메뉴 건너뛰기




Volumn 148, Issue 2, 1998, Pages 611-624

The RAD52 recombinational repair pathway is essential in pol30 (PCNA) mutants that accumulate small single-stranded DNA fragments during DNA synthesis

Author keywords

[No Author keywords available]

Indexed keywords

CYCLINE; DNA FRAGMENT; REPLICATION FACTOR C; UNCLASSIFIED DRUG;

EID: 0031886721     PISSN: 00166731     EISSN: None     Source Type: Journal    
DOI: None     Document Type: Article
Times cited : (61)

References (48)
  • 1
    • 0029837030 scopus 로고    scopus 로고
    • In vivo analysis reveals that the interdomain region of the yeast proliferating cell nuclear antigen is important for DNA replication and DNA repair
    • AMIN, N. S., and C. H. HOLM, 1996 In vivo analysis reveals that the interdomain region of the yeast proliferating cell nuclear antigen is important for DNA replication and DNA repair. Genetics 144: 479-493.
    • (1996) Genetics , vol.144 , pp. 479-493
    • Amin, N.S.1    Holm, C.H.2
  • 2
    • 0028022751 scopus 로고
    • DNA replication triggered by double-stranded breaks in E. coli: Dependence on homologous recombination functions
    • ASAI, T., D. B. BATES and T. KOGOMA, 1994 DNA replication triggered by double-stranded breaks in E. coli: dependence on homologous recombination functions. Cell 78: 1051-1061.
    • (1994) Cell , vol.78 , pp. 1051-1061
    • Asai, T.1    Bates, D.B.2    Kogoma, T.3
  • 4
    • 0029001791 scopus 로고
    • A mutational analysis of the yeast proliferating cell nuclear antigen indicates distinct roles in DNA replication and DNA repair
    • AYYAGARI, R., K. J. IMPELLIZZERI, B. L. YODER, S. L. GARY and P. M. J. BURGERS, 1995 A mutational analysis of the yeast proliferating cell nuclear antigen indicates distinct roles in DNA replication and DNA repair. Mol. Cell. Biol. 15: 4420-4429.
    • (1995) Mol. Cell. Biol. , vol.15 , pp. 4420-4429
    • Ayyagari, R.1    Impellizzeri, K.J.2    Yoder, B.L.3    Gary, S.L.4    Burgers, P.M.J.5
  • 5
    • 0027454947 scopus 로고
    • DNA polymerases δ and ε are required for chromosomal replication in Saccharomyces cerevisiae
    • BUDD, M. E., and J. L. CAMPBELL, 1993 DNA polymerases δ and ε are required for chromosomal replication in Saccharomyces cerevisiae. Mol. Cell. Biol. 13: 496-505.
    • (1993) Mol. Cell. Biol. , vol.13 , pp. 496-505
    • Budd, M.E.1    Campbell, J.L.2
  • 6
    • 0024616339 scopus 로고
    • DNA polymerase I is required for promeiotic DNA replication and sporulaton but not for X-ray repair in Saccharomyces cerevisiae
    • BUDD, M. E., K. D. WITTRUP, J. E. BAILEY and J. L. CAMPBELL, 1989 DNA polymerase I is required for promeiotic DNA replication and sporulaton but not for X-ray repair in Saccharomyces cerevisiae. Mol. Cell. Biol. 9: 365-376.
    • (1989) Mol. Cell. Biol. , vol.9 , pp. 365-376
    • Budd, M.E.1    Wittrup, K.D.2    Bailey, J.E.3    Campbell, J.L.4
  • 7
    • 0025889702 scopus 로고
    • Saccharomyces cerevisiae replication factor C: II. Formation and activity of complexes with the proliferating cell nuclear antigen and with DNA polymerases δ and ε
    • BURGERS, P. M., 1991 Saccharomyces cerevisiae replication factor C: II. Formation and activity of complexes with the proliferating cell nuclear antigen and with DNA polymerases δ and ε. J. Biol. Chem. 266: 22698-22706.
