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枯草芽孢杆菌中保守的位点特异性蛋白酶激活对水平基因转移的调控。

Regulation of horizontal gene transfer in Bacillus subtilis by activation of a conserved site-specific protease.

机构信息

Department of Biology, Building 68-530, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Bacteriol. 2011 Jan;193(1):22-9. doi: 10.1128/JB.01143-10. Epub 2010 Oct 29.

Abstract

The mobile genetic element ICEBs1 is an integrative and conjugative element (a conjugative transposon) found in Bacillus subtilis. The RecA-dependent SOS response and the RapI-PhrI cell sensory system activate ICEBs1 gene expression by stimulating cleavage of ImmR, the ICEBs1 immunity repressor, by the protease ImmA. We found that increasing the amount of wild-type ImmA in vivo caused partial derepression of ICEBs1 gene expression. However, during RapI-mediated derepression of ICEBs1 gene expression, ImmA levels did not detectably increase, indicating that RapI likely activates the protease ImmA by increasing its specific activity. We also isolated and characterized mutations in immA (immA(h)) that cause partial derepression of ICEBs1 gene expression in the absence of inducing signals. We obtained two types of immA(h) mutations: one type caused increased amounts of the mutant proteins in vivo but no detectable effect on specific activity in vitro; the other type had no detectable effect on the amount of the mutant protein in vivo but caused increased specific activity of the protein (as measured in vitro). Together, these findings indicate that derepression of ICEBs1 gene expression is likely caused by an increase in the specific activity of ImmA. Homologs of ImmA and ImmR are found in many mobile genetic elements, so the mechanisms that regulate ImmA-mediated cleavage of ImmR may be widely conserved.

摘要

移动遗传元件 ICEBs1 是一种整合和共轭元件(共轭转座子),存在于枯草芽孢杆菌中。RecA 依赖性 SOS 反应和 RapI-PhrI 细胞感觉系统通过刺激蛋白酶 ImmA 对 ImmR 的切割,激活 ICEBs1 基因表达,ImmR 是 ICEBs1 的免疫抑制剂。我们发现,体内增加野生型 ImmA 的量会导致 ICEBs1 基因表达的部分去阻遏。然而,在 RapI 介导的 ICEBs1 基因表达去阻遏过程中,ImmA 水平没有明显增加,这表明 RapI 可能通过增加其比活性来激活蛋白酶 ImmA。我们还分离并鉴定了 immA(immA(h))中的突变,这些突变在没有诱导信号的情况下导致 ICEBs1 基因表达的部分去阻遏。我们获得了两种类型的 immA(h)突变:一种类型导致体内突变蛋白的量增加,但体外比活性没有可检测到的影响;另一种类型在体内对突变蛋白的量没有可检测到的影响,但导致蛋白的比活性增加(如在体外测量)。这些发现表明,ICEBs1 基因表达的去阻遏可能是由 ImmA 比活性的增加引起的。ImmA 和 ImmR 的同源物存在于许多移动遗传元件中,因此调节 ImmA 介导的 ImmR 切割的机制可能广泛保守。

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