vol.257
, pp. 362-367
-
-
Luhr, B.1
Scheller, J.2
Meyer, P.3
Kramer, W.4
-
21
-
-
0029070143
-
Isolation of an hMSH2-p160 heterodimer that restores DNA mismatch repair to tumor cells [see comments]
-
Drummond JT, Li GM, Longley MJ, Modrich P Isolation of an hMSH2-p160 heterodimer that restores DNA mismatch repair to tumor cells [see comments]. Science. 268:1995;1909-1912.
-
(1995)
Science
, vol.268
, pp. 1909-1912
-
-
Drummond, J.T.1
Li, G.M.2
Longley, M.J.3
Modrich, P.4
-
22
-
-
0029008683
-
GTBP, a 160-kilodalton protein essential for mismatch-binding activity in human cells
-
Palombo F, Gallinari P, Iaccarino I, Lettieri T, Hughes M, D'Arrigo A, Truong O, Hsuan JJ, Jiricny J GTBP, a 160-kilodalton protein essential for mismatch-binding activity in human cells. Science. 268:1995;1912-1914.
-
(1995)
Science
, vol.268
, pp. 1912-1914
-
-
Palombo, F.1
Gallinari, P.2
Iaccarino, I.3
Lettieri, T.4
Hughes, M.5
D'Arrigo, A.6
Truong, O.7
Hsuan, J.J.8
Jiricny, J.9
-
23
-
-
0029659046
-
HMutSβ, a heterodimer of hMSH2 and hMSH3, binds to insertion/deletion loops in DNA
-
Palombo F, Iaccarino I, Nakajima E, Ikejima M, Shimada T, Jiricny J hMutSβ, a heterodimer of hMSH2 and hMSH3, binds to insertion/deletion loops in DNA. Curr Biol. 6:1996;1181-1184.
-
(1996)
Curr Biol
, vol.6
, pp. 1181-1184
-
-
Palombo, F.1
Iaccarino, I.2
Nakajima, E.3
Ikejima, M.4
Shimada, T.5
Jiricny, J.6
-
24
-
-
0030250603
-
Binding of insertion/deletion DNA mismatches by the heterodimer of yeast mismatch repair proteins MSH2 and MSH3
-
Habraken Y, Sung P, Prakash L, Prakash S Binding of insertion/deletion DNA mismatches by the heterodimer of yeast mismatch repair proteins MSH2 and MSH3. Curr Biol. 6:1996;1185-1187.
-
(1996)
Curr Biol
, vol.6
, pp. 1185-1187
-
-
Habraken, Y.1
Sung, P.2
Prakash, L.3
Prakash, S.4
-
25
-
-
0029813614
-
The Saccharomyces cerevisiae Msh2 and Msh6 proteins form a complex that specifically binds to duplex oligonucleotides containing mismatched DNA base pairs
-
Alani E The Saccharomyces cerevisiae Msh2 and Msh6 proteins form a complex that specifically binds to duplex oligonucleotides containing mismatched DNA base pairs. Mol Cell Biol. 16:1996;5604-5615.
-
(1996)
Mol Cell Biol
, vol.16
, pp. 5604-5615
-
-
Alani, E.1
-
26
-
-
0032126812
-
Frameshift mismatch recognition by the human MutS alpha complex
-
Macpherson P, Humbert O, Karran P Frameshift mismatch recognition by the human MutS alpha complex. Mutat Res. 408:1998;55-66.
-
(1998)
Mutat Res
, vol.408
, pp. 55-66
-
-
MacPherson, P.1
Humbert, O.2
Karran, P.3
-
27
-
-
0023777009
-
Nucleotide sequence of the Salmonella typhimurium mutS gene required for mismatch repair: Homology of MutS and HexA of Streptococcus pneumoniae
-
Haber LT, Pang PP, Sobell DI, Mankovich JA, Walker GC Nucleotide sequence of the Salmonella typhimurium mutS gene required for mismatch repair: homology of MutS and HexA of Streptococcus pneumoniae. J Bacteriol. 170:1988;197-202.
-
(1988)
J Bacteriol
, vol.170
, pp. 197-202
-
-
Haber, L.T.1
Pang, P.P.2
Sobell, D.I.3
Mankovich, J.A.4
Walker, G.C.5
-
28
-
-
0031456973
-
The human mismatch recognition complex hMSH2-hMSH6 functions as a novel molecular switch
-
Proposes a model in which the human MSH2-MSH6 complex bound to ADP binds to a mispaired base in DNA. ATP is then able to displace the ADP resulting in a conformational change of the MSH2-MSH6 after which the MSH2-MSH6 leaves the mispair (subsequent work suggests that the MSH2-MSH6 slides along the DNA). Once MSH2-MSH6 leaves the mispair, it is able to signal other MMR proteins.
-
Gradia S, Acharya S, Fishel R The human mismatch recognition complex hMSH2-hMSH6 functions as a novel molecular switch. Cell. 91:1997;995-1005. Proposes a model in which the human MSH2-MSH6 complex bound to ADP binds to a mispaired base in DNA. ATP is then able to displace the ADP resulting in a conformational change of the MSH2-MSH6 after which the MSH2-MSH6 leaves the mispair (subsequent work suggests that the MSH2-MSH6 slides along the DNA). Once MSH2-MSH6 leaves the mispair, it is able to signal other MMR proteins.
