IDENTIFICATION OF A SPORULATION-SPECIFIC PROMOTER REGULATING DIVERGENT TRANSCRIPTION OF 2 NOVEL SPORULATION GENES IN SACCHAROMYCES-CEREVISIAE

被引:26
作者
COE, JGS [1 ]
MURRAY, LE [1 ]
DAWES, IW [1 ]
机构
[1] UNIV NEW S WALES,SCH BIOCHEM & MOLEC GENET,SYDNEY,NSW 2052,AUSTRALIA
来源
MOLECULAR & GENERAL GENETICS | 1994年 / 244卷 / 06期
关键词
SACCHAROMYCES CEREVISIAE; MEIOSIS; SPORULATION; DIVERGENT PROMOTER; DEVELOPMENTAL REGULATION;
D O I
10.1007/BF00282757
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
Promoters that control gene expression in Saccharomyces cerevisiae only in a sporulation-specific manner have previously been isolated from a genomic yeast DNA library fused to a promoterless Escherichia coli lacZ gene. Two novel sporulation-specific genes, SPS18 and SPS19, were isolated using this technique. These genes are divergently controlled by the same promoter but with SPS18 expressed at four times the level of SPS19. Deletion analysis has shown that the promoter elements that exert sporulation control on each of the genes overlap, having a common 25 bp sequence located within the intergenic region. SPS18 encodes a 34-KDa protein of 300 amino acids that contains a putative zinc-binding domain and a region of highly basic residues that could target the protein to the nucleus. SPS19 encodes a 31-KDa protein of 295 amino acids, which has a peroxisomal targeting signal (SKL) at its C terminus; this protein belongs to the family of non-metallo short-chain alcohol dehydrogenases. A null mutation deleting the intergenic promoter prevented expression of both genes, and when homozygous in diploids, reduced the extent of sporulation four-fold; the spores that did form were viable, but failed to become resistant to ether, and were more sensitive to lytic enzymes. This phenotype reflects a defect in spore wall maturation, indicating that the product of at least one of the genes functions during the process of spore wall formation. Therefore these genes belong to the class of late sporulation-specific genes that are sequentially activated during the process of meiosis and spore formation.
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页码:661 / 672
页数:12
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