-
1
-
-
26244451107
-
Centrosomes in cellular regulation
-
doi:10.1146/annurev.cellbio.21.122303.120418
-
Doxsey S, McCollum D, Theurkauf W, (2005) Centrosomes in cellular regulation. Annu Rev Cell Dev Biol 21: 411-434. doi:10.1146/annurev.cellbio.21.122303.120418. PubMed: 16212501.
-
(2005)
Annu Rev Cell Dev Biol
, vol.21
, pp. 411-434
-
-
Doxsey, S.1
McCollum, D.2
Theurkauf, W.3
-
2
-
-
34249336078
-
Centrosome biogenesis and function: centrosomics brings new understanding
-
doi:10.1038/nrm2180
-
Bettencourt-Dias M, Glover DM, (2007) Centrosome biogenesis and function: centrosomics brings new understanding. Nat Rev Mol Cell Biol 8: 451-463. doi:10.1038/nrm2180. PubMed: 17505520.
-
(2007)
Nat Rev Mol Cell Biol
, vol.8
, pp. 451-463
-
-
Bettencourt-Dias, M.1
Glover, D.M.2
-
3
-
-
80053553994
-
The centrosome cycle: Centriole biogenesis, duplication and inherent asymmetries
-
doi:10.1038/ncb2345
-
Nigg EA, Stearns T, (2011) The centrosome cycle: Centriole biogenesis, duplication and inherent asymmetries. Nat Cell Biol 13: 1154-1160. doi:10.1038/ncb2345. PubMed: 21968988.
-
(2011)
Nat Cell Biol
, vol.13
, pp. 1154-1160
-
-
Nigg, E.A.1
Stearns, T.2
-
4
-
-
0021132972
-
Striated flagellar roots: isolation and partial characterization of a calcium-modulated contractile organelle
-
doi:10.1083/jcb.99.3.962
-
Salisbury JL, Baron A, Surek B, Melkonian M, (1984) Striated flagellar roots: isolation and partial characterization of a calcium-modulated contractile organelle. J Cell Biol 99: 962-970. doi:10.1083/jcb.99.3.962. PubMed: 6381510.
-
(1984)
J Cell Biol
, vol.99
, pp. 962-970
-
-
Salisbury, J.L.1
Baron, A.2
Surek, B.3
Melkonian, M.4
-
5
-
-
0023778375
-
Molecular cloning of cDNA for caltractin, a basal body-associated Ca2+-binding protein: homology in its protein sequence with calmodulin and the yeast CDC31 gene product
-
doi:10.1083/jcb.107.1.133
-
Huang B, Mengersen A, Lee VD, (1988) Molecular cloning of cDNA for caltractin, a basal body-associated Ca2+-binding protein: homology in its protein sequence with calmodulin and the yeast CDC31 gene product. J Cell Biol 107: 133-140. doi:10.1083/jcb.107.1.133. PubMed: 2839516.
-
(1988)
J Cell Biol
, vol.107
, pp. 133-140
-
-
Huang, B.1
Mengersen, A.2
Lee, V.D.3
-
6
-
-
22444448618
-
Centrin scaffold in Chlamydomonas reinhardtii revealed by immunoelectron microscopy
-
doi:10.1128/EC.4.7.1253-1263.2005
-
Geimer S, Melkonian M, (2005) Centrin scaffold in Chlamydomonas reinhardtii revealed by immunoelectron microscopy. Eukaryot Cell 4: 1253-1263. doi:10.1128/EC.4.7.1253-1263.2005. PubMed: 16002651.
-
(2005)
Eukaryot Cell
, vol.4
, pp. 1253-1263
-
-
Geimer, S.1
Melkonian, M.2
-
7
-
-
0027367158
-
Molecular cloning and centrosomal localization of human caltractin
-
doi:10.1073/pnas.90.23.11039
-
Lee VD, Huang B, (1993) Molecular cloning and centrosomal localization of human caltractin. Proc Natl Acad Sci U S A 90: 11039-11043. doi:10.1073/pnas.90.23.11039. PubMed: 8248209.
-
(1993)
Proc Natl Acad Sci U S A
, vol.90
, pp. 11039-11043
-
-
Lee, V.D.1
Huang, B.2
-
8
-
-
0027958218
-
Cloning of a cDNA encoding human centrin, an EF-hand protein of centrosomes and mitotic spindle poles
-
Errabolu R, Sanders MA, Salisbury JL, (1994) Cloning of a cDNA encoding human centrin, an EF-hand protein of centrosomes and mitotic spindle poles. J Cell Sci 107(1):: 9-16.
-
(1994)
J Cell Sci
, vol.107
, pp. 9-16
-
-
Errabolu, R.1
Sanders, M.A.2
Salisbury, J.L.3
-
9
-
-
0028328735
-
Centrin plays an essential role in microtubule severing during flagellar excision in Chlamydomonas reinhardtii
-
doi:10.1083/jcb.124.5.795
-
Sanders MA, Salisbury JL, (1994) Centrin plays an essential role in microtubule severing during flagellar excision in Chlamydomonas reinhardtii. J Cell Biol 124: 795-805. doi:10.1083/jcb.124.5.795. PubMed: 8120100.
-
(1994)
J Cell Biol
, vol.124
, pp. 795-805
-
-
Sanders, M.A.1
Salisbury, J.L.2
-
10
-
-
0028293043
-
In vitro reconstitution of centrosome assembly and function: the central role of gamma-tubulin
-
doi:10.1016/0092-8674(94)90503-7
-
Stearns T, Kirschner M, (1994) In vitro reconstitution of centrosome assembly and function: the central role of gamma-tubulin. Cell 76: 623-637. doi:10.1016/0092-8674(94)90503-7. PubMed: 8124706.