    • (1991) J. Biol. Chem. , vol.266 , pp. 22698-22706
    • Burgers, P.M.1
  • 8
    • 0027213814 scopus 로고
    • ATP-independent loading of the proliferating cell nuclear antigen requires DNA ends
    • BURGERS, P. M., and B. L. YODER, 1993 ATP-independent loading of the proliferating cell nuclear antigen requires DNA ends. J. Biol. Chem. 268: 19923-19926.
    • (1993) J. Biol. Chem. , vol.268 , pp. 19923-19926
    • Burgers, P.M.1    Yoder, B.L.2
  • 9
    • 0028917009 scopus 로고
    • The mechanism of recA polA lethality: Suppression by RecA-independent recombination repair activated by the lexA(Def) mutation in Escherichia coli
    • CAO, Y., and T. KOGOMA, 1995 The mechanism of recA polA lethality: suppression by RecA-independent recombination repair activated by the lexA(Def) mutation in Escherichia coli. Genetics 139: 1483-1494.
    • (1995) Genetics , vol.139 , pp. 1483-1494
    • Cao, Y.1    Kogoma, T.2
  • 10
    • 0026543506 scopus 로고
    • Identification of replication factor C from Saccharomyces cerevisiae: A component of the leading-strand DNA replication complex
    • FIEN, K., and B. STILLMAN, 1992 Identification of replication factor C from Saccharomyces cerevisiae: a component of the leading-strand DNA replication complex. Mol. Cell. Biol. 12: 155-163.
    • (1992) Mol. Cell. Biol. , vol.12 , pp. 155-163
    • Fien, K.1    Stillman, B.2
  • 11
    • 0015223077 scopus 로고
    • - derivatives of the DNA polymerase mutant of de Lucia and Cairns
    • - derivatives of the DNA polymerase mutant of De Lucia and Cairns. J. Mol. Biol. 58: 631-634.
    • (1971) J. Mol. Biol. , vol.58 , pp. 631-634
    • Gross, J.D.1    Grunstein, J.2    Witkin, E.M.3
  • 12
    • 0015847513 scopus 로고
    • Genetic control of the cell division cycle in yeast: V. Genetic analysis of cdc mutants
    • HARTWELL, L. H., R. K. MORTIMER, J. CULOTTI and M. CULOTTI, 1973 Genetic control of the cell division cycle in yeast: V. Genetic analysis of cdc mutants. Genetics 74: 267-286.
    • (1973) Genetics , vol.74 , pp. 267-286
    • Hartwell, L.H.1    Mortimer, R.K.2    Culotti, J.3    Culotti, M.4
  • 13
    • 0021796842 scopus 로고
    • Altered fidelity of mitotic chromosome transmission in cell cycle mutants of 5. cerevisiae
    • HARTWELL, L. H., and D. SMITH, 1985 Altered fidelity of mitotic chromosome transmission in cell cycle mutants of 5. cerevisiae. Genetics 110: 381-395.
    • (1985) Genetics , vol.110 , pp. 381-395
    • Hartwell, L.H.1    Smith, D.2
  • 14
    • 0024270343 scopus 로고
    • Complete enzymatic synthesis of DNA containing the SV40 origin of replication
    • ISHIMI, Y., A. CLAUDE, P. BULLOCK and J. HURWITZ, 1988 Complete enzymatic synthesis of DNA containing the SV40 origin of replication. J. Biol. Chem. 263: 19723-19733.
    • (1988) J. Biol. Chem. , vol.263 , pp. 19723-19733
    • Ishimi, Y.1    Claude, A.2    Bullock, P.3    Hurwitz, J.4
  • 15
    • 0029905194 scopus 로고    scopus 로고
    • Evidence for involvement of yeast proliferating cell nuclear antigen in DNA mismatch repair
    • JOHNSON, R. E., G. K. KOVVALI, S. N. GUZDER, N. S. AMIN, C. HOLM et al., 1996 Evidence for involvement of yeast proliferating cell nuclear antigen in DNA mismatch repair. J. Biol. Chem. 271: 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
  • 16
    • 0029039868 scopus 로고
    • Requirement of the yeast RTH1 5′ to 3′ exonuclease for the stability of simple repetitive DNA
    • JOHNSON, R. E., G. K. KOVVALI, L. PRAKASH and S. PRAKASH, 1995 Requirement of the yeast RTH1 5′ to 3′ exonuclease for the stability of simple repetitive DNA. Science 269: 238-240.
