REPAIR OF DNA DOUBLE-STRAND BREAKS INDUCED IN SACCHAROMYCES-CEREVISIAE USING DIFFERENT GAMMA-RAY DOSE-RATES - A PULSED-FIELD GEL-ELECTROPHORESIS ANALYSIS

被引:13
作者
DARDALHON, M [1 ]
NOHTURFFT, A [1 ]
MENIEL, V [1 ]
AVERBECK, D [1 ]
机构
[1] INST CURIE,CNRS,URA 1292,F-75231 PARIS 05,FRANCE
关键词
D O I
10.1080/09553009414550361
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
We investigated the effects of gamma-ray exposures at high dose-rate (HDR, 23.2 Gy/min) and low dose-rate (LDR, 0.4.7 Gy/min) on survival and the induction of DNA double-strand breaks (dsb) in a diploid wild-type (D7) and the repair-deficient mutant strain rad52/rad52 of Saccharomyces cerevisiae. Analysis by pulsed-field gel electrophoresis (PFGE) using a contour homogeneous electric field apparatus revealed that, at HDR, in the range 0-400 Gy, dsb are induced as a linear function of gamma-ray dose. Liquid holding recovery in non-nutrient medium (LHR) for 48 h of wild-type cells treated at HDR, significantly increased survival and reduced the yield of dsb. Such changes did not occur in rad52/rad52 cells defective in the repair of dsb. Thus, in gamma-irradiated wild-type cells, an efficient repair of dsb is taking place during LHR. Treatments of wildtype cells at LDR resulted in higher survival and an approximately two-fold lower yield of dsb than at HDR. Such a dose-rate effect was absent in rad52/rad52 cells suggesting that, in wild-type cells during LDR exposures, significant amounts of dsb can be repaired. This repair could be very much accentuated by 48-h LHR of wild-type cells treated at LDR. The relationship observed between gamma-ray survival and dsb repair clearly indicates that increases in survival of wild-type cells, during LDR as compared with HDR exposures and after LHR, are strongly related to the repair of dsb.
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页码:307 / 314
页数:8
相关论文
共 46 条
[11]   EVIDENCE FOR DNA DOUBLE-STRAND BREAKS AS THE CRITICAL LESIONS IN YEAST-CELLS IRRADIATED WITH SPARSELY OR DENSELY IONIZING-RADIATION UNDER OXIC OR ANOXIC CONDITIONS [J].
FRANKENBERG, D ;
FRANKENBERGSCHWAGER, M ;
BLOCHER, D ;
HARBICH, R .
RADIATION RESEARCH, 1981, 88 (03) :524-532
[12]  
FRANKENBERG D, 1984, BRIT J CANCER S6, V49, P223
[13]  
FRANKENBERGSCHW.M, 1991, ADV MUTAGENESIS RES, V3, P1
[14]   INFLUENCE OF OXYGEN ON THE SURVIVAL AND YIELD OF DNA DOUBLE-STRAND BREAKS IN IRRADIATED YEAST-CELLS [J].
FRANKENBERGSCHWAGER, M ;
FRANKENBERG, D ;
BLOCHER, D ;
ADAMCZYK, C .
INTERNATIONAL JOURNAL OF RADIATION BIOLOGY, 1979, 36 (03) :261-270
[15]   LINEAR RELATIONSHIP BETWEEN DNA DOUBLE-STRAND BREAKS AND RADIATION-DOSE (30 MEV ELECTRONS) IS CONVERTED INTO A QUADRATIC FUNCTION BY CELLULAR REPAIR [J].
FRANKENBERGSCHWAGER, M ;
FRANKENBERG, D ;
BLOCHER, D ;
ADAMCZYK, C .
INTERNATIONAL JOURNAL OF RADIATION BIOLOGY, 1980, 37 (02) :207-212
[16]   EFFECT OF DOSE-RATE ON THE INDUCTION OF DNA DOUBLE-STRAND BREAKS IN EUKARYOTIC CELLS [J].
FRANKENBERGSCHWAGER, M ;
FRANKENBERG, D ;
BLOCHER, D ;
ADAMCZYK, C .
RADIATION RESEARCH, 1981, 87 (03) :710-717
[17]   REVIEW OF REPAIR KINETICS FOR DNA DAMAGE INDUCED IN EUKARYOTIC CELLS-INVITRO BY IONIZING-RADIATION [J].
FRANKENBERGSCHWAGER, M .
RADIOTHERAPY AND ONCOLOGY, 1989, 14 (04) :307-320
[18]   INDUCTION, REPAIR AND BIOLOGICAL RELEVANCE OF RADIATION-INDUCED DNA LESIONS IN EUKARYOTIC CELLS [J].
FRANKENBERGSCHWAGER, M .
RADIATION AND ENVIRONMENTAL BIOPHYSICS, 1990, 29 (04) :273-292
[19]   REPAIR OF DNA DOUBLE-STRAND BREAKS IN IRRADIATED YEAST-CELLS UNDER NON-GROWTH CONDITIONS [J].
FRANKENBERGSCHWAGER, M ;
FRANKENBERG, D ;
BLOCHER, D ;
ADAMCZYK, C .
RADIATION RESEARCH, 1980, 82 (03) :498-510
[20]   DNA DOUBLE-STRAND BREAKS - THEIR REPAIR AND RELATIONSHIP TO CELL KILLING IN YEAST [J].
FRANKENBERGSCHWAGER, M ;
FRANKENBERG, D .
INTERNATIONAL JOURNAL OF RADIATION BIOLOGY, 1990, 58 (04) :569-575