-
(1994)
Cell
, vol.76
, pp. 623-637
-
-
Stearns, T.1
Kirschner, M.2
-
11
-
-
0028841776
-
Identification of a complex between centrin and heat shock proteins in CSF-arrested Xenopus oocytes and dissociation of the complex following oocyte activation
-
doi:10.1006/dbio.1995.1259
-
Uzawa M, Grams J, Madden B, Toft D, Salisbury JL, (1995) Identification of a complex between centrin and heat shock proteins in CSF-arrested Xenopus oocytes and dissociation of the complex following oocyte activation. Dev Biol 171: 51-59. doi:10.1006/dbio.1995.1259. PubMed: 7556907.
-
(1995)
Dev Biol
, vol.171
, pp. 51-59
-
-
Uzawa, M.1
Grams, J.2
Madden, B.3
Toft, D.4
Salisbury, J.L.5
-
12
-
-
0030447537
-
Most of centrin in animal cells is not centrosome-associated and centrosomal centrin is confined to the distal lumen of centrioles
-
Paoletti A, Moudjou M, Paintrand M, Salisbury JL, Bornens M, (1996) Most of centrin in animal cells is not centrosome-associated and centrosomal centrin is confined to the distal lumen of centrioles. J Cell Sci 109(13):: 3089-3102.
-
(1996)
J Cell Sci
, vol.109
, pp. 3089-3102
-
-
Paoletti, A.1
Moudjou, M.2
Paintrand, M.3
Salisbury, J.L.4
Bornens, M.5
-
13
-
-
0037047325
-
Structural independence of the two EF-hand domains of caltractin
-
doi:10.1074/jbc.M112232200
-
Veeraraghavan S, Fagan PA, Hu H, Lee V, Harper JF, et al. (2002) Structural independence of the two EF-hand domains of caltractin. J Biol Chem 277: 28564-28571. doi:10.1074/jbc.M112232200. PubMed: 12034713.
-
(2002)
J Biol Chem
, vol.277
, pp. 28564-28571
-
-
Veeraraghavan, S.1
Fagan, P.A.2
Hu, H.3
Lee, V.4
Harper, J.F.5
-
14
-
-
33745868296
-
The structure of the human centrin 2-xeroderma pigmentosum group C protein complex
-
doi:10.1074/jbc.M513667200
-
Thompson JR, Ryan ZC, Salisbury JL, Kumar R, (2006) The structure of the human centrin 2-xeroderma pigmentosum group C protein complex. J Biol Chem 281: 18746-18752. doi:10.1074/jbc.M513667200. PubMed: 16627479.
-
(2006)
J Biol Chem
, vol.281
, pp. 18746-18752
-
-
Thompson, J.R.1
Ryan, Z.C.2
Salisbury, J.L.3
Kumar, R.4
-
15
-
-
0030790789
-
Identification of a new mammalian centrin gene, more closely related to Saccharomyces cerevisiae CDC31 gene
-
doi:10.1073/pnas.94.17.9141
-
Middendorp S, Paoletti A, Schiebel E, Bornens M, (1997) Identification of a new mammalian centrin gene, more closely related to Saccharomyces cerevisiae CDC31 gene. Proc Natl Acad Sci U S A 94: 9141-9146. doi:10.1073/pnas.94.17.9141. PubMed: 9256449.
-
(1997)
Proc Natl Acad Sci U S A
, vol.94
, pp. 9141-9146
-
-
Middendorp, S.1
Paoletti, A.2
Schiebel, E.3
Bornens, M.4
-
16
-
-
0034614929
-
A role for centrin 3 in centrosome reproduction
-
doi:10.1083/jcb.148.3.405
-
Middendorp S, Kuntziger T, Abraham Y, Holmes S, Bordes N, et al. (2000) A role for centrin 3 in centrosome reproduction. J Cell Biol 148: 405-416. doi:10.1083/jcb.148.3.405. PubMed: 10662768.
-
(2000)
J Cell Biol
, vol.148
, pp. 405-416
-
-
Middendorp, S.1
Kuntziger, T.2
Abraham, Y.3
Holmes, S.4
Bordes, N.5
-
17
-
-
0031817982
-
Expression of centrin isoforms in the mammalian retina
-
doi:10.1006/excr.1998.4038
-
Wolfrum U, Salisbury JL, (1998) Expression of centrin isoforms in the mammalian retina. Exp Cell Res 242: 10-17. doi:10.1006/excr.1998.4038. PubMed: 9665797.
-
(1998)
Exp Cell Res
, vol.242
, pp. 10-17
-
-
Wolfrum, U.1
Salisbury, J.L.2
-
18
-
-
0033200239
-
Testis-specific murine centrin, Cetn1: genomic characterization and evidence for retroposition of a gene encoding a centrosome protein
-
doi:10.1006/geno.1999.5880
-
Hart PE, Glantz JN, Orth JD, Poynter GM, Salisbury JL, (1999) Testis-specific murine centrin, Cetn1: genomic characterization and evidence for retroposition of a gene encoding a centrosome protein. Genomics 60: 111-120. doi:10.1006/geno.1999.5880. PubMed: 10486202.