    • (1995) Science , vol.269 , pp. 238-240
    • Johnson, R.E.1    Kovvali, G.K.2    Prakash, L.3    Prakash, S.4
  • 17
    • 0020624171 scopus 로고
    • The cdc9ligase joins completed replicons in baker's yeast
    • JOHNSTON, L. H., 1983 The cdc9ligase joins completed replicons in baker's yeast. Mol. Gen. Genet. 190: 315-317.
    • (1983) Mol. Gen. Genet. , vol.190 , pp. 315-317
    • Johnston, L.H.1
  • 18
    • 0018243214 scopus 로고
    • Saccharomyces cerevisiae cell cycle mutant cdc9 is defective in DNA ligase
    • JOHNSTON, L. H., and K. A. NASMYTH, 1978 Saccharomyces cerevisiae cell cycle mutant cdc9 is defective in DNA ligase. Nature 274: 891-893.
    • (1978) Nature , vol.274 , pp. 891-893
    • Johnston, L.H.1    Nasmyth, K.A.2
  • 19
    • 0017876681 scopus 로고
    • An alkaline sucrose gradient analysis of the mechanism of nuclear DNA synthesis in the yeast Saccharomyces cerevisiae
    • JOHNSTON, L. H., and D. H. WILLIAMSON, 1978 An alkaline sucrose gradient analysis of the mechanism of nuclear DNA synthesis in the yeast Saccharomyces cerevisiae. Mol. Gen. Genet. 164: 217-225.
    • (1978) Mol. Gen. Genet. , vol.164 , pp. 217-225
    • Johnston, L.H.1    Williamson, D.H.2
  • 20
    • 0025129813 scopus 로고
    • Cloning by function: An alternative approach for identifying yeast homologs of genes from other organsms
    • KRANZ, J. E., and C. HOLM, 1990 Cloning by function: an alternative approach for identifying yeast homologs of genes from other organsms. Proc. Natl. Acad. Sci. USA 87: 6629-6633.
    • (1990) Proc. Natl. Acad. Sci. USA , vol.87 , pp. 6629-6633
    • Kranz, J.E.1    Holm, C.2
  • 21
    • 0028618183 scopus 로고
    • Crystal structure of the eukaryotic DNA polymerase processivity factor PCNA
    • KRISHNA, T. S. R., X. P. KONG, S. GARY, P. BURGERS and J. KURIYAN, 1994 Crystal structure of the eukaryotic DNA polymerase processivity factor PCNA. Cell 79: 1233-1243.
    • (1994) Cell , vol.79 , pp. 1233-1243
    • Krishna, T.S.R.1    Kong, X.P.2    Gary, S.3    Burgers, P.4    Kuriyan, J.5
  • 22
    • 0025293914 scopus 로고
    • Mechanism of elongation of primed DNA by DNA polymerase delta, proliferating cell nuclear antigen and activator I
    • LEE, S.-H., and J. HURWITZ, 1990 Mechanism of elongation of primed DNA by DNA polymerase delta, proliferating cell nuclear antigen and activator I. Proc. Natl. Acad. Sci. USA 87: 5672-5676.
    • (1990) Proc. Natl. Acad. Sci. USA , vol.87 , pp. 5672-5676
    • Lee, S.-H.1    Hurwitz, J.2
  • 23
    • 0024238485 scopus 로고
    • An inhibitor of the in vitro elongation reaction of simian virus 40 DNA replication is overcome by proliferating-cell nuclear antigen
    • LEE, S.-H., Y. ISHIMI, M. K. KENNY, P. BULLOCK, F. B. DEAN et al. 1988 An inhibitor of the in vitro elongation reaction of simian virus 40 DNA replication is overcome by proliferating-cell nuclear antigen. Proc. Natl. Acad. Sci. USA 85: 9469-9473.
