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酿酒酵母生命周期中MAT对STA1基因表达的调控。

Regulation of STA1 gene expression by MAT during the life cycle of Saccharomyces cerevisiae.

作者信息

Dranginis A M

机构信息

Laboratory of Cellular and Developmental Biology, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.

出版信息

Mol Cell Biol. 1989 Sep;9(9):3992-8. doi: 10.1128/mcb.9.9.3992-3998.1989.

Abstract

STA1 encodes a secreted glucoamylase of the yeast Saccharomyces cerevisiae var. diastaticus. Glucoamylase secretion is controlled by the mating type locus MAT; a and alpha haploid yeast cells secrete high levels of the enzyme, but a/alpha diploid cells produce undetectable amounts. It has been suggested that STA1 is regulated by MATa2 (I. Yamashita, Y. Takano, and S. Fukui, J. Bacteriol. 164:769-773, 1985), which is a MAT transcript of previously unknown function. In contrast, this work shows that deletion of the entire MATa2 gene had no effect on STA1 regulation but that deletion of MATa1 sequences completely abolished mating-type control. In all cases, glucoamylase activity levels reflected STA1 mRNA levels. It appears that STA1 is a haploid-specific gene that is regulated by MATa1 and a product of the MAT alpha locus and that this regulation occurs at the level of RNA accumulation. STA1 expression was also shown to be glucose repressible. STA1 mRNA was induced in diploids during sporulation along with SGA, a closely linked gene that encodes an intracellular sporulation-specific glucoamylase of S. cerevisiae. A diploid strain with a MATa1 deletion showed normal induction of STA1 in sporulation medium, but SGA expression was abolished. Therefore, these two homologous and closely linked glucoamylase genes are induced by different mechanisms during sporulation. STA1 induction may be a response to the starvation conditions necessary for sporulation, while SGA induction is governed by the pathway by which MAT regulates sporulation. The strain containing a complete deletion of MATa2 grew, mated, and sporulated normally.

摘要

STA1编码酿酒酵母变种糖化酵母的一种分泌型葡糖淀粉酶。葡糖淀粉酶的分泌受交配型基因座MAT控制;a型和α型单倍体酵母细胞分泌高水平的该酶,但a/α二倍体细胞产生的量无法检测到。有人提出STA1受MATa2调控(I. 山下、Y. 高野和S. 福井,《细菌学杂志》164:769 - 773,1985年),MATa2是一个功能未知的MAT转录本。相比之下,这项研究表明,整个MATa2基因的缺失对STA1的调控没有影响,但MATa1序列的缺失完全消除了交配型控制。在所有情况下,葡糖淀粉酶活性水平反映了STA1 mRNA水平。似乎STA1是一个单倍体特异性基因,受MATa1和MATα基因座的一个产物调控,并且这种调控发生在RNA积累水平。STA1的表达也显示出可被葡萄糖抑制。在孢子形成过程中,二倍体细胞中的STA1 mRNA与SGA一起被诱导,SGA是一个紧密连锁的基因,编码酿酒酵母的一种细胞内孢子形成特异性葡糖淀粉酶。一个缺失MATa1的二倍体菌株在孢子形成培养基中STA1的诱导正常,但SGA的表达被消除。因此,这两个同源且紧密连锁的葡糖淀粉酶基因在孢子形成过程中通过不同机制被诱导。STA1的诱导可能是对孢子形成所需饥饿条件的一种反应,而SGA的诱导受MAT调控孢子形成的途径控制。含有MATa2完全缺失的菌株生长、交配和孢子形成正常。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d4c/362461/f4148321a88a/molcellb00057-0415-a.jpg

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