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The Timing of cotE Expression Affects Bacillus subtilis Spore Coat Morphology but Not Lysozyme Resistance▿

机译:cotE表达的时间会影响枯草芽孢杆菌孢子的形态,但不会影响溶菌酶。

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摘要

The synthesis of structural components and morphogenetic factors required for the assembly of the Bacillus subtilis spore coat is governed by a mother cell-specific transcriptional cascade. The first two temporal classes of gene expression, which involve RNA polymerase sigma σE factor and the ancillary regulators GerR and SpoIIID, are deployed prior to engulfment of the prespore by the mother cell. The two last classes rely on σK, whose activation follows engulfment completion, and GerE. The cotE gene codes for a morphogenetic protein essential for the assembly of the outer coat layer and spore resistance to lysozyme. cotE is expressed first from a σE-dependent promoter and, in a second stage, from a promoter that additionally requires SpoIIID and that remains active under σK control. CotE localