INTRODUCTION OF DOUBLE-STRAND BREAKS INTO THE GENOME OF MOUSE CELLS BY EXPRESSION OF A RARE-CUTTING ENDONUCLEASE

被引:625
作者
ROUET, P
SMIH, F
JASIN, M
机构
[1] MEM SLOAN KETTERING CANC CTR, CELL BIOL & GENET PROGRAM, NEW YORK, NY 10021 USA
[2] CORNELL UNIV, GRAD SCH MED SCI, NEW YORK, NY 10021 USA
关键词
D O I
10.1128/MCB.14.12.8096
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
To maintain genomic integrity, double-strand breaks (DSBs) in chromosomal DNA must be repaired. In mammalian systems, the analysis of the repair of chromosomal DSBs has been limited by the inability to introduce well-defined DSBs in genomic DNA. In this study, we created specific DSBs in mouse chromosomes for the first time, using an expression system for a rare-cutting endonuclease, I-SceI. A genetic assay has been devised to monitor the repair of DSBs, whereby cleavage sites for I-SceI have been integrated into the mouse genome in two tandem neomycin phosphotransferase genes. We find that cleavage of the I-SceI sites is very efficient, with at least 12% of stably transfected cells having at least one cleavage event and, of these, more than 70% have undergone cleavage at both I-SceI sites. Cleavage of both sites in a fraction of clones deletes 3.8 kb of intervening chromosomal sequences. We find that the DSBs are repaired by both homologous and nonhomologous mechanisms. Nonhomologous repair events frequently result in small deletions after rejoining of the two DNA ends. Some of these appear to occur by simple blunt-ended ligation, whereas several others may occur through annealing of short regions of terminal homology. The DSBs are apparently recombinogenic, stimulating gene targeting of a homologous fragment by more than 2 orders of magnitude. Whereas gene-targeted clones are nearly undetectable without endonuclease expression, they represent approximately 10% of cells transfected with the I-SceI expression vector. Gene targeted clones are of two major types, those that occur by two-sided homologous recombination with the homologous fragment and those that occur by one-sided homologous recombination. Our results are expected to impact a number of areas in the study of mammalian genome dynamics, including the analysis of the repair of DSBs and homologous recombination and, potentially, molecular genetic analyses of mammalian genomes.
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页码:8096 / 8106
页数:11
相关论文
共 61 条
[51]   HOMOTHALLIC SWITCHING OF YEAST MATING TYPE CASSETTES IS INITIATED BY A DOUBLE-STRANDED CUT IN THE MAT LOCUS [J].
STRATHERN, JN ;
KLAR, AJS ;
HICKS, JB ;
ABRAHAM, JA ;
IVY, JM ;
NASMYTH, KA ;
MCGILL, C .
CELL, 1982, 31 (01) :183-192
[52]  
SUBRAMANI S, 1988, GENETIC RECOMBINATIO, P549
[53]   CHARACTERIZATION OF DOUBLE-STRAND BREAK-INDUCED RECOMBINATION - HOMOLOGY REQUIREMENTS AND SINGLE-STRANDED-DNA FORMATION [J].
SUGAWARA, N ;
HABER, JE .
MOLECULAR AND CELLULAR BIOLOGY, 1992, 12 (02) :563-575
[54]   DOUBLE-STRAND BREAKS AT AN INITIATION SITE FOR MEIOTIC GENE CONVERSION [J].
SUN, H ;
TRECO, D ;
SCHULTES, NP ;
SZOSTAK, JW .
NATURE, 1989, 338 (6210) :87-90
[55]   THE DOUBLE-STRAND-BREAK REPAIR MODEL FOR RECOMBINATION [J].
SZOSTAK, JW ;
ORRWEAVER, TL ;
ROTHSTEIN, RJ ;
STAHL, FW .
CELL, 1983, 33 (01) :25-35
[56]   SITE-DIRECTED MUTAGENESIS BY GENE TARGETING IN MOUSE EMBRYO-DERIVED STEM-CELLS [J].
THOMAS, KR ;
CAPECCHI, MR .
CELL, 1987, 51 (03) :503-512
[57]   GERM LINE TRANSMISSION AND EXPRESSION OF A CORRECTED HPRT GENE PRODUCED BY GENE TARGETING IN EMBRYONIC STEM-CELLS [J].
THOMPSON, S ;
CLARKE, AR ;
POW, AM ;
HOOPER, ML ;
MELTON, DW .
CELL, 1989, 56 (02) :313-321
[58]   DOUBLE-STRAND GAP REPAIR IN A MAMMALIAN GENE TARGETING REACTION [J].
VALANCIUS, V ;
SMITHIES, O .
MOLECULAR AND CELLULAR BIOLOGY, 1991, 11 (09) :4389-4397
[59]   DOUBLE REPLACEMENT - STRATEGY FOR EFFICIENT INTRODUCTION OF SUBTLE MUTATIONS INTO THE MURINE COL1A-1 GENE BY HOMOLOGOUS RECOMBINATION IN EMBRYONIC STEM-CELLS [J].
WU, H ;
LIU, X ;
JAENISCH, R .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (07) :2819-2823
[60]   MEIOSIS-INDUCED DOUBLE-STRAND BREAK SITES DETERMINED BY YEAST CHROMATIN STRUCTURE [J].
WU, TC ;
LICHTEN, M .
SCIENCE, 1994, 263 (5146) :515-518