-
(1999)
Genomics
, vol.60
, pp. 111-120
-
-
Hart, P.E.1
Glantz, J.N.2
Orth, J.D.3
Poynter, G.M.4
Salisbury, J.L.5
-
19
-
-
84865647258
-
Such small hands: the roles of centrins/caltractins in the centriole and in genome maintenance
-
doi:10.1007/s00018-012-0961-1
-
Dantas TJ, Daly OM, Morrison CG, (2012) Such small hands: the roles of centrins/caltractins in the centriole and in genome maintenance. Cell Mol Life Sci 69: 2979-2997. doi:10.1007/s00018-012-0961-1. PubMed: 22460578.
-
(2012)
Cell Mol Life Sci
, vol.69
, pp. 2979-2997
-
-
Dantas, T.J.1
Daly, O.M.2
Morrison, C.G.3
-
20
-
-
0037031146
-
Centrin-2 is required for centriole duplication in mammalian cells
-
doi:10.1016/S0960-9822(02)01019-9
-
Salisbury JL, Suino KM, Busby R, Springett M, (2002) Centrin-2 is required for centriole duplication in mammalian cells. Curr Biol 12: 1287-1292. doi:10.1016/S0960-9822(02)01019-9. PubMed: 12176356.
-
(2002)
Curr Biol
, vol.12
, pp. 1287-1292
-
-
Salisbury, J.L.1
Suino, K.M.2
Busby, R.3
Springett, M.4
-
21
-
-
33947270830
-
Loss of centrosome integrity induces p38-p53-p21-dependent G1-S arrest
-
doi:10.1038/ncb1529
-
Mikule K, Delaval B, Kaldis P, Jurcyzk A, Hergert P, et al. (2007) Loss of centrosome integrity induces p38-p53-p21-dependent G1-S arrest. Nat Cell Biol 9: 160-170. doi:10.1038/ncb1529. PubMed: 17330329.
-
(2007)
Nat Cell Biol
, vol.9
, pp. 160-170
-
-
Mikule, K.1
Delaval, B.2
Kaldis, P.3
Jurcyzk, A.4
Hergert, P.5
-
22
-
-
34547420857
-
Plk4-induced centriole biogenesis in human cells
-
doi:10.1016/j.devcel.2007.07.002
-
Kleylein-Sohn J, Westendorf J, Le Clech M, Habedanck R, Stierhof YD, et al. (2007) Plk4-induced centriole biogenesis in human cells. Dev Cell 13: 190-202. doi:10.1016/j.devcel.2007.07.002. PubMed: 17681131.
-
(2007)
Dev Cell
, vol.13
, pp. 190-202
-
-
Kleylein-Sohn, J.1
Westendorf, J.2
Le Clech, M.3
Habedanck, R.4
Stierhof, Y.D.5
-
23
-
-
48449095734
-
Mechanisms of procentriole formation
-
doi:10.1016/j.tcb.2008.06.004
-
Strnad P, Gonczy P, (2008) Mechanisms of procentriole formation. Trends Cell Biol 18: 389-396. doi:10.1016/j.tcb.2008.06.004. PubMed: 18620859.
-
(2008)
Trends Cell Biol
, vol.18
, pp. 389-396
-
-
Strnad, P.1
Gonczy, P.2
-
24
-
-
78649641932
-
Mps1 Phosphorylation Sites Regulate the Function of Centrin in Centriole Assembly
-
Yang CH, Kasbek C, Majumder S, Yusof AM, Fisk HA, (2010) Mps1 Phosphorylation Sites Regulate the Function of Centrin in Centriole Assembly. Mol: Biol Cell. p. pp. 2.
-
(2010)
Mol: Biol Cell.
, pp. 2
-
-
Yang, C.H.1
Kasbek, C.2
Majumder, S.3
Yusof, A.M.4
Fisk, H.A.5
-
25
-
-
79955516456
-
Defective nucleotide excision repair with normal centrosome structures and functions in the absence of all vertebrate centrins
-
doi:10.1083/jcb.201012093
-
Dantas TJ, Wang Y, Lalor P, Dockery P, Morrison CG, (2011) Defective nucleotide excision repair with normal centrosome structures and functions in the absence of all vertebrate centrins. J Cell Biol 193: 307-318. doi:10.1083/jcb.201012093. PubMed: 21482720.
-
(2011)
J Cell Biol
, vol.193
, pp. 307-318
-
-
Dantas, T.J.1
Wang, Y.2
Lalor, P.3
Dockery, P.4
Morrison, C.G.5
-
26
-
-
35548974826
-
Cep164, a novel centriole appendage protein required for primary cilium formation
-
doi:10.1083/jcb.200707181
-
Graser S, Stierhof YD, Lavoie SB, Gassner OS, Lamla S, et al. (2007) Cep164, a novel centriole appendage protein required for primary cilium formation. J Cell Biol 179: 321-330. doi:10.1083/jcb.200707181. PubMed: 17954613.
-
(2007)
J Cell Biol
, vol.179
, pp. 321-330
-
-
Graser, S.1
Stierhof, Y.D.2
Lavoie, S.B.3
Gassner, O.S.4
Lamla, S.5
-
27
-
-
81855189581
-
Centrin depletion causes cyst formation and other ciliopathy-related phenotypes in zebrafish
-
Delaval B, Covassin L, Lawson ND, Doxsey S, (2011) Centrin depletion causes cyst formation and other ciliopathy-related phenotypes in zebrafish. Cell Cycle 10.
-
(2011)
Cell Cycle
, vol.10
-
-
Delaval, B.1
Covassin, L.2
Lawson, N.D.3
Doxsey, S.4
-
28
-
-
0029892791
-
DNA repair in eukaryotes
-
doi:10.1146/annurev.bi.65.070196.001031
-
Wood RD, (1996) DNA repair in eukaryotes. Annu Rev Biochem 65: 135-167. doi:10.1146/annurev.bi.65.070196.001031. PubMed: 8811177.
-
(1996)
Annu Rev Biochem
, vol.65
, pp. 135-167
-
-
Wood, R.D.1
-
29
-
-
0033118354
-
Molecular mechanism of nucleotide excision repair
-
doi:10.1101/gad.13.7.768
-
de Laat WL, Jaspers NG, Hoeijmakers JH, (1999) Molecular mechanism of nucleotide excision repair. Genes Dev 13: 768-785. doi:10.1101/gad.13.7.768. PubMed: 10197977.
-
(1999)
Genes Dev
, vol.13
, pp. 768-785
-
-
de Laat, W.L.1
Jaspers, N.G.2
Hoeijmakers, J.H.3
-
30
-
-
75749144248
-
Regulation of damage recognition in mammalian global genomic nucleotide excision repair
-
doi:10.1016/j.mrfmmm.2009.08.004
-
Sugasawa K, (2010) Regulation of damage recognition in mammalian global genomic nucleotide excision repair. Mutat Res 685: 29-37. doi:10.1016/j.mrfmmm.2009.08.004. PubMed: 19682467.
-
(2010)
Mutat Res
, vol.685
, pp. 29-37
-
-
Sugasawa, K.1
-
31
-
-
0032134423
-
Xeroderma pigmentosum group C protein complex is the initiator of global genome nucleotide excision repair
-
doi:10.1016/S1097-2765(00)80132-X
-
Sugasawa K, Ng JM, Masutani C, Iwai S, van der Spek PJ, et al. (1998) Xeroderma pigmentosum group C protein complex is the initiator of global genome nucleotide excision repair. Mol Cell 2: 223-232. doi:10.1016/S1097-2765(00)80132-X. PubMed: 9734359.
-
(1998)
Mol Cell
, vol.2
, pp. 223-232
-
-
Sugasawa, K.1
Ng, J.M.2
Masutani, C.3
Iwai, S.4
van der Spek, P.J.5
-
32
-
-
0035374836
-
Centrosome protein centrin 2/caltractin 1 is part of the xeroderma pigmentosum group C complex that initiates global genome nucleotide excision repair
-
doi:10.1074/jbc.M100855200
-
Araki M, Masutani C, Takemura M, Uchida A, Sugasawa K, et al. (2001) Centrosome protein centrin 2/caltractin 1 is part of the xeroderma pigmentosum group C complex that initiates global genome nucleotide excision repair. J Biol Chem 276: 18665-18672. doi:10.1074/jbc.M100855200. PubMed: 11279143.
-
(2001)
J Biol Chem
, vol.276
, pp. 18665-18672
-
-
Araki, M.1
Masutani, C.2
Takemura, M.3
Uchida, A.4
Sugasawa, K.5
-
33
-
-
0035102950
-
Strong functional interactions of TFIIH with XPC and XPG in human DNA nucleotide excision repair, without a preassembled repairosome
-
doi:10.1128/MCB.21.7.2281-2291.2001
-
Araujo SJ, Nigg EA, Wood RD, (2001) Strong functional interactions of TFIIH with XPC and XPG in human DNA nucleotide excision repair, without a preassembled repairosome. Mol Cell Biol 21: 2281-2291. doi:10.1128/MCB.21.7.2281-2291.2001. PubMed: 11259578.
-
(2001)
Mol Cell Biol
, vol.21
, pp. 2281-2291
-
-
Araujo, S.J.1
Nigg, E.A.2
Wood, R.D.3
-
34
-
-
0034689559
-
Reconstitution of damage DNA excision reaction from SV40 minichromosomes with purified nucleotide excision repair proteins
-
doi:10.1016/S0921-8777(99)00067-1
-
Araki M, Masutani C, Maekawa T, Watanabe Y, Yamada A, et al. (2000) Reconstitution of damage DNA excision reaction from SV40 minichromosomes with purified nucleotide excision repair proteins. Mutat Res 459: 147-160. doi:10.1016/S0921-8777(99)00067-1. PubMed: 10725665.
-
(2000)
Mutat Res
, vol.459
, pp. 147-160
-
-
Araki, M.1
Masutani, C.2
Maekawa, T.3
Watanabe, Y.4
Yamada, A.5
-
35
-
-
84862678632
-
Influence of centrin 2 on the interaction of nucleotide excision repair factors with damaged DNA
-
doi:10.1134/S0006297912040050
-
Krasikova YS, Rechkunova NI, Maltseva EA, Craescu CT, Petruseva IO, et al. (2012) Influence of centrin 2 on the interaction of nucleotide excision repair factors with damaged DNA. Biochemistry (Mosc) 77: 346-353. doi:10.1134/S0006297912040050.
-
(2012)
Biochemistry (Mosc)
, vol.77
, pp. 346-353
-
-
Krasikova, Y.S.1
Rechkunova, N.I.2
Maltseva, E.A.3
Craescu, C.T.4
Petruseva, I.O.5
-
36
-
-
77951083365
-
Coordination of centrosome homeostasis and DNA repair is intact in MCF-7 and disrupted in MDA-MB 231 breast cancer cells
-
doi:10.1158/1538-7445.AM10-3320
-
Acu ID, Liu T, Suino-Powell K, Mooney SM, D'Assoro AB, et al. (2010) Coordination of centrosome homeostasis and DNA repair is intact in MCF-7 and disrupted in MDA-MB 231 breast cancer cells. Cancer Res 70: 3320-3328. doi:10.1158/1538-7445.AM10-3320. PubMed: 20388771.
