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酵母中孢子形成基因的转录调控。

Transcriptional regulation of sporulation genes in yeast.

作者信息

Holaway B L, Kao G, Finn M C, Clancy M J

机构信息

Department of Biological Sciences, University of Notre Dame, IN 46556.

出版信息

Mol Gen Genet. 1987 Dec;210(3):449-59. doi: 10.1007/BF00327196.

Abstract

The relative transcription rates of three sporulation-regulated genes of yeast (SPR1, SPR2 and SPR3) were determined at intervals during sporulation, using a filter binding assay. The binding of in vivo labeled RNA to the corresponding DNAs increased 3- to 12-fold at the time of meiosis I, in parallel with the accumulation of the SPR transcripts. SPR1 and SPR3 mRNA abundance increased from less than 0.7 to 130 and 90 copies per cell, respectively, between the time of shift to sporulation medium and the initiation of spore formation. This represented a 150-to 200-fold increase in the steady-state levels of these RNAs. Similarly, the levels of beta-galactosidase present in sporulating cells harboring fusions between SPR3 and Escherichia coli lacZ increased at least 700-fold. We conclude that SPR1, SPR2 and SPR3 transcription is modulated during sporulation, possibly in response to earlier events in the process.

摘要

利用滤膜结合分析法,在酵母孢子形成过程中间隔测定酵母三个孢子形成调控基因(SPR1、SPR2和SPR3)的相对转录速率。体内标记的RNA与相应DNA的结合在减数分裂I时增加了3至12倍,与SPR转录本的积累同时发生。从转移到孢子形成培养基的时间到孢子形成开始,SPR1和SPR3的mRNA丰度分别从每个细胞少于0.7个拷贝增加到130个和90个拷贝。这代表这些RNA的稳态水平增加了150至200倍。同样,携带SPR3与大肠杆菌lacZ融合基因的孢子形成细胞中β-半乳糖苷酶的水平至少增加了700倍。我们得出结论,SPR1、SPR2和SPR3的转录在孢子形成过程中受到调控,可能是对该过程中早期事件的响应。

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