GENE-PRODUCTS THAT PROMOTE MESSENGER-RNA TURNOVER IN SACCHAROMYCES-CEREVISIAE

被引:280
作者
LEEDS, P [1 ]
WOOD, JM [1 ]
LEE, BS [1 ]
CULBERTSON, MR [1 ]
机构
[1] UNIV WISCONSIN, GENET & MOLEC BIOL LABS, MADISON, WI 53706 USA
关键词
D O I
10.1128/MCB.12.5.2165
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
We showed Previously that the increased rate of MRNA turnover associated with premature translational termination in the yeast Saccharomyces cerevisiae requires a functional UPF1 gene product. In this study, we show that the UPF1 gene codes for a 109-kda primary translation product whose function is not essential for growth. The protein contains a potential zinc-dependent nucleic acid-binding domain and a nucleoside triphosphate-binding domain. A 300-amino-acid segment of the UPF1 protein is 36% identical to a segment of the yeast SEN1 protein, which is required for endonucleolytic processing of intron-containing pre-tRNAs. The same region is 32% identical to a segment of Mov-10, a mouse protein of unknown function. Dominant-negative upf1 mutations were isolated following in vitro mutagenesis of a plasmid containing the UPF1 gene. They mapped exclusively at conserved positions within the sequence element common to all three proteins, whereas the recessive upf1-2 mutation maps outside this region. The clustering of dominant-negative mutations suggests the presence of a functional domain in UPF1 that may be shared by all three proteins. We also identified upf mutations in three other genes designated UPF2, UPF3, and UPF4. When alleles of each gene were screened for effects on mRNA accumulation, we found that the recessive mutation upf3-1 causes increased accumulation of mRNA containing a premature stop codon. When mRNA half-lives were measured, we found that excess mRNA accumulation was due to mRNA stabilization. On the basis of these results, we suggest that the products of at least two genes, UPF1 and UPF3, are responsible for the accelerated rate of mRNA decay associated with premature translational termination.
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页码:2165 / 2177
页数:13
相关论文
共 67 条
[11]   CONSERVATION OF HIGH-EFFICIENCY PROMOTER SEQUENCES IN SACCHAROMYCES-CEREVISIAE [J].
DOBSON, MJ ;
TUITE, MF ;
ROBERTS, NA ;
KINGSMAN, AJ ;
KINGSMAN, SM ;
PERKINS, RE ;
CONROY, SC ;
DUNBAR, B ;
FOTHERGILL, LA .
NUCLEIC ACIDS RESEARCH, 1982, 10 (08) :2625-2637
[12]   SUPPRESSIBLE 4-BASE GLYCINE AND PROLINE CODONS IN YEAST [J].
DONAHUE, TF ;
FARABAUGH, PJ ;
FINK, GR .
SCIENCE, 1981, 212 (4493) :455-457
[13]   MUTATIONS AT A ZN(II) FINGER MOTIF IN THE YEAST ELF-2-BETA GENE ALTER RIBOSOMAL START-SITE SELECTION DURING THE SCANNING PROCESS [J].
DONAHUE, TF ;
CIGAN, AM ;
PABICH, EK ;
VALAVICIUS, BC .
CELL, 1988, 54 (05) :621-632
[14]   CHARACTERIZATION OF A COMPONENT OF THE YEAST SECRETION MACHINERY - IDENTIFICATION OF THE SEC18 GENE-PRODUCT [J].
EAKLE, KA ;
BERNSTEIN, M ;
EMR, SD .
MOLECULAR AND CELLULAR BIOLOGY, 1988, 8 (10) :4098-4109
[15]   GENETIC PROPERTIES OF CHROMOSOMALLY INTEGRATED 2-MU PLASMID DNA IN YEAST [J].
FALCO, SC ;
LI, YY ;
BROACH, JR ;
BOTSTEIN, D .
CELL, 1982, 29 (02) :573-584
[16]  
FALCO SC, 1983, GENETICS, V105, P857
[17]   LEU3 OF SACCHAROMYCES-CEREVISIAE ENCODES A FACTOR FOR CONTROL OF RNA LEVELS OF A GROUP OF LEUCINE-SPECIFIC GENES [J].
FRIDEN, P ;
SCHIMMEL, P .
MOLECULAR AND CELLULAR BIOLOGY, 1987, 7 (08) :2708-2717
[18]  
GABER RF, 1982, GENETICS, V101, P345
[19]  
GREENE JM, 1987, CURRENT PROTOCOLS MO, V1
[20]  
HENDRICK J, UNPUB