-
(2010)
Cancer Res
, vol.70
, pp. 3320-3328
-
-
Acu, I.D.1
Liu, T.2
Suino-Powell, K.3
Mooney, S.M.4
D'Assoro, A.B.5
-
37
-
-
0035827607
-
Phosphorylation of centrin during the cell cycle and its role in centriole separation preceding centrosome duplication
-
doi:10.1074/jbc.M101324200
-
Lutz W, Lingle WL, McCormick D, Greenwood TM, Salisbury JL, (2001) Phosphorylation of centrin during the cell cycle and its role in centriole separation preceding centrosome duplication. J Biol Chem 276: 20774-20780. doi:10.1074/jbc.M101324200. PubMed: 11279195.
-
(2001)
J Biol Chem
, vol.276
, pp. 20774-20780
-
-
Lutz, W.1
Lingle, W.L.2
McCormick, D.3
Greenwood, T.M.4
Salisbury, J.L.5
-
38
-
-
0033579464
-
Sequence and structure-based prediction of eukaryotic protein phosphorylation sites
-
doi:10.1006/jmbi.1999.3310
-
Blom N, Gammeltoft S, Brunak S, (1999) Sequence and structure-based prediction of eukaryotic protein phosphorylation sites. J Mol Biol 294: 1351-1362. doi:10.1006/jmbi.1999.3310. PubMed: 10600390.
-
(1999)
J Mol Biol
, vol.294
, pp. 1351-1362
-
-
Blom, N.1
Gammeltoft, S.2
Brunak, S.3
-
39
-
-
43549117287
-
Light-dependent CK2-mediated phosphorylation of centrins regulates complex formation with visual G-protein
-
doi:10.1016/j.bbamcr.2008.01.006
-
Trojan P, Rausch S, Giessl A, Klemm C, Krause E, et al. (2008) Light-dependent CK2-mediated phosphorylation of centrins regulates complex formation with visual G-protein. Biochim Biophys Acta 1783: 1248-1260. doi:10.1016/j.bbamcr.2008.01.006. PubMed: 18269917.
-
(2008)
Biochim Biophys Acta
, vol.1783
, pp. 1248-1260
-
-
Trojan, P.1
Rausch, S.2
Giessl, A.3
Klemm, C.4
Krause, E.5
-
40
-
-
79959560886
-
Control of centrin stability by Aurora A
-
doi:10.1371/journal.pone.0021291
-
Lukasiewicz KB, Greenwood TM, Negron VC, Bruzek AK, Salisbury JL, et al. (2011) Control of centrin stability by Aurora A. PLOS ONE 6: e21291. doi:10.1371/journal.pone.0021291. PubMed: 21731694.
-
(2011)
PLOS ONE
, vol.6
-
-
Lukasiewicz, K.B.1
Greenwood, T.M.2
Negron, V.C.3
Bruzek, A.K.4
Salisbury, J.L.5
-
41
-
-
0025828598
-
Can calmodulin function without binding calcium?
-
doi:10.1016/0092-8674(91)90547-C
-
Geiser JR, van Tuinen D, Brockerhoff SE, Neff MM, Davis TN, (1991) Can calmodulin function without binding calcium? Cell 65: 949-959. doi:10.1016/0092-8674(91)90547-C. PubMed: 2044154.
-
(1991)
Cell
, vol.65
, pp. 949-959
-
-
Geiser, J.R.1
van Tuinen, D.2
Brockerhoff, S.E.3
Neff, M.M.4
Davis, T.N.5
-
42
-
-
34447130835
-
Structures and metal-ion-binding properties of the Ca2+-binding helix-loop-helix EF-hand motifs
-
doi:10.1042/BJ20070255
-
Gifford JL, Walsh MP, Vogel HJ, (2007) Structures and metal-ion-binding properties of the Ca2+-binding helix-loop-helix EF-hand motifs. Biochem J 405: 199-221. doi:10.1042/BJ20070255. PubMed: 17590154.
-
(2007)
Biochem J
, vol.405
, pp. 199-221
-
-
Gifford, J.L.1
Walsh, M.P.2
Vogel, H.J.3
-
43
-
-
79959902343
-
The two domains of centrin have distinct basal body functions in Tetrahymena
-
doi:10.1091/mbc.E11-02-0151
-
Vonderfecht T, Stemm-Wolf AJ, Hendershott M, Giddings TH Jr., Meehl JB, et al. (2011) The two domains of centrin have distinct basal body functions in Tetrahymena. Mol Biol Cell 22: 2221-2234. doi:10.1091/mbc.E11-02-0151. PubMed: 21562224.
-
(2011)
Mol Biol Cell
, vol.22
, pp. 2221-2234
-
-
Vonderfecht, T.1
Stemm-Wolf, A.J.2
Hendershott, M.3
Giddings Jr., T.H.4
Meehl, J.B.5
-
44
-
-
0141924869
-
Xeroderma pigmentosum group C protein possesses a high affinity binding site to human centrin 2 and calmodulin
-
doi:10.1074/jbc.M302546200
-
Popescu A, Miron S, Blouquit Y, Duchambon P, Christova P, et al. (2003) Xeroderma pigmentosum group C protein possesses a high affinity binding site to human centrin 2 and calmodulin. J Biol Chem 278: 40252-40261. doi:10.1074/jbc.M302546200. PubMed: 12890685.
