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σ29(一种RNA聚合酶特异性决定因子)的合成是枯草芽孢杆菌中受发育调控的事件。

Synthesis of sigma 29, an RNA polymerase specificity determinant, is a developmentally regulated event in Bacillus subtilis.

作者信息

Trempy J E, Morrison-Plummer J, Haldenwang W G

出版信息

J Bacteriol. 1985 Jan;161(1):340-6. doi: 10.1128/jb.161.1.340-346.1985.

Abstract

Using an immunological probe, we have determined that the synthesis of the Bacillus subtilis RNA polymerase promoter specificity determinant sigma 29 is a developmentally regulated event. sigma 29 is absent from vegetatively growing cells but is abundant in sporulating cells for a restricted (2-h) period during differentiation (hour 2 to hour 4 into the sporeforming process). The narrowness of this period suggests that sigma 29 is a regulatory factor that directs the transcription of a subpopulation of genes at a precise, intermediate stage of spore formation. This view predicts that sigma 29 should be dispensable for early sporulation events. We verified this prediction by an analysis of sigma 29 accumulation in mutants that are blocked at different stages of sporulation in which we show that cells can advance to at least an intermediate point in development (stage III) in the absence of detectable sigma 29. Lastly, our anti-sigma 29 antibody probe detected a second, previously unrecognized protein in Bacillus cell extracts that may be a precursor to sigma 29. This protein, P31 (molecular weight, 31,000) is synthesized earlier in sporulation than is sigma 29. It has a peptide profile that is similar to sigma 29 and is present in all Bacillus subtilis Spo- mutants that were tested and found to still be able to accumulate sigma 29.

摘要

通过使用一种免疫探针,我们已确定枯草芽孢杆菌RNA聚合酶启动子特异性决定因子σ29的合成是一个受发育调控的事件。在营养生长的细胞中不存在σ29,但在分化过程中(进入孢子形成过程的第2小时至第4小时)的一段受限(2小时)时间内,σ29在形成孢子的细胞中大量存在。这段时间的狭窄性表明σ29是一种调控因子,它在孢子形成的精确中间阶段指导一组亚群基因的转录。这一观点预测,σ29对于早期孢子形成事件应该是可有可无的。我们通过分析在孢子形成不同阶段受阻的突变体中σ29的积累情况验证了这一预测,我们发现细胞在没有可检测到的σ29的情况下能够至少发育到中间阶段(III期)。最后,我们的抗σ29抗体探针在芽孢杆菌细胞提取物中检测到了第二种以前未被识别的蛋白质,它可能是σ29的前体。这种蛋白质P31(分子量为31,000)在孢子形成过程中比σ29合成得更早。它具有与σ29相似的肽谱,并且在所测试的所有枯草芽孢杆菌Spo-突变体中都存在,并且发现这些突变体仍然能够积累σ29。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db0/214877/ab07aebaa9db/jbacter00224-0360-a.jpg

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