CLONING AND CHARACTERIZATION OF THE DROSOPHILA HOMOLOG OF THE XERODERMA-PIGMENTOSUM COMPLEMENTATION-GROUP-B CORRECTING GENE, ERCC3

被引:26
作者
KOKEN, MHM
VREEKEN, C
BOL, SAM
CHENG, NC
JASPERSDEKKER, I
HOEIJMAKERS, JHJ
EEKEN, JCJ
WEEDA, G
PASTINK, A
机构
[1] LEIDEN UNIV, CTR MED GENET, DEPT RADIAT GENET & CHEM MUTAGENESIS, POB 9503, 2312 AV LEIDEN, NETHERLANDS
[2] INTERUNIV RES INST RADIOPATHOL & RADIAT PROTECT, JA COHEN INST, 2333 AL LEIDEN, NETHERLANDS
[3] ERASMUS UNIV, CTR MED GENET, DEPT CELL BIOL & GENET, 3000 DR ROTTERDAM, NETHERLANDS
关键词
D O I
10.1093/nar/20.21.5541
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Previously the human nucleotide excision repair gene ERCC3 was shown to be responsible for a rare combination of the autosomal recessive DNA repair disorders xeroderma pigmentosum (complementation group B) and Cockayne's syndrome (complementation group C). The human and mouse ERCC3 proteins contain several sequence motifs suggesting that it is a nucleic acid or chromatin binding helicase. To study the significance of these domains and the overall evolutionary conservation of the gene, the homolog from Drosophila melanogaster was isolated by low stringency hybridizations using two flanking probes of the human ERCC3 cDNA. The flanking probe strategy selects for long stretches of nucleotide sequence homology, and avoids isolation of small regions with fortuitous homology. In situ hybridization localized the gene onto chromosome III 67E3/4, a region devoid of known D.melanogaster mutagen sensitive mutants. Northern blot analysis showed that the gene is continuously expressed in all stages of fly development. A slight increase (2-3 times) of ERCC3Dm transcript was observed in the later stages. Two almost full length cDNAs were isolated, which have different 5' untranslated regions (UTR). The SD4 cDNA harbours only one long open reading frame (ORF) coding for ERCC3Dm. Another clone (SD2), however, has the potential to encode two proteins: a 170 amino acids polypeptide starting at the optimal first ATG has no detectable homology with any other proteins currently in the data bases, and another ORF beginning at the suboptimal second startcodon which is identical to that of SD4. Comparison of the encoded ERCC3Dm protein with the homologous proteins of mouse and man shows a strong amino acid conservation (71% identity), especially in the postulated DNA binding region and seven 'helicase' domains. The ERCC3Dm sequence is fully consistent with the presumed functions and the high conservation of these regions strengthens their functional significance. Microinjection and DNA transfection of ERCC3Dm into human xeroderma pigmentosum (c.g. B) fibroblasts and group 3 rodent mutants did not yield detectable correction. One of the possibilities to explain these negative findings is that the D.melanogaster protein may be unable to function in a mammalian repair context.
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页码:5541 / 5548
页数:8
相关论文
共 41 条
[1]   YEAST RAD14 AND HUMAN XERODERMA-PIGMENTOSUM GROUP-A DNA-REPAIR GENES ENCODE HOMOLOGOUS PROTEINS [J].
BANKMANN, M ;
PRAKASH, L ;
PRAKASH, S .
NATURE, 1992, 355 (6360) :555-558
[2]   TRANSCRIPTION TERMINATION AND 3' PROCESSING - THE END IS IN SITE [J].
BIRNSTIEL, ML ;
BUSSLINGER, M ;
STRUB, K .
CELL, 1985, 41 (02) :349-359
[3]  
BRENNAN RG, 1989, J BIOL CHEM, V264, P1903
[4]   ASSIGNMENT OF 10 DNA-REPAIR GENES FROM SCHIZOSACCHAROMYCES-POMBE TO CHROMOSOMAL NOTI RESTRICTION FRAGMENTS [J].
BROUGHTON, BC ;
BARBET, N ;
MURRAY, J ;
WATTS, FZ ;
KOKEN, MHM ;
LEHMANN, AR ;
CARR, AM .
MOLECULAR & GENERAL GENETICS, 1991, 228 (03) :470-472
[6]  
CLEAVER JE, 1989, XERODERMA PIGMENTOSU, P2949
[7]   MICROINJECTION OF HUMAN CELL-EXTRACTS CORRECTS XERODERMA PIGMENTOSUM DEFECT [J].
DEJONGE, AJR ;
VERMEULEN, W ;
KLEIN, B ;
HOEIJMAKERS, JHJ .
EMBO JOURNAL, 1983, 2 (05) :637-641
[8]  
ENGELS WR, 1986, FOCUS, V8, P6
[9]   2 RELATED SUPERFAMILIES OF PUTATIVE HELICASES INVOLVED IN REPLICATION, RECOMBINATION, REPAIR AND EXPRESSION OF DNA AND RNA GENOMES [J].
GORBALENYA, AE ;
KOONIN, EV ;
DONCHENKO, AP ;
BLINOV, VM .
NUCLEIC ACIDS RESEARCH, 1989, 17 (12) :4713-4730
[10]   SSL2, A SUPPRESSOR OF A STEM-LOOP MUTATION IN THE HIS4 LEADER ENCODES THE YEAST HOMOLOG OF HUMAN ERCC-3 [J].
GULYAS, KD ;
DONAHUE, TF .
CELL, 1992, 69 (06) :1031-1042