EFFECTS OF EXCESS CENTROMERES AND EXCESS TELOMERES ON CHROMOSOME LOSS RATES

被引:31
作者
RUNGE, KW
WELLINGER, RJ
ZAKIAN, VA
机构
[1] Fred Hutchinson Cancer Res. Center, Division of Basic Sciences, M621, Seattle, WA 98104
关键词
D O I
10.1128/MCB.11.6.2919
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
The linear chromosomes of eukaryotes contain specialized structures to ensure their faithful replication and segregation to daughter cells. Two of these structures, centromeres and telomeres, are limited, respectively, to one and two copies per chromosome. It is possible that the proteins that interact with centromere and telomere DNA sequences are present in limiting amounts and could be competed away from the chromosomal copies of these elements by additional copies introduced on plasmids. We have introduced excess centromeres and telomeres into Saccharomyces cerevisiae and quantitated their effects on the rates of loss of chromosome III and chromosome VII by fluctuation analysis. We show that (i) 600 new telomeres have no effect on chromosome loss; (ii) an average of 25 extra centromere DNA sequences increase the rate of chromosome III loss from 0.4 x 10(-4) events per cell division to 1.3 x 10(-3) events per cell division; (iii) centromere DNA (CEN) sequences on circular vectors destabilize chromosomes more effectively than do CEN sequences on 15-kb linear vectors, and transcribed CEN sequences have no effect on chromosome stability. We discuss the different effects of extra centromere and telomere DNA sequences on chromosome stability in terms of how the cell recognizes these two chromosomal structures.
引用
收藏
页码:2919 / 2928
页数:10
相关论文
共 62 条
[1]   A METHOD FOR GENE DISRUPTION THAT ALLOWS REPEATED USE OF URA3 SELECTION IN THE CONSTRUCTION OF MULTIPLY DISRUPTED YEAST STRAINS [J].
ALANI, E ;
CAO, L ;
KLECKNER, N .
GENETICS, 1987, 116 (04) :541-545
[2]  
BAKER RE, 1989, J BIOL CHEM, V264, P10843
[3]   ISOLATION OF THE GENE ENCODING THE SACCHAROMYCES-CEREVISIAE CENTROMERE-BINDING PROTEIN CP1 [J].
BAKER, RE ;
MASISON, DC .
MOLECULAR AND CELLULAR BIOLOGY, 1990, 10 (06) :2458-2467
[4]   CHROMOSOME ENDS IN DROSOPHILA WITHOUT TELOMERIC DNA-SEQUENCES [J].
BIESSMANN, H ;
CARTER, SB ;
MASON, JM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (05) :1758-1761
[5]   YEAST CENTROMERE DNA IS IN A UNIQUE AND HIGHLY ORDERED STRUCTURE IN CHROMOSOMES AND SMALL CIRCULAR MINICHROMOSOMES [J].
BLOOM, KS ;
CARBON, J .
CELL, 1982, 29 (02) :305-317
[6]  
BLOOM KS, 1984, J CELL BIOL, V99, P1559, DOI 10.1083/jcb.99.5.1559
[7]   ISOLATION OF A SACCHAROMYCES-CEREVISIAE CENTROMERE DNA-BINDING PROTEIN, ITS HUMAN HOMOLOG, AND ITS POSSIBLE ROLE AS A TRANSCRIPTION FACTOR [J].
BRAM, RJ ;
KORNBERG, RD .
MOLECULAR AND CELLULAR BIOLOGY, 1987, 7 (01) :403-409
[8]   CONNECTIONS BETWEEN TRANSCRIPTIONAL ACTIVATORS, SILENCERS, AND TELOMERES AS REVEALED BY FUNCTIONAL-ANALYSIS OF A YEAST DNA-BINDING PROTEIN [J].
BUCHMAN, AR ;
LUE, NF ;
KORNBERG, RD .
MOLECULAR AND CELLULAR BIOLOGY, 1988, 8 (12) :5086-5099
[9]   YEAST CENTROMERE BINDING PROTEIN-CBF1, OF THE HELIX-LOOP-HELIX PROTEIN FAMILY, IS REQUIRED FOR CHROMOSOME STABILITY AND METHIONINE PROTOTROPHY [J].
CAI, MJ ;
DAVIS, RW .
CELL, 1990, 61 (03) :437-446
[10]  
CAMPBELL DA, 1975, GENETICS, V79, P383