-
(2003)
J Biol Chem
, vol.278
, pp. 40252-40261
-
-
Popescu, A.1
Miron, S.2
Blouquit, Y.3
Duchambon, P.4
Christova, P.5
-
45
-
-
34548790663
-
Ubiquitylation-independent degradation of Xeroderma pigmentosum group C protein is required for efficient nucleotide excision repair
-
doi:10.1093/nar/gkm550
-
Wang QE, Praetorius-Ibba M, Zhu Q, El-Mahdy MA, Wani G, et al. (2007) Ubiquitylation-independent degradation of Xeroderma pigmentosum group C protein is required for efficient nucleotide excision repair. Nucleic Acids Res 35: 5338-5350. doi:10.1093/nar/gkm550. PubMed: 17693435.
-
(2007)
Nucleic Acids Res
, vol.35
, pp. 5338-5350
-
-
Wang, Q.E.1
Praetorius-Ibba, M.2
Zhu, Q.3
El-Mahdy, M.A.4
Wani, G.5
-
46
-
-
69249202311
-
Two-stage dynamic DNA quality check by xeroderma pigmentosum group C protein
-
doi:10.1038/emboj.2009.187
-
Camenisch U, Trautlein D, Clement FC, Fei J, Leitenstorfer A, et al. (2009) Two-stage dynamic DNA quality check by xeroderma pigmentosum group C protein. EMBO J 28: 2387-2399. doi:10.1038/emboj.2009.187. PubMed: 19609301.
-
(2009)
EMBO J
, vol.28
, pp. 2387-2399
-
-
Camenisch, U.1
Trautlein, D.2
Clement, F.C.3
Fei, J.4
Leitenstorfer, A.5
-
47
-
-
77951213317
-
Specific local induction of DNA strand breaks by infrared multi-photon absorption
-
doi:10.1093/nar/gkq321
-
Trautlein D, Deibler M, Leitenstorfer A, Ferrando-May E, (2010) Specific local induction of DNA strand breaks by infrared multi-photon absorption. Nucleic Acids Res 38: e14. doi:10.1093/nar/gkq321. PubMed: 19906733.
-
(2010)
Nucleic Acids Res
, vol.38
-
-
Trautlein, D.1
Deibler, M.2
Leitenstorfer, A.3
Ferrando-May, E.4
-
48
-
-
1342345291
-
Vertebrate primary cilia: a sensory part of centrosomal complex in tissue cells, but a "sleeping beauty" in cultured cells?
-
doi:10.1016/j.cellbi.2003.11.013
-
Alieva IB, Vorobjev IA, (2004) Vertebrate primary cilia: a sensory part of centrosomal complex in tissue cells, but a "sleeping beauty" in cultured cells? Cell Biol Int 28: 139-150. doi:10.1016/j.cellbi.2003.11.013. PubMed: 14984760.
-
(2004)
Cell Biol Int
, vol.28
, pp. 139-150
-
-
Alieva, I.B.1
Vorobjev, I.A.2
-
49
-
-
0034735526
-
Chlamydomonas IFT88 and its mouse homologue, polycystic kidney disease gene tg737, are required for assembly of cilia and flagella
-
doi:10.1083/jcb.151.3.709
-
Pazour GJ, Dickert BL, Vucica Y, Seeley ES, Rosenbaum JL, et al. (2000) Chlamydomonas IFT88 and its mouse homologue, polycystic kidney disease gene tg737, are required for assembly of cilia and flagella. J Cell Biol 151: 709-718. doi:10.1083/jcb.151.3.709. PubMed: 11062270.
-
(2000)
J Cell Biol
, vol.151
, pp. 709-718
-
-
Pazour, G.J.1
Dickert, B.L.2
Vucica, Y.3
Seeley, E.S.4
Rosenbaum, J.L.5
-
50
-
-
65249180870
-
hPOC5 is a centrin-binding protein required for assembly of full-length centrioles
-
doi:10.1083/jcb.200808082
-
Azimzadeh J, Hergert P, Delouvee A, Euteneuer U, Formstecher E, et al. (2009) hPOC5 is a centrin-binding protein required for assembly of full-length centrioles. J Cell Biol 185: 101-114. doi:10.1083/jcb.200808082. PubMed: 19349582.
-
(2009)
J Cell Biol
, vol.185
, pp. 101-114
-
-
Azimzadeh, J.1
Hergert, P.2
Delouvee, A.3
Euteneuer, U.4
Formstecher, E.5
-
51
-
-
67349228738
-
Overly long centrioles and defective cell division upon excess of the SAS-4-related protein CPAP
-
doi:10.1016/j.cub.2009.05.018
-
Kohlmaier G, Loncarek J, Meng X, McEwen BF, Mogensen MM, et al. (2009) Overly long centrioles and defective cell division upon excess of the SAS-4-related protein CPAP. Curr Biol 19: 1012-1018. doi:10.1016/j.cub.2009.05.018. PubMed: 19481460.
-
(2009)
Curr Biol
, vol.19
, pp. 1012-1018
-
-
Kohlmaier, G.1
Loncarek, J.2
Meng, X.3
McEwen, B.F.4
Mogensen, M.M.5
-
52
-
-
67349233018
-
Control of centriole length by CPAP and CP110
-
doi:10.1016/j.cub.2009.05.016
-
Schmidt TI, Kleylein-Sohn J, Westendorf J, Le Clech M, Lavoie SB, et al. (2009) Control of centriole length by CPAP and CP110. Curr Biol 19: 1005-1011. doi:10.1016/j.cub.2009.05.016. PubMed: 19481458.
