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SPS2基因5'端拷贝数增加会抑制酿酒酵母的孢子形成。

Increased copy number of the 5' end of the SPS2 gene inhibits sporulation of Saccharomyces cerevisiae.

作者信息

Percival-Smith A, Segall J

出版信息

Mol Cell Biol. 1987 Jul;7(7):2484-90. doi: 10.1128/mcb.7.7.2484-2490.1987.

Abstract

We found that the introduction into a yeast cell of a high-copy-number plasmid containing the 5' end of the SPS2 gene, a sporulation-specific gene of Saccharomyces cerevisiae, led to a reduction in the efficiency of spore formation. The plasmid pAP290, which contains the sequence from -138 to +152 of the SPS2 gene, caused a fivefold reduction in spore formation; the presence of the plasmid had no effect on transcription of the chromosomal SPS2 gene. A plasmid containing only the sequence upstream of the TATA box of the SPS2 gene (-350 to -68) was unable to inhibit the completion of sporulation, whereas the downstream sequence, from -70 to +404, although unable by itself to inhibit sporulation, could do so when provided with an upstream fragment containing the CYC1 upstream activation sequence. Deletion of 22 base pairs from pAP290, which introduced a frameshift after codon 17 of the SPS2 gene and reduced the open reading frame to 26 amino acids, generated a plasmid (pAP290 delta Pst) which could no longer inhibit sporulation. The SPS2 inserts of pAP290 and pAP290 delta Pst were found to direct equivalent levels of sporulation-specific transcription. We conclude from these results that the presence of both the SPS2 promoter (or a substitute promoter) and the initial coding sequence of the SPS2 gene is required in the high-copy-number plasmid to generate the asporogenous phenotype. We speculate that the accumulation of a protein containing the amino-terminal portion of the SPS2 gene product, synthesized from the transcripts of the truncated plasmid-borne copies of the SPS2 gene, prevents ascus formation.

摘要

我们发现,将含有酿酒酵母孢子形成特异性基因SPS2基因5'端的高拷贝数质粒导入酵母细胞,会导致孢子形成效率降低。质粒pAP290含有SPS2基因从-138至+152的序列,使孢子形成减少了五倍;该质粒的存在对染色体SPS2基因的转录没有影响。仅含有SPS2基因TATA框上游序列(-350至-68)的质粒无法抑制孢子形成的完成,而下游序列(从-70至+404)虽然自身无法抑制孢子形成,但当与含有CYC1上游激活序列的上游片段一起提供时则可以。从pAP290中缺失22个碱基对,这在SPS2基因的第17个密码子后引入了移码,并将开放阅读框减少到26个氨基酸,产生了一个不再能抑制孢子形成的质粒(pAP290 delta Pst)。发现pAP290和pAP290 delta Pst的SPS2插入片段指导同等水平的孢子形成特异性转录。我们从这些结果得出结论,高拷贝数质粒中需要同时存在SPS2启动子(或替代启动子)和SPS2基因的初始编码序列才能产生无孢子表型。我们推测,由截短的质粒携带的SPS2基因转录本合成的含有SPS2基因产物氨基末端部分的蛋白质积累会阻止子囊形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d27/365381/9ab8cd4f7c25/molcellb00079-0196-a.jpg

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