    • (1988) Proc. Natl. Acad. Sci. USA , vol.85 , pp. 9469-9473
    • Lee, S.-H.1    Ishimi, Y.2    Kenny, M.K.3    Bullock, P.4    Dean, F.B.5
  • 25
    • 0015924922 scopus 로고
    • Relation between single-strand DNA mass and sedimentation distance in alkaline sucrose gradients
    • LEVIN, D., and F. HUTCHINSON, 1973 Relation between single-strand DNA mass and sedimentation distance in alkaline sucrose gradients. J. Mol. Biol. 75: 495-502.
    • (1973) J. Mol. Biol. , vol.75 , pp. 495-502
    • Levin, D.1    Hutchinson, F.2
  • 26
    • 0029092897 scopus 로고
    • Lagging-strand DNA synthesis at the eukaryotic replication fork involves binding and stimulation of FEN-1 by proliferating cell nuclear antigen
    • LI, X., J. LI, J. HARRINGTON, M. R. LIEBER and P. M. BURGERS, 1995 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: 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
  • 27
    • 0029947714 scopus 로고    scopus 로고
    • Double-strand break repair in the absence of RAD51 in yeast: A possible role for break-induced DNA replication
    • MALKOVA, A., E. L. IVANOV and J. E. HABER, 1996 Double-strand break repair in the absence of RAD51 in yeast: a possible role for break-induced DNA replication. Proc. Natl. Acad. Sci. USA 93: 7131-7136.
    • (1996) Proc. Natl. Acad. Sci. USA , vol.93 , pp. 7131-7136
    • Malkova, A.1    Ivanov, E.L.2    Haber, J.E.3
  • 28
    • 0021254428 scopus 로고
    • Relationships between a hyper-rec mutation (REM1) and other recombination and repair genes in yeast
    • MALONE, R. E., and M. F. HOEKSTRA, 1984 Relationships between a hyper-rec mutation (REM1) and other recombination and repair genes in yeast. Genetics 107: 33-48.
    • (1984) Genetics , vol.107 , pp. 33-48
    • Malone, R.E.1    Hoekstra, M.F.2
  • 29
    • 0027965229 scopus 로고
    • Proliferating cell nuclear antigen-dependent abasic site repair in Xenopus laevis oocytes: An alternative pathway of base excision DNA repair
    • MATSUMOTO, Y., K. KIM and D. F. BOGENHAGEN, 1994 Proliferating cell nuclear antigen-dependent abasic site repair in Xenopus laevis oocytes: an alternative pathway of base excision DNA repair. Mol. Cell. Biol. 14: 6187-6197.
    • (1994) Mol. Cell. Biol. , vol.14 , pp. 6187-6197
    • Matsumoto, Y.1    Kim, K.2    Bogenhagen, D.F.3
  • 30
    • 0030031091 scopus 로고    scopus 로고
    • The large subunit of replication factor C (Rfc1/Cdc44p) is required for DNA replication and DNA repair in S. cerevisiae
    • MCALEAR, M., K. M. TUFFO and C. HOLM, 1996 The large subunit of replication factor C (Rfc1/Cdc44p) is required for DNA replication and DNA repair in S. cerevisiae. Genetics 142: 65-78.
    • (1996) Genetics , vol.142 , pp. 65-78
    • Mcalear, M.1    Tuffo, K.M.2    Holm, C.3
  • 31
    • 0015306692 scopus 로고
    • Conditional lethality of reca and recB derivatives of a strain of Escherichia coli K-12 with a temperature-sensitive deoxyribonucleic acid polymerase I
    • MONK, M., and J. KINROSS, 1972 Conditional lethality of recA and recB derivatives of a strain of Escherichia coli K-12 with a temperature-sensitive deoxyribonucleic acid polymerase I. J. Bacteriol. 109: 971-978.
    • (1972) J. Bacteriol. , vol.109 , pp. 971-978
    • Monk, M.1    Kinross, J.2
  • 32
    • 0024025259 scopus 로고
    • Spontaneous mitotic recombination in yeast: The hyper-recombinational rem1 mutations are alleles of the RAD3 gene
    • MONTELONE, B. A., M. F. HOEKSTRA and R. E. MALONE, 1988 Spontaneous mitotic recombination in yeast: the hyper-recombinational rem1 mutations are alleles of the RAD3 gene. Genetics 119: 289-301.