-
(2009)
Curr Biol
, vol.19
, pp. 1005-1011
-
-
Schmidt, T.I.1
Kleylein-Sohn, J.2
Westendorf, J.3
Le Clech, M.4
Lavoie, S.B.5
-
53
-
-
67349279485
-
CPAP is a cell-cycle regulated protein that controls centriole length
-
doi:10.1038/ncb1889
-
Tang CJ, Fu RH, Wu KS, Hsu WB, Tang TK, (2009) CPAP is a cell-cycle regulated protein that controls centriole length. Nat Cell Biol 11: 825-831. doi:10.1038/ncb1889. PubMed: 19503075.
-
(2009)
Nat Cell Biol
, vol.11
, pp. 825-831
-
-
Tang, C.J.1
Fu, R.H.2
Wu, K.S.3
Hsu, W.B.4
Tang, T.K.5
-
54
-
-
34547939469
-
Cep97 and CP110 suppress a cilia assembly program
-
doi:10.1016/j.cell.2007.06.027
-
Spektor A, Tsang WY, Khoo D, Dynlacht BD, (2007) Cep97 and CP110 suppress a cilia assembly program. Cell 130: 678-690. doi:10.1016/j.cell.2007.06.027. PubMed: 17719545.
-
(2007)
Cell
, vol.130
, pp. 678-690
-
-
Spektor, A.1
Tsang, W.Y.2
Khoo, D.3
Dynlacht, B.D.4
-
55
-
-
63049083588
-
Molecular architecture of the centriole proteome: the conserved WD40 domain protein POC1 is required for centriole duplication and length control
-
doi:10.1091/mbc.E08-06-0619
-
Keller LC, Geimer S, Romijn E, Yates J 3rd, Zamora I, et al. (2009) Molecular architecture of the centriole proteome: the conserved WD40 domain protein POC1 is required for centriole duplication and length control. Mol Biol Cell 20: 1150-1166. doi:10.1091/mbc.E08-06-0619. PubMed: 19109428.
-
(2009)
Mol Biol Cell
, vol.20
, pp. 1150-1166
-
-
Keller, L.C.1
Geimer, S.2
Romijn, E.3
Yates 3rd, J.4
Zamora, I.5
-
56
-
-
34848838861
-
Structural, thermodynamic, and cellular characterization of human centrin 2 interaction with xeroderma pigmentosum group C protein
-
doi:10.1016/j.jmb.2007.08.046
-
Charbonnier JB, Renaud E, Miron S, Le Du MH, Blouquit Y, et al. (2007) Structural, thermodynamic, and cellular characterization of human centrin 2 interaction with xeroderma pigmentosum group C protein. J Mol Biol 373: 1032-1046. doi:10.1016/j.jmb.2007.08.046. PubMed: 17897675.
-
(2007)
J Mol Biol
, vol.373
, pp. 1032-1046
-
-
Charbonnier, J.B.1
Renaud, E.2
Miron, S.3
Le Du, M.H.4
Blouquit, Y.5
-
57
-
-
79960697646
-
Differential contribution of XPC, RAD23A, RAD23B and CENTRIN 2 to the UV-response in human cells
-
doi:10.1016/j.dnarep.2011.05.003
-
Renaud E, Miccoli L, Zacal N, Biard DS, Craescu CT, et al. (2011) Differential contribution of XPC, RAD23A, RAD23B and CENTRIN 2 to the UV-response in human cells. DNA Repair (Amst) 10: 835-847. doi:10.1016/j.dnarep.2011.05.003.
-
(2011)
DNA Repair (Amst)
, vol.10
, pp. 835-847
-
-
Renaud, E.1
Miccoli, L.2
Zacal, N.3
Biard, D.S.4
Craescu, C.T.5
-
58
-
-
70350357067
-
SUMO-dependent regulation of centrin-2
-
doi:10.1242/jcs.050245
-
Klein UR, Nigg EA, (2009) SUMO-dependent regulation of centrin-2. J Cell Sci 122: 3312-3321. doi:10.1242/jcs.050245. PubMed: 19706679.
-
(2009)
J Cell Sci
, vol.122
, pp. 3312-3321
-
-
Klein, U.R.1
Nigg, E.A.2
-
59
-
-
20744446570
-
Centrin 2 stimulates nucleotide excision repair by interacting with xeroderma pigmentosum group C protein
-
doi:10.1128/MCB.25.13.5664-5674.2005
-
Nishi R, Okuda Y, Watanabe E, Mori T, Iwai S, et al. (2005) Centrin 2 stimulates nucleotide excision repair by interacting with xeroderma pigmentosum group C protein. Mol Cell Biol 25: 5664-5674. doi:10.1128/MCB.25.13.5664-5674.2005. PubMed: 15964821.
-
(2005)
Mol Cell Biol
, vol.25
, pp. 5664-5674
-
-
Nishi, R.1
Okuda, Y.2
Watanabe, E.3
Mori, T.4
Iwai, S.5
-
60
-
-
0037191046
-
Assembly of centrosomal proteins and microtubule organization depends on PCM-1
-
doi:10.1083/jcb.200204023
-
Dammermann A, Merdes A, (2002) Assembly of centrosomal proteins and microtubule organization depends on PCM-1. J Cell Biol 159: 255-266. doi:10.1083/jcb.200204023. PubMed: 12403812.
-
(2002)
J Cell Biol
, vol.159
, pp. 255-266
-
-
Dammermann, A.1
Merdes, A.2
-
61
-
-
75549091741
-
gamma}-Tubulin ring complexes regulate microtubule plus end dynamics
-
doi:10.1083/jcb.200905060
-
Bouissou A, Verollet C, Sousa A, Sampaio P, Wright M, et al. (2009) gamma}-Tubulin ring complexes regulate microtubule plus end dynamics. J Cell Biol 187: 327-334. doi:10.1083/jcb.200905060. PubMed: 19948476.
-
(2009)
J Cell Biol
, vol.187
, pp. 327-334
-
-
Bouissou, A.1
Verollet, C.2
Sousa, A.3
Sampaio, P.4
Wright, M.5
-
62
-
-
0141864663
-
Sfi1p has conserved centrin-binding sites and an essential function in budding yeast spindle pole body duplication
-
doi:10.1083/jcb.200307064
-
Kilmartin JV, (2003) Sfi1p has conserved centrin-binding sites and an essential function in budding yeast spindle pole body duplication. J Cell Biol 162: 1211-1221. doi:10.1083/jcb.200307064. PubMed: 14504268.
-
(2003)
J Cell Biol
, vol.162
, pp. 1211-1221
-
-
Kilmartin, J.V.1
-
63
-
-
33745281934
-
Structural role of Sfi1p-centrin filaments in budding yeast spindle pole body duplication
-
doi:10.1083/jcb.200603153
-
Li S, Sandercock AM, Conduit P, Robinson CV, Williams RL, et al. (2006) Structural role of Sfi1p-centrin filaments in budding yeast spindle pole body duplication. J Cell Biol 173: 867-877. doi:10.1083/jcb.200603153. PubMed: 16785321.
-
(2006)
J Cell Biol
, vol.173
, pp. 867-877
-
-
Li, S.1
Sandercock, A.M.2
Conduit, P.3
Robinson, C.V.4
Williams, R.L.5
-
64
-
-
0348226550
-
Centrosomes: Sfi1p and centrin unravel a structural riddle
-
doi:10.1016/j.cub.2003.12.019
-
Salisbury JL, (2004) Centrosomes: Sfi1p and centrin unravel a structural riddle. Curr Biol 14: R27-R29. doi:10.1016/j.cub.2003.12.019. PubMed: 14711432.
-
(2004)
Curr Biol
, vol.14
-
-
Salisbury, J.L.1
-
65
-
-
0025936509
-
Increased ratio of targeted to random integration after transfection of chicken B cell lines
-
doi:10.1016/0092-8674(91)90581-I
-
Buerstedde JM, Takeda S, (1991) Increased ratio of targeted to random integration after transfection of chicken B cell lines. Cell 67: 179-188. doi:10.1016/0092-8674(91)90581-I. PubMed: 1913816.
-
(1991)
Cell
, vol.67
, pp. 179-188
-
-
Buerstedde, J.M.1
Takeda, S.2
-
66
-
-
0032530658
-
Homologous recombination and non-homologous end-joining pathways of DNA double-strand break repair have overlapping roles in the maintenance of chromosomal integrity in vertebrate cells
-
doi:10.1093/emboj/17.18.5497
-
Takata M, Sasaki MS, Sonoda E, Morrison C, Hashimoto M, et al. (1998) Homologous recombination and non-homologous end-joining pathways of DNA double-strand break repair have overlapping roles in the maintenance of chromosomal integrity in vertebrate cells. EMBO J 17: 5497-5508. doi:10.1093/emboj/17.18.5497. PubMed: 9736627.
-
(1998)
EMBO J
, vol.17
, pp. 5497-5508
-
-
Takata, M.1
Sasaki, M.S.2
Sonoda, E.3
Morrison, C.4
Hashimoto, M.5
-
67
-
-
0027055367
-
Distribution of glutamylated alpha and beta-tubulin in mouse tissues using a specific monoclonal antibody, GT335
-
1493808
-
Wolff A, de Nechaud B, Chillet D, Mazarguil H, Desbruyeres E, et al. (1992) Distribution of glutamylated alpha and beta-tubulin in mouse tissues using a specific monoclonal antibody, GT335. Eur J Cell Biol 59: 425-432. PubMed: 1493808.
-
(1992)
Eur J Cell Biol
, vol.59
, pp. 425-432
-
-
Wolff, A.1
de Nechaud, B.2
Chillet, D.3
Mazarguil, H.4
Desbruyeres, E.5
-
68
-
-
32644447023
-
NEDD1-dependent recruitment of the gamma-tubulin ring complex to the centrosome is necessary for centriole duplication and spindle assembly
-
doi:10.1083/jcb.200510028
-
Haren L, Remy MH, Bazin I, Callebaut I, Wright M, et al. (2006) NEDD1-dependent recruitment of the gamma-tubulin ring complex to the centrosome is necessary for centriole duplication and spindle assembly. J Cell Biol 172: 505-515. doi:10.1083/jcb.200510028. PubMed: 16461362.
-
(2006)
J Cell Biol
, vol.172
, pp. 505-515
-
-
Haren, L.1
Remy, M.H.2
Bazin, I.3
Callebaut, I.4
Wright, M.5
-
69
-
-
84868020395
-
C-NAP1 and rootletin restrain DNA damage-induced centriole splitting and facilitate ciliogenesis
-
doi:10.4161/cc.21986
-
Conroy PC, Saladino C, Dantas TJ, Lalor P, Dockery P, et al. (2012) C-NAP1 and rootletin restrain DNA damage-induced centriole splitting and facilitate ciliogenesis. Cell Cycle 11: 3769-3778. doi:10.4161/cc.21986. PubMed: 23070519.
-
(2012)
Cell Cycle
, vol.11
, pp. 3769-3778
-
-
Conroy, P.C.1
Saladino, C.2
Dantas, T.J.3
Lalor, P.4
Dockery, P.5
|