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营养生长和产孢酵母物种中葡糖淀粉酶合成的转录调控

Transcriptional control of glucoamylase synthesis in vegetatively growing and sporulating Saccharomyces species.

作者信息

Pretorius I S, Modena D, Vanoni M, Englard S, Marmur J

出版信息

Mol Cell Biol. 1986 Sep;6(9):3034-41. doi: 10.1128/mcb.6.9.3034-3041.1986.

Abstract

Three unlinked, homologous genes, STA1, STA2, and STA3, encode the extracellular glycosylated glucoamylase isozymes I, II, and III, respectively, in Saccharomyces species. S. cerevisiae, which is sta0 (absence of functional STA genes in haploids), does carry a glucoamylase gene, delta sta, expressed only during sporulation (W. J. Colonna and P. T. Magee, J. Bacteriol. 134:844-853, 1978; I. Yamashita and S. Fukui, Mol. Cell. Biol. 5:3069-3073, 1985). In this study we examined some of the physiological and genetic factors that affect glucoamylase expression. It was found that STA2 strains grown in synthetic medium produce glucoamylase only in the presence of either Maltrin M365 (a mixture of maltooligosaccharides) or starch. Maximal levels of glucoamylase activity were found in cells grown in rich medium supplemented with glycerol plus ethanol, starch, or Maltrin. When various sugars served as carbon sources they all supported glucoamylase synthesis, although at reduced levels. In any given growth medium glucoamylase isozyme II synthesis was modulated by functionality of the mitochondria. Synthesis of glucoamylase is continuous throughout the growth phases, with maximal secretion taking place in the early stationary phase. In the various regimens, the differences in enzyme accumulation are accounted for by differences in the levels of glucoamylase mRNA. Both glucoamylase mRNA and enzyme activity were drastically and coordinately inhibited in MATa/MAT alpha diploids and by the presence of the regulatory gene STA10. Both effects were partially overcome when the STA2 gene was present on a multicopy plasmid. The STA2 mRNA and glucoamylase were coinduced in sporulating STA2/STA2 diploids. A smaller, coinduced RNA species was also detected by Northern blotting with a STA2 probe. The same mRNA species was detected in sporulating sta0 diploids and is likely to encode the sporulation-specific glucoamylase.

摘要

在酿酒酵母属中,三个不连锁的同源基因STA1、STA2和STA3分别编码胞外糖基化的葡糖淀粉酶同工酶I、II和III。单倍体中sta0(缺乏功能性STA基因)的酿酒酵母确实携带一个葡糖淀粉酶基因delta sta,仅在孢子形成过程中表达(W. J. 科隆纳和P. T. 马吉,《细菌学杂志》134:844 - 853,1978;山下一和福井修,《分子细胞生物学》5:3069 - 3073,1985)。在本研究中,我们研究了一些影响葡糖淀粉酶表达的生理和遗传因素。发现STA2菌株在合成培养基中生长时,仅在存在麦芽糊精M365(麦芽低聚糖混合物)或淀粉的情况下产生葡糖淀粉酶。在补充有甘油加乙醇、淀粉或麦芽糊精的丰富培养基中生长的细胞中发现了最高水平的葡糖淀粉酶活性。当各种糖作为碳源时,它们都支持葡糖淀粉酶的合成,尽管水平有所降低。在任何给定的生长培养基中,葡糖淀粉酶同工酶II的合成受线粒体功能的调节。葡糖淀粉酶的合成在整个生长阶段持续进行,最大分泌发生在稳定期早期。在各种培养方案中,酶积累的差异是由葡糖淀粉酶mRNA水平的差异造成的。葡糖淀粉酶mRNA和酶活性在MATa/MATα二倍体中以及在调节基因STA10存在时受到显著且协同的抑制。当STA2基因存在于多拷贝质粒上时,这两种效应都部分得到克服。STA2 mRNA和葡糖淀粉酶在形成孢子的STA2/STA2二倍体中共同诱导。用STA2探针进行Northern印迹分析时,还检测到一种较小的共同诱导的RNA物种。在形成孢子的sta0二倍体中检测到相同的mRNA物种,并且可能编码孢子形成特异性葡糖淀粉酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1de/367037/c75306fef0f8/molcellb00093-0022-a.jpg

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