首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Processing of the mother-cell sigma factor sigma K may depend on events occurring in the forespore during Bacillus subtilis development.
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Processing of the mother-cell sigma factor sigma K may depend on events occurring in the forespore during Bacillus subtilis development.

机译:母细胞sigma因子s K的处理可能取决于枯草芽孢杆菌发育过程中在前孢子中发生的事件。

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摘要

During sporulation of the Gram-positive bacterium Bacillus subtilis, transcription of genes encoding spore coat proteins in the mother-cell compartment of the sporangium is controlled by RNA polymerase containing the sigma subunit called sigma K. Based on comparison of the N-terminal amino acid sequence of sigma K with the nucleotide sequence of the gene encoding sigma K (sigK), the primary product of sigK was inferred to be a pro-protein (pro-sigma K) with 20 extra amino acids at the N terminus. Using antibodies generated against pro-sigma K, we have detected pro-sigma K beginning at the third hour of sporulation and sigma K beginning about 1 hr later. Even when pro-sigma K is expressed artificially during growth and throughout sporulation, sigma K appears at the normal time and expression of a sigma K-controlled gene occurs normally. These results suggest that pro-sigma K is an inactive precursor that is proteolytically processed to active sigma K in a developmentally regulated fashion. Mutations that block forespore gene expression block accumulation of sigma K but not accumulation of pro-sigma K, suggesting that pro-sigma K processing is a regulatory device that couples the programs of gene expression in the two compartments of the sporangium. We propose that this regulatory device ensures completion of forespore morphogenesis prior to the synthesis in the mother-cell of spore coat proteins that will encase the forespore.
机译:在革兰氏阳性细菌枯草芽孢杆菌的孢子形成过程中,孢子囊母细胞区室中编码孢子外壳蛋白的基因的转录受RNA聚合酶控制,该聚合酶含有一个称为sigma K的sigma亚基。基于N末端氨基酸的比较sigma K的序列具有编码sigma K的基因的核苷酸序列(sigK),该sigK的主要产物被推断为在N端具有20个额外氨基酸的原蛋白(pro-sigma K)。使用针对pro-K产生的抗体,我们已经在孢子形成的第三小时检测到了pro-K,并在大约1小时后检测到了s-K。即使在生长过程中和整个孢子形成过程中人为表达前σK,σK也会在正常时间出现,而σK控制基因的表达也会正常发生。这些结果表明,pro-sigma K是一种无活性的前体,可以通过发育调控的方式经蛋白水解加工成活性的sigmaK。阻止前孢子基因表达的突变会阻止sigma K的积累,但不会阻止pro-sigma K的积累,这表明pro-sigma K加工是一种调节装置,其耦合了孢子囊两个隔室中的基因表达程序。我们提出,该调节装置确保在孢子外壳蛋白的母细胞中合成之前,其完成了孢子外壳蛋白的形成。

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