-
(1997)
Cell
, vol.91
, pp. 995-1005
-
-
Gradia, S.1
Acharya, S.2
Fishel, R.3
-
29
-
-
0030962031
-
Genetic and biochemical analysis of Msh2p-Msh6p: Role of ATP hydrolysis and Msh2p-Msh6p subunit interactions in mismatch base pair recognition
-
Alani E, Sokolsky T, Studamire B, Miret JJ, Lahue RS Genetic and biochemical analysis of Msh2p-Msh6p: role of ATP hydrolysis and Msh2p-Msh6p subunit interactions in mismatch base pair recognition. Mol Cell Biol. 17:1997;2436-2447.
-
(1997)
Mol Cell Biol
, vol.17
, pp. 2436-2447
-
-
Alani, E.1
Sokolsky, T.2
Studamire, B.3
Miret, J.J.4
Lahue, R.S.5
-
30
-
-
0032079736
-
HMSH2 and hMSH6 play distinct roles in mismatch binding and contribute differently to the ATPase activity of hMutSα
-
Iaccarino I, Marra G, Palombo F, Jiricny J hMSH2 and hMSH6 play distinct roles in mismatch binding and contribute differently to the ATPase activity of hMutSα EMBO J. 17:1998;2677-2686.
-
(1998)
EMBO J
, vol.17
, pp. 2677-2686
-
-
Iaccarino, I.1
Marra, G.2
Palombo, F.3
Jiricny, J.4
-
31
-
-
0033610878
-
Nucleotide-promoted release of hMutS from heteroduplex DNA is consistent with an ATP-dependent translocation mechanism
-
Proposes that MutSα bound to a mispaired base undergoes conformational changes on interaction with ATP and on ATP hydrolysis. These conformational changes allow the MutSα to trap loops of DNA and that this looping allows coordination of mispair binding with other MMR proteins that act at other sites on the DNA.
-
Blackwell LJ, Martik D, Bjornson KP, Bjornson ES, Modrich P Nucleotide-promoted release of hMutS from heteroduplex DNA is consistent with an ATP-dependent translocation mechanism. J Biol Chem. 273:1998;32055-32062. Proposes that MutSα bound to a mispaired base undergoes conformational changes on interaction with ATP and on ATP hydrolysis. These conformational changes allow the MutSα to trap loops of DNA and that this looping allows coordination of mispair binding with other MMR proteins that act at other sites on the DNA.
-
(1998)
J Biol Chem
, vol.273
, pp. 32055-32062
-
-
Blackwell, L.J.1
Martik, D.2
Bjornson, K.P.3
Bjornson, E.S.4
Modrich, P.5
-
32
-
-
0030856429
-
MutS mediates heteroduplex loop formation by a translocation mechanism
-
Proposes a looping model for the mechanism of MMR in E. coli. In this model, the MMR proteins - including MutS bound to a mispaired base in DNA - trap loops of DNA. This looping allows coordination of mispair binding with proteins that act in the initiation of MMR at other sites on the DNA. In this process, MutH ultimately makes a break in the daughter DNA strand at a hemimethylated GATC site and the excision and resynthesis steps on MMR follow.
-
Allen DJ, Makhov A, Grilley M, Taylor J, Thresher R, Modrich P, Griffith JD MutS mediates heteroduplex loop formation by a translocation mechanism. EMBO J. 16:1997;4467-4476. Proposes a looping model for the mechanism of MMR in E. coli. In this model, the MMR proteins - including MutS bound to a mispaired base in DNA - trap loops of DNA. This looping allows coordination of mispair binding with proteins that act in the initiation of MMR at other sites on the DNA. In this process, MutH ultimately makes a break in the daughter DNA strand at a hemimethylated GATC site and the excision and resynthesis steps on MMR follow.
-
(1997)
EMBO J
, vol.16
, pp. 4467-4476
-
-
Allen, D.J.1
Makhov, A.2
Grilley, M.3
Taylor, J.4
Thresher, R.5
Modrich, P.6
Griffith, J.D.7
-
33
-
-
0032527704
-
Mismatch repair, molecular switches, and signal transduction
-
Fishel R Mismatch repair, molecular switches, and signal transduction. Genes Dev. 12:1998;2096-2101.
-
(1998)
Genes Dev
, vol.12
, pp. 2096-2101
-
-
Fishel, R.1
-
34
-
-
0026445628
-
Characterization of insertion mutations in the Saccharomyces cerevisiae MSH1 and MSH2 genes: Evidence for separate mitochondrial and nuclear functions
-
Reenan RAG, Kolodner RD Characterization of insertion mutations in the Saccharomyces cerevisiae MSH1 and MSH2 genes: evidence for separate mitochondrial and nuclear functions. Genetics. 132:1992;975-985.
-
(1992)
Genetics
, vol.132
, pp. 975-985
-
-
Reenan, R.A.G.1
Kolodner, R.D.2
-
35
-
-
0028044149
-
Purification and characterization of MSH1, a yeast mitochondrial protein that binds to DNA mismatches
-
Chi NW, Kolodner RD Purification and characterization of MSH1, a yeast mitochondrial protein that binds to DNA mismatches. J Biol Chem. 269:1994;29984-29992.