    • (1988) Genetics , vol.119 , pp. 289-301
    • Montelone, B.A.1    Hoekstra, M.F.2    Malone, R.E.3
  • 33
    • 0019826181 scopus 로고
    • Spontaneous mitotic recombination in mms8-1, an allele of the CDC9 gene of Saccharomyces cerevisiae
    • MONTELONE, B. A., S. PRAKASH and L. PRAKASH, 1981 Spontaneous mitotic recombination in mms8-1, an allele of the CDC9 gene of Saccharomyces cerevisiae. J. Bacteriol. 147: 517-525.
    • (1981) J. Bacteriol. , vol.147 , pp. 517-525
    • Montelone, B.A.1    Prakash, S.2    Prakash, L.3
  • 34
    • 0026596689 scopus 로고
    • Purification of PCNA as a nucleotide excision repair protein
    • NICHOLS, A. F., and A. SANCAR, 1992 Purification of PCNA as a nucleotide excision repair protein. Nucleic Acids Res. 20: 2441-2446.
    • (1992) Nucleic Acids Res. , vol.20 , pp. 2441-2446
    • Nichols, A.F.1    Sancar, A.2
  • 35
    • 0029062984 scopus 로고
    • Mammalian DNA polymerase auxiliary proteins: Analysis of replication factor C-catalyzed proliferating cell nuclear antigen loading onto circular double-stranded DNA
    • PODUST, L. M., V. N. PODUST, J. M. SOGO and U. HUBSCHER, 1995 Mammalian DNA polymerase auxiliary proteins: analysis of replication factor C-catalyzed proliferating cell nuclear antigen loading onto circular double-stranded DNA. Mol. Cell. Biol. 15: 3072-3081.
    • (1995) Mol. Cell. Biol. , vol.15 , pp. 3072-3081
    • Podust, L.M.1    Podust, V.N.2    Sogo, J.M.3    Hubscher, U.4
  • 36
    • 0026700133 scopus 로고
    • Calf thymus RF-C as an essential component for DNA polymerase delta and epsilon holoenzymes function
    • PODUST, V. N., B. A, GEORGAKI, B. STRACK and U. HUBSCHER, 1992 Calf thymus RF-C as an essential component for DNA polymerase delta and epsilon holoenzymes function. Nucleic Acids Res. 20: 4159-4165.
    • (1992) Nucleic Acids Res. , vol.20 , pp. 4159-4165
    • Podust, V.N.1    Georgaki, B.A.2    Strack, B.3    Hubscher, U.4
  • 37
    • 0026695941 scopus 로고
    • A simple and highly efficient procedure for rescuing autonomous plasmids from yeast
    • ROBZYK, K., and Y. KASSIR, 1992 A simple and highly efficient procedure for rescuing autonomous plasmids from yeast. Nucleic Acids Res. 20: 3790.
    • (1992) Nucleic Acids Res. , vol.20 , pp. 3790
    • Robzyk, K.1    Kassir, Y.2
  • 38
    • 0023545322 scopus 로고
    • A Saccharomyces cerevisiae genomic plasmid bank based on a centromere-containing shuttle vector
    • ROSE, M. D., P. NOVICK, J. H. THOMAS, D. BOTSTEIN and G. R. FINK, 1987 A Saccharomyces cerevisiae genomic plasmid bank based on a centromere-containing shuttle vector. Gene 60: 237-243.
    • (1987) Gene , vol.60 , pp. 237-243
    • Rose, M.D.1    Novick, P.2    Thomas, J.H.3    Botstein, D.4    Fink, G.R.5
  • 39
    • 0029896663 scopus 로고    scopus 로고
    • Requirement of mismatch repair genes MSH2 and MSH3 in the RAD1-RAD10 pathway of mitotic recombination in Saccharomyces cerevisiae
    • SAPARBAEV, M., L. PRAKASH and S. PRAKASH, 1996 Requirement of mismatch repair genes MSH2 and MSH3 in the RAD1-RAD10 pathway of mitotic recombination in Saccharomyces cerevisiae. Genetics 142: 727-736.
