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鉴定调节芽孢杆菌属孢子萌发的新蛋白。

Identification of new proteins that modulate the germination of spores of bacillus species.

机构信息

Department of Molecular, Microbial and Structural Biology, University of Connecticut Health Center, Farmington, Connecticut, USA.

出版信息

J Bacteriol. 2013 Jul;195(13):3009-21. doi: 10.1128/JB.00257-13. Epub 2013 Apr 26.

Abstract

A number of operons encoding the nutrient germinant receptors (GRs) in dormant spores of Bacillus megaterium and Bacillus subtilis species have small open reading frames (ORFs) of unknown function within or immediately adjacent to the operons. Inactivation of the genes in these ORFs, encoding proteins now termed D proteins, either significantly increased or decreased spore germination via the associated GR but had no effects on germination via non-GR-dependent germinants. These effects on GR-dependent germination were complemented by ectopic expression of the appropriate D gene (gene encoding D protein). However, substitution of noncognate D genes in two GR operons resulted in inhibition of germination via the GR manipulated, although ectopic overexpression of a D gene had no effect on overall GR-dependent germination. The various D genes studied were expressed in the forespore during sporulation in parallel with the associated GR operon, and transcription of a B. subtilis D gene was controlled by RNA polymerase sigma factor σ(G). These results indicate that proteins encoded by small ORFs within or adjacent to operons encoding GRs play major roles in modulating GR function in spores of Bacillus species. In B. subtilis, deletion of a D gene (B. subtilis gerKD [gerKDbs]) adjacent to the gerK operon encoding the GerK GR or ectopic expression or overexpression of gerKDbs had no major effect on the levels of GR subunits or of two other germination proteins.

摘要

许多编码枯草芽孢杆菌和枯草芽孢杆菌休眠孢子营养发芽受体 (GR) 的操纵子在操纵子内或紧邻操纵子的位置具有小的开放阅读框 (ORF),其功能未知。这些 ORF 中的基因失活,编码现在称为 D 蛋白的蛋白质,通过相关的 GR 显著增加或减少孢子发芽,但对非 GR 依赖的发芽剂的发芽没有影响。这些对 GR 依赖的发芽的影响通过适当的 D 基因(编码 D 蛋白的基因)的异位表达得到补充。然而,在两个 GR 操纵子中替换非同源 D 基因导致通过操纵的 GR 发芽受到抑制,尽管异位过表达 D 基因对整体 GR 依赖的发芽没有影响。在研究的各种 D 基因中,在芽孢形成过程中与相关的 GR 操纵子平行表达,并且 B. subtilis D 基因的转录受 RNA 聚合酶 σ 因子 σ(G) 的控制。这些结果表明,编码操纵子内或紧邻编码 GR 的操纵子的 ORF 中的蛋白质在调节枯草芽孢杆菌属孢子中的 GR 功能方面发挥着重要作用。在枯草芽孢杆菌中,缺失编码 GerK GR 的 gerK 操纵子旁边的 D 基因(枯草芽孢杆菌 gerKD [gerKDbs])或异位表达或过表达 gerKDbs 对 GR 亚基或另外两种发芽蛋白的水平没有重大影响。

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