-
(1994)
J Biol Chem
, vol.269
, pp. 29984-29992
-
-
Chi, N.W.1
Kolodner, R.D.2
-
36
-
-
0031239499
-
Cloning and expression analysis of a meiosis-specific MutS homolog: The human MSH4 gene
-
Paquis-Flucklinger V, Santucci-Darmanin S, Paul R, Saunieres A, Turc-Carel C, Desnuelle C Cloning and expression analysis of a meiosis-specific MutS homolog: the human MSH4 gene. Genomics. 44:1997;188-194.
-
(1997)
Genomics
, vol.44
, pp. 188-194
-
-
Paquis-Flucklinger, V.1
Santucci-Darmanin, S.2
Paul, R.3
Saunieres, A.4
Turc-Carel, C.5
Desnuelle, C.6
-
37
-
-
0032191204
-
Cloning and characterization of the human and Caenorhabditis elegans homologs of the Saccharomyces cerevisiae MSH5 gene
-
Winand NJ, Panzer JA, Kolodner RD Cloning and characterization of the human and Caenorhabditis elegans homologs of the Saccharomyces cerevisiae MSH5 gene. Genomics. 53:1998;69-80.
-
(1998)
Genomics
, vol.53
, pp. 69-80
-
-
Winand, N.J.1
Panzer, J.A.2
Kolodner, R.D.3
-
38
-
-
0032529081
-
Cloning, structural characterization, and chromosomal localization of the human orthologue of Saccharomyces cerevisiae MSH5 gene
-
Her C, Doggett NA Cloning, structural characterization, and chromosomal localization of the human orthologue of Saccharomyces cerevisiae MSH5 gene. Genomics. 52:1998;50-61.
-
(1998)
Genomics
, vol.52
, pp. 50-61
-
-
Her, C.1
Doggett, N.A.2
-
39
-
-
0028560427
-
Mutation of a meiosis-specific MutS homolog decreases crossing over but not mismatch correction
-
Ross-Macdonald P, Roeder GS Mutation of a meiosis-specific MutS homolog decreases crossing over but not mismatch correction. Cell. 79:1994;1069-1080.
-
(1994)
Cell
, vol.79
, pp. 1069-1080
-
-
Ross-Macdonald, P.1
Roeder, G.S.2
-
40
-
-
0029145505
-
MSH5, a novel MutS homolog, facilitates meiotic reciprocal recombination between homologs in Saccharomyces cerevisiae but not mismatch repair
-
Hollingsworth NM, Ponte L, Halsey C MSH5, a novel MutS homolog, facilitates meiotic reciprocal recombination between homologs in Saccharomyces cerevisiae but not mismatch repair. Genes Dev. 9:1995;1728-1739.
-
(1995)
Genes Dev
, vol.9
, pp. 1728-1739
-
-
Hollingsworth, N.M.1
Ponte, L.2
Halsey, C.3
-
41
-
-
0030906684
-
Mlh1 is unique among mismatch repair proteins in its ability to promote crossing-over during meiosis
-
Hunter N, Borts RH Mlh1 is unique among mismatch repair proteins in its ability to promote crossing-over during meiosis. Genes Dev. 11:1997;1573-1582.
-
(1997)
Genes Dev
, vol.11
, pp. 1573-1582
-
-
Hunter, N.1
Borts, R.H.2
-
42
-
-
0344143457
-
Mammalian MutS homolog 5 is required for chromosome pairing in meiosis
-
in press
-
Edelmann W, Cohen P, Knetz B, Winand N, Heyer J, Kolodner R, Pollard JW, Kucherlapati R: Mammalian MutS homolog 5 is required for chromosome pairing in meiosis. Nat Genet 1999, 19:in press.
-
(1999)
Nat Genet
, pp. 19
-
-
Edelmann, W.1
Cohen, P.2
Knetz, B.3
Winand, N.4
Heyer, J.5
Kolodner, R.6
Pollard, J.W.7
Kucherlapati, R.8
-
43
-
-
0028128601
-
MLH1, PMS1, and MSH2 interactions during the initiation of DNA mismatch repair in yeast
-
Prolla TA, Pang Q, Alani E, Kolodner RD, Liskay RM MLH1, PMS1, and MSH2 interactions during the initiation of DNA mismatch repair in yeast. Science. 265:1994;1091-1093.
-
(1994)
Science
, vol.265
, pp. 1091-1093
-
-
Prolla, T.A.1
Pang, Q.2
Alani, E.3
Kolodner, R.D.4
Liskay, R.M.5
-
44
-
-
0028941627
-
Restoration of mismatch repair to nuclear extracts of H6 colorectal tumor cells by a heterodimer of human MutL homologs
-
Li GM, Modrich P Restoration of mismatch repair to nuclear extracts of H6 colorectal tumor cells by a heterodimer of human MutL homologs. Proc Natl Acad Sci USA. 92:1995;1950-1954.
-
(1995)
Proc Natl Acad Sci USA
, vol.92
, pp. 1950-1954
-
-
Li, G.M.1
Modrich, P.2
-
45
-
-
0030755372
-
Functional domains of the Saccharomyces cerevisiae Mlh1p and Pms1p DNA mismatch repair proteins and their relevance to human hereditary nonpolyposis colorectal cancer-associated mutations
-
Pang Q, Prolla TA, Liskay RM Functional domains of the Saccharomyces cerevisiae Mlh1p and Pms1p DNA mismatch repair proteins and their relevance to human hereditary nonpolyposis colorectal cancer-associated mutations. Mol Cell Biol. 17:1997;4465-4473.
-
(1997)
Mol Cell Biol
, vol.17
, pp. 4465-4473
-
-
Pang, Q.1
Prolla, T.A.2
Liskay, R.M.3
-
46
-
-
0031260535
-
Enhancement of MSH2-MSH3-mediated mismatch recognition by the yeast MLH1-PMS1 complex
-
Habraken Y, Sung P, Prakash L, Prakash S Enhancement of MSH2-MSH3-mediated mismatch recognition by the yeast MLH1-PMS1 complex. Curr Biol. 7:1997;790-793.
-
(1997)
Curr Biol
, vol.7
, pp. 790-793
-
-
Habraken, Y.1
Sung, P.2
Prakash, L.3
Prakash, S.4
-
47
-
-
0032029995
-
ATP-dependent interaction of human mismatch repair proteins and dual role of PCNA in mismatch repair
-
Demonstrates the assembly of higher-order complexes of MMR proteins that function in MMR. This paper further demonstrates that PCNA functions at both the initiation and DNA synthesis steps of MMR.
-
Gu L, Hong Y, McCulloch S, Watanabe H, Li GM ATP-dependent interaction of human mismatch repair proteins and dual role of PCNA in mismatch repair. Nucleic Acids Res. 26:1998;1173-1178. Demonstrates the assembly of higher-order complexes of MMR proteins that function in MMR. This paper further demonstrates that PCNA functions at both the initiation and DNA synthesis steps of MMR.
-
(1998)
Nucleic Acids Res
, vol.26
, pp. 1173-1178
-
-
Gu, L.1
Hong, Y.2
McCulloch, S.3
Watanabe, H.4
Li, G.M.5
-
48
-
-
0032514709
-
The Saccharomyces cerevisiae MLH3 gene functions in MSH3-dependent suppression of frameshift mutations
-
Flores-Rozas H, Kolodner RD The Saccharomyces cerevisiae MLH3 gene functions in MSH3-dependent suppression of frameshift mutations. Proc Natl Acad Sci USA. 95:1998;12404-12409.
-
(1998)
Proc Natl Acad Sci USA
, vol.95
, pp. 12404-12409
-
-
Flores-Rozas, H.1
Kolodner, R.D.2
-
49
-
-
0032514843
-
Crystal structure and ATPase activity of MutL implications for DNA repair and mutagenesis
-
The authors report the structure of MutL and discuss the location of amino acid residues important for interaction between MutL and ATP.
-
Ban C, Yang W Crystal structure and ATPase activity of MutL implications for DNA repair and mutagenesis. Cell. 95:1998;541-552. The authors report the structure of MutL and discuss the location of amino acid residues important for interaction between MutL and ATP.
-
(1998)
Cell
, vol.95
, pp. 541-552
-
-
Ban, C.1
Yang, W.2
-
50
-
-
0024396565
-
DNA mismatch correction in a defined system
-
Lahue RS, Au KG, Modrich P DNA mismatch correction in a defined system. Science. 245:1989;160-164.
-
(1989)
Science
, vol.245
, pp. 160-164
-
-
Lahue, R.S.1
Au, K.G.2
Modrich, P.3
-
51
-
-
0032502779
-
Mismatch-, MutS-, MutL-, and helicase II-dependent unwinding from the single-strand break of an incised heteroduplex
-
Dao V, Modrich P Mismatch-, MutS-, MutL-, and helicase II-dependent unwinding from the single-strand break of an incised heteroduplex. J Biol Chem. 273:1998;9202-9207.
-
(1998)
J Biol Chem
, vol.273
, pp. 9202-9207
-
-
Dao, V.1
Modrich, P.2
-
52
-
-
0032502670
-
MutS and MutL activate DNA helicase II in a mismatch-dependent manner
-
Yamaguchi M, Dao V, Modrich P MutS and MutL activate DNA helicase II in a mismatch-dependent manner. J Biol Chem. 273:1998;9197-9201.
-
(1998)
J Biol Chem
, vol.273
, pp. 9197-9201
-
-
Yamaguchi, M.1
Dao, V.2
Modrich, P.3
-
53
-
-
0032519335
-
The Escherichia coli MutL protein stimulates binding of Vsr and MutS to heteroduplex DNA
-
Drotschmann K, Aronshtam A, Fritz HJ, Marinus MG The Escherichia coli MutL protein stimulates binding of Vsr and MutS to heteroduplex DNA. Nucleic Acids Res. 26:1998;948-953.
-
(1998)
Nucleic Acids Res
, vol.26
, pp. 948-953
-
-
Drotschmann, K.1
Aronshtam, A.2
Fritz, H.J.3
Marinus, M.G.4
-
54
-
-
0028917096
-
A role for exonuclease I from S. pombe in mutation avoidance and mismatch correction
-
Szankasi P, Smith GR A role for exonuclease I from S. pombe in mutation avoidance and mismatch correction. Science. 267:1995;1166-1169.
-
(1995)
Science
, vol.267
, pp. 1166-1169
-
-
Szankasi, P.1
Smith, G.R.2
-
55
-
-
0030806219
-
Identification and characterization of Saccharomyces cerevisiae EXO1, a gene encoding an exonuclease that interacts with MSH2
-
Tishkoff DX, Boerger AL, Bertrand P, Filosi N, Gaida GM, Kane MF, Kolodner RD Identification and characterization of Saccharomyces cerevisiae EXO1, a gene encoding an exonuclease that interacts with MSH2. Proc Natl Acad Sci USA. 94:1997;7487-7492.
-
(1997)
Proc Natl Acad Sci USA
, vol.94
, pp. 7487-7492
-
-
Tishkoff, D.X.1
Boerger, A.L.2
Bertrand, P.3
Filosi, N.4
Gaida, G.M.5
Kane, M.F.6
Kolodner, R.D.7
-
56
-
-
0030898435
-
Exonuclease I of Saccharomyces cerevisiae functions in mitotic recombination in vivo and in vitro
-
Fiorentini P, Huang KN, Tishkoff DX, Kolodner RD, Symington LS Exonuclease I of Saccharomyces cerevisiae functions in mitotic recombination in vivo and in vitro. Mol Cell Biol. 17:1997;2764-2773.
-
(1997)
Mol Cell Biol
, vol.17
, pp. 2764-2773
-
-
Fiorentini, P.1
Huang, K.N.2
Tishkoff, D.X.3
Kolodner, R.D.4
Symington, L.S.5
-
57
-
-
0032533518
-
Identification of a human gene encoding a homologue of Saccharomyces cerevisiae EXO1, an exonuclease implicated in mismatch repair and recombination
-
Tishkoff DX, Amin NS, Viars CS, Arden KC, Kolodner RD Identification of a human gene encoding a homologue of Saccharomyces cerevisiae EXO1, an exonuclease implicated in mismatch repair and recombination. Cancer Res. 58:1998;5027-5031.
-
(1998)
Cancer Res
, vol.58
, pp. 5027-5031
-
-
Tishkoff, D.X.1
Amin, N.S.2
Viars, C.S.3
Arden, K.C.4
Kolodner, R.D.5
-
58
-
-
0032529299
-
Hex1: A new human Rad2 nuclease family member with homology to yeast exonuclease 1
-
Wilson DMr, Carney JP, Coleman MA, Adamson AW, Christensen M, Lamerdin JE Hex1: a new human Rad2 nuclease family member with homology to yeast exonuclease 1. Nucleic Acids Res. 26:1998;3762-3768.
-
(1998)
Nucleic Acids Res
, vol.26
, pp. 3762-3768
-
-
Wilson, D.1
Carney, J.P.2
Coleman, M.A.3
Adamson, A.W.4
Christensen, M.5
Lamerdin, J.E.6
-
59
-
-
0032532682
-
Human exonuclease I interacts with the mismatch repair protein hMSH2
-
Schmutte C, Marinescu RC, Sadoff MM, Guerrette S, Overhauser J, Fishel R Human exonuclease I interacts with the mismatch repair protein hMSH2. Cancer Res. 58:1998;4537-4542.
-
(1998)
Cancer Res
, vol.58
, pp. 4537-4542
-
-
Schmutte, C.1
Marinescu, R.C.2
Sadoff, M.M.3
Guerrette, S.4
Overhauser, J.5
Fishel, R.6
-
60
-
-
0028281443
-
The characterization of a mammalian DNA structure-specific endonuclease
-
Harrington JJ, Lieber MR The characterization of a mammalian DNA structure-specific endonuclease. EMBO J. 13:1994;1235-1246.
-
(1994)
EMBO J
, vol.13
, pp. 1235-1246
-
-
Harrington, J.J.1
Lieber, M.R.2
-
61
-
-
0029616338
-
Calf 5′ to 3′ exo/endonuclease must slide from a 5′ end of the substrate to perform structure-specific cleavage
-
Murante RS, Rust L, Bambara RA Calf 5′ to 3′ exo/endonuclease must slide from a 5′ end of the substrate to perform structure-specific cleavage. J Biol Chem. 270:1995;30377-30383.
-
(1995)
J Biol Chem
, vol.270
, pp. 30377-30383
-
-
Murante, R.S.1
Rust, L.2
Bambara, R.A.3
-
62
-
-
0029092897
-
Lagging strand DNA synthesis at the eukaryotic replication fork involves binding and stimulation of FEN-1 by proliferating cell nuclear antigen
-
Li X, Li J, Harrington J, Lieber MR, Burgers PM Lagging strand DNA synthesis at the eukaryotic replication fork involves binding and stimulation of FEN-1 by proliferating cell nuclear antigen. J Biol Chem. 270:1995;22109-22112.
-
(1995)
J Biol Chem
, vol.270
, pp. 22109-22112
-
-
Li, X.1
Li, J.2
Harrington, J.3
Lieber, M.R.4
Burgers, P.M.5
-
63
-
-
0029909482
-
Mechanism of tracking and cleavage of adduct-damaged DNA substrates by the mammalian 5′- To 3′-exonuclease/endonuclease RAD2 homologue 1 or flap endonuclease 1
-
Barnes CJ, Wahl AF, Shen B, Park MS, Bambara RA Mechanism of tracking and cleavage of adduct-damaged DNA substrates by the mammalian 5′- to 3′-exonuclease/endonuclease RAD2 homologue 1 or flap endonuclease 1. J Biol Chem. 271:1996;29624-29631.
-
(1996)
J Biol Chem
, vol.271
, pp. 29624-29631
-
-
Barnes, C.J.1
Wahl, A.F.2
Shen, B.3
Park, M.S.4
Bambara, R.A.5
-
64
-
-
0028947298
-
Conditional lethality of null mutations in RTH1 that encodes the yeast counterpart of a mammalian 5′- To 3′-exonuclease required for lagging strand DNA synthesis in reconstituted systems
-
Sommers CH, Miller EJ, Dujon B, Prakash S, Prakash L Conditional lethality of null mutations in RTH1 that encodes the yeast counterpart of a mammalian 5′- to 3′-exonuclease required for lagging strand DNA synthesis in reconstituted systems. J Biol Chem. 270:1995;4193-4196.
-
(1995)
J Biol Chem
, vol.270
, pp. 4193-4196
-
-
Sommers, C.H.1
Miller, E.J.2
Dujon, B.3
Prakash, S.4
Prakash, L.5
-
65
-
-
0029039868
-
Requirement of the yeast RTH1 5′ to 3′ exonuclease for the stability of simple repetitive DNA
-
Johnson RE, Gopala KK, Prakash L, Prakash S Requirement of the yeast RTH1 5′ to 3′ exonuclease for the stability of simple repetitive DNA. Science. 269:1995;238-240.
-
(1995)
Science
, vol.269
, pp. 238-240
-
-
Johnson, R.E.1
Gopala, K.K.2
Prakash, L.3
Prakash, S.4
-
66
-
-
0031442653
-
A novel mutation avoidance mechanism dependent on S. cerevisiae RAD27 is distinct from DNA mismatch repair
-
Reports that mutations in RAD27/FEN1 cause defects in both the suppression of mutations caused by errors in processing of Okazaki fragments and in the suppression of replication errors by MMR.
-
Tishkoff DX, Filosi N, Gaida GM, Kolodner RD A novel mutation avoidance mechanism dependent on S. cerevisiae RAD27 is distinct from DNA mismatch repair. Cell. 88:1997;253-263. Reports that mutations in RAD27/FEN1 cause defects in both the suppression of mutations caused by errors in processing of Okazaki fragments and in the suppression of replication errors by MMR.
-
(1997)
Cell
, vol.88
, pp. 253-263
-
-
Tishkoff, D.X.1
Filosi, N.2
Gaida, G.M.3
Kolodner, R.D.4
-
67
-
-
0030935386
-
DNA polymerase delta is required for human mismatch repair in vitro
-
Longley MJ, Pierce AJ, Modrich P DNA polymerase delta is required for human mismatch repair in vitro. J Biol Chem. 272:1997;10917-10921.
-
(1997)
J Biol Chem
, vol.272
, pp. 10917-10921
-
-
Longley, M.J.1
Pierce, A.J.2
Modrich, P.3
-
68
-
-
0031953114
-
The evolutionarily conserved zinc finger motif in the largest subunit of human replication protein A is required for DNA replication and mismatch repair but not for nucleotide excision repair
-
Lin YL, Shivji MK, Chen C, Kolodner R, Wood RD, Dutta A The evolutionarily conserved zinc finger motif in the largest subunit of human replication protein A is required for DNA replication and mismatch repair but not for nucleotide excision repair. J Biol Chem. 273:1998;1453-1461.
-
(1998)
J Biol Chem
, vol.273
, pp. 1453-1461
-
-
Lin, Y.L.1
Shivji, M.K.2
Chen, C.3
Kolodner, R.4
Wood, R.D.5
Dutta, A.6
-
69
-
-
0029905194
-
Evidence for involvement of yeast proliferating cell nuclear antigen in DNA mismatch repair
-
Johnson RE, Kovvali GK, Guzder SN, Amin NS, Holm C, Habraken Y, Sung P, Prakash L, Prakash S Evidence for involvement of yeast proliferating cell nuclear antigen in DNA mismatch repair. J Biol Chem. 271:1996;27987-27990.
-
(1996)
J Biol Chem
, vol.271
, pp. 27987-27990
-
-
Johnson, R.E.1
Kovvali, G.K.2
Guzder, S.N.3
Amin, N.S.4
Holm, C.5
Habraken, Y.6
Sung, P.7
Prakash, L.8
Prakash, S.9
-
70
-
-
0030271999
-
Requirement for PCNA in DNA mismatch repair at a step preceding DNA resynthesis
-
Umar A, Buermeyer AB, Simon JA, Thomas DC, Clark AB, Liskay RM, Kunkel TA Requirement for PCNA in DNA mismatch repair at a step preceding DNA resynthesis. Cell. 87:1996;65-73.
-
(1996)
Cell
, vol.87
, pp. 65-73
-
-
Umar, A.1
Buermeyer, A.B.2
Simon, J.A.3
Thomas, D.C.4
Clark, A.B.5
Liskay, R.M.6
Kunkel, T.A.7
-
71
-
-
0345628659
-
Characterization of the repeat-tract instability and mutator phenotypes conferred by a Tn3 insertion in RFC1, the large sununit of the yeast clamp loader
-
in press
-
Xie Y, Counter C, Alani E: Characterization of the repeat-tract instability and mutator phenotypes conferred by a Tn3 insertion in RFC1, the large sununit of the yeast clamp loader. Genetics 1999, in press.
-
(1999)
Genetics
-
-
Xie, Y.1
Counter, C.2
Alani, E.3
-
72
-
-
0032588388
-
The 3′-5′ exonucleases of DNA polymerases δ and ε and the 5′-3′ exonuclease Exo1 have major roles in postreplication mutation avoidance in Saccharomyces cerevisiae
-
in press
-
Tran HT, Gordenin DA, Resnick MA: The 3′-5′ exonucleases of DNA polymerases δ and ε and the 5′-3′ exonuclease Exo1 have major roles in postreplication mutation avoidance in Saccharomyces cerevisiae. Mol Cell Biol 1999, in press.
-
(1999)
Mol Cell Biol
-
-
Tran, H.T.1
Gordenin, D.A.2
Resnick, M.A.3
-
73
-
-
0030834260
-
Role of Saccharomyces cerevisiae Msh2 and Msh3 repair proteins in double-strand break-induced recombination
-
Provides evidence that MMR proteins are involved in the processing of branched DNA structures in addition to their role in MMR. It can be inferred from this study that MSH2-MSH3 complex can target NER proteins to some types of DNA structures at which they can act and suggests the existence of hybrid MMR NER pathways. (See also [77].)
-
Sugawara N, Paques F, Colaiacovo M, Haber JE Role of Saccharomyces cerevisiae Msh2 and Msh3 repair proteins in double-strand break-induced recombination. Proc Natl Acad Sci USA. 94:1997;9214-9219. Provides evidence that MMR proteins are involved in the processing of branched DNA structures in addition to their role in MMR. It can be inferred from this study that MSH2-MSH3 complex can target NER proteins to some types of DNA structures at which they can act and suggests the existence of hybrid MMR NER pathways. (See also [77].).
-
(1997)
Proc Natl Acad Sci USA
, vol.94
, pp. 9214-9219
-
-
Sugawara, N.1
Paques, F.2
Colaiacovo, M.3
Haber, J.E.4
-
74
-
-
0031051010
-
Saccharomyces cerevisiae MSH2, a mispaired base recognition protein, also recognizes Holliday junctions in DNA
-
Alani E, Lee S, Kane MF, Griffith J, Kolodner RD Saccharomyces cerevisiae MSH2, a mispaired base recognition protein, also recognizes Holliday junctions in DNA. J Mol Biol. 265:1997;289-301.
-
(1997)
J Mol Biol
, vol.265
, pp. 289-301
-
-
Alani, E.1
Lee, S.2
Kane, M.F.3
Griffith, J.4
Kolodner, R.D.5
-
75
-
-
0029665878
-
Human MutSα recognizes damaged DNA base pairs containing O6-methylguanine, O4-methylthymine, or the cisplatin-d(GpG) adduct
-
Duckett DR, Drummond JT, Murchie AI, Reardon JT, Sancar A, Lilley DM, Modrich P Human MutSα recognizes damaged DNA base pairs containing O6-methylguanine, O4-methylthymine, or the cisplatin-d(GpG) adduct. Proc Natl Acad Sci USA. 93:1996;6443-6447.
-
(1996)
Proc Natl Acad Sci USA
, vol.93
, pp. 6443-6447
-
-
Duckett, D.R.1
Drummond, J.T.2
Murchie, A.I.3
Reardon, J.T.4
Sancar, A.5
Lilley, D.M.6
Modrich, P.7
-
76
-
-
0030198880
-
The mismatch-repair protein hMSH2 binds selectively to DNA adducts of the anticancer drug cisplatin
-
Mello JA, Acharya S, Fishel R, Essigmann JM The mismatch-repair protein hMSH2 binds selectively to DNA adducts of the anticancer drug cisplatin. Chem Biol. 3:1996;579-589.
-
(1996)
Chem Biol
, vol.3
, pp. 579-589
-
-
Mello, J.A.1
Acharya, S.2
Fishel, R.3
Essigmann, J.M.4
-
77
-
-
0032564458
-
Physical interaction between components of DNA mismatch repair and nucleotide excision repair
-
Bertrand P, Tishkoff DX, Filosi N, Dasgupta R, Kolodner RD Physical interaction between components of DNA mismatch repair and nucleotide excision repair. Proc Natl Acad Sci USA. 95:1998;14278-14283.