    • (1996) Genetics , vol.142 , pp. 727-736
    • Saparbaev, M.1    Prakash, L.2    Prakash, S.3
  • 41
    • 0026546407 scopus 로고
    • Proliferating cell nuclear antigen is required for DNA excision repair
    • SHIVJI, M. K. K., M. K. KENNY and R. D. WOOD, 1992 Proliferating cell nuclear antigen is required for DNA excision repair. Cell 69: 367-374.
    • (1992) Cell , vol.69 , pp. 367-374
    • Shivji, M.K.K.1    Kenny, M.K.2    Wood, R.D.3
  • 42
    • 0031442653 scopus 로고    scopus 로고
    • A novel mutation avoidance mechanism dependent on S. cerevisiae RAD27 is distinct from DNA mismatch repair
    • TISHKOFF, D. X., N. FILOSI, G. M. GAIDA and R. D. KOLODNER, 1997 A novel mutation avoidance mechanism dependent on S. cerevisiae RAD27 is distinct from DNA mismatch repair. Cell 88: 253-263.
    • (1997) Cell , vol.88 , pp. 253-263
    • Tishkoff, D.X.1    Filosi, N.2    Gaida, G.M.3    Kolodner, R.D.4
  • 43
    • 0029821929 scopus 로고    scopus 로고
    • Requirement of proliferating cell nuclear antigen in RAD6-dependent postreplicational DNA repair
    • TORRES-RAMOS, C. A., B. L. YODER, P. M. BURGERS, S. PRAKASH and L. PRAKASH, 1996 Requirement of proliferating cell nuclear antigen in RAD6-dependent postreplicational DNA repair. Proc. Natl. Acad. Sci. USA 93: 9676-9681.
    • (1996) Proc. Natl. Acad. Sci. USA , vol.93 , pp. 9676-9681
    • Torres-Ramos, C.A.1    Yoder, B.L.2    Burgers, P.M.3    Prakash, S.4    Prakash, L.5
  • 44
    • 0029087573 scopus 로고
    • Replication slippage between distant short repeats in Saccharomyces cerevisiae depends on the direction of replication and the RAD50 and RAD52 genes
    • TRAN, H. T., N. P. DEGTYAREVA, N, N. KOLOTEVA, A. SUGINO, H. MASUMOTO et al., 1995 Replication slippage between distant short repeats in Saccharomyces cerevisiae depends on the direction of replication and the RAD50 and RAD52 genes. Mol. Cell. Biol. 15: 5607-5617.
    • (1995) Mol. Cell. Biol. , vol.15 , pp. 5607-5617
    • Tran, H.T.1    Degtyareva, N.P.2    Koloteva, N.N.3    Sugino, A.4    Masumoto, H.5
  • 45
    • 0026089096 scopus 로고
    • Replication factors required for SV40 DNA replication in vitro: I. DNA structure specific recognition of a primer-template junction by eukaryotic DNA polymerases and their accessory proteins
    • TSURIMOTO, T., and B. STILLMAN, 1991 Replication factors required for SV40 DNA replication in vitro: I. DNA structure specific recognition of a primer-template junction by eukaryotic DNA polymerases and their accessory proteins. J. Biol. Chem. 266: 1950-1960.
    • (1991) J. Biol. Chem. , vol.266 , pp. 1950-1960
    • Tsurimoto, T.1    Stillman, B.2
  • 47
    • 0030271999 scopus 로고    scopus 로고
    • Requirement for PCNA in DNA mismatch repair at a step preceding DNA resyn thesis
    • UMAR, A., A. B. BUERMEYER, J. A. SIMON, D. C. THOMAS, A. B. CLARK et al., 1996 Requirement for PCNA in DNA mismatch repair at a step preceding DNA resyn thesis. Cell 87: 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
  • 48
    • 0029885134 scopus 로고    scopus 로고
    • Processing of branched DNA intermediates by a complex of human FEN-1 and PCNA
    • Wu, X., J. LI, X. LI, C. L. HSIEH, P. M. BURGERS et al., 1996 Processing of branched DNA intermediates by a complex of human FEN-1 and PCNA. Nucleic Acids Res. 24: 2036-2043.
    • (1996) Nucleic Acids Res. , vol.24 , pp. 2036-2043
    • Wu, X.1    Li, J.2    Li, X.3    Hsieh, C.L.4    Burgers, P.M.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.