-
(1998)
Proc Natl Acad Sci USA
, vol.95
, pp. 14278-14283
-
-
Bertrand, P.1
Tishkoff, D.X.2
Filosi, N.3
Dasgupta, R.4
Kolodner, R.D.5
-
78
-
-
0030885649
-
Dual roles for DNA sequence identity and the mismatch repair system in the regulation of mitotic crossing-over in yeast
-
Datta A, Hendrix M, Lipsitch M, Jinks-Robertson S Dual roles for DNA sequence identity and the mismatch repair system in the regulation of mitotic crossing-over in yeast. Proc Natl Acad Sci USA. 94:1997;9757-9762.
-
(1997)
Proc Natl Acad Sci USA
, vol.94
, pp. 9757-9762
-
-
Datta, A.1
Hendrix, M.2
Lipsitch, M.3
Jinks-Robertson, S.4
-
79
-
-
0030051527
-
Mitotic crossovers between diverged sequences are regulated by mismatch repair proteins in Saccharomyces cerevisiae
-
Datta A, Adjiri A, New L, Crouse GF, Jinks Robertson S Mitotic crossovers between diverged sequences are regulated by mismatch repair proteins in Saccharomyces cerevisiae. Mol Cell Biol. 16:1996;1085-1093.
-
(1996)
Mol Cell Biol
, vol.16
, pp. 1085-1093
-
-
Datta, A.1
Adjiri, A.2
New, L.3
Crouse, G.F.4
Jinks Robertson, S.5
-
80
-
-
0030870631
-
Germ-line mutation of the hMSH6/GTBP gene in an atypical hereditary nonpolyposis colorectal cancer kindred
-
Akiyama Y, Sato H, Yamada T, Nagasaki H, Tsuchiya A, Abe R, Yuasa Y Germ-line mutation of the hMSH6/GTBP gene in an atypical hereditary nonpolyposis colorectal cancer kindred. Cancer Res. 57:1997;3920-3923.
-
(1997)
Cancer Res
, vol.57
, pp. 3920-3923
-
-
Akiyama, Y.1
Sato, H.2
Yamada, T.3
Nagasaki, H.4
Tsuchiya, A.5
Abe, R.6
Yuasa, Y.7
-
81
-
-
0031278322
-
Germline mutation of MSH6 as the cause of hereditary nonpolyposis colorectal cancer
-
Miyaki M, Konishi M, Tanaka K, Kikuchi-Yanoshita R, Muraoka M, Yasuno M, Igari T, Koike M, Chiba M, Mori T Germline mutation of MSH6 as the cause of hereditary nonpolyposis colorectal cancer. Nat Genet. 17:1997;271-272.
-
(1997)
Nat Genet
, vol.17
, pp. 271-272
-
-
Miyaki, M.1
Konishi, M.2
Tanaka, K.3
Kikuchi-Yanoshita, R.4
Muraoka, M.5
Yasuno, M.6
Igari, T.7
Koike, M.8
Chiba, M.9
Mori, T.10
-
82
-
-
0031882250
-
Tumour susceptibility and spontaneous mutation in mice deficient in Mlh1, Pms1 and Pms2 DNA mismatch repair
-
Prolla TA, Baker SM, Harris AC, Tsao JL, Yao X, Bronner CE, Zheng B, Gordon M, Reneker J, Arnheim Net al. Tumour susceptibility and spontaneous mutation in mice deficient in Mlh1, Pms1 and Pms2 DNA mismatch repair. Nat Genet. 18:1998;276-279.
-
(1998)
Nat Genet
, vol.18
, pp. 276-279
-
-
Prolla, T.A.1
Baker, S.M.2
Harris, A.C.3
Tsao, J.L.4
Yao, X.5
Bronner, C.E.6
Zheng, B.7
Gordon, M.8
Reneker, J.9
Arnheim, N.10
-
83
-
-
0031824671
-
Functional analysis of human MLH1 mutations in Saccharomyces cerevisiae
-
Shimodaira H, Filosi N, Shibata H, Suzuki T, Radice P, Kanamaru R, Friend SH, Kolodner RD, Ishioka C Functional analysis of human MLH1 mutations in Saccharomyces cerevisiae. Nat Genet. 19:1998;384-389.
-
(1998)
Nat Genet
, vol.19
, pp. 384-389
-
-
Shimodaira, H.1
Filosi, N.2
Shibata, H.3
Suzuki, T.4
Radice, P.5
Kanamaru, R.6
Friend, S.H.7
Kolodner, R.D.8
Ishioka, C.9
-
84
-
-
0033548443
-
Saccharomyces cerevisiae MSH2-MSH6 complex interacts with Holliday Junctions and facilitates their cleavage by resolution enzymes
-
in press
-
Marsischky GT, Lee S, Griffith JD, Kolodner RD: Saccharomyces cerevisiae MSH2-MSH6 complex interacts with Holliday Junctions and facilitates their cleavage by resolution enzymes. J Biol Chem 1999, 274:in press.
-
(1999)
J Biol Chem
, pp. 274
-
-
Marsischky, G.T.1
Lee, S.2
Griffith, J.D.3
Kolodner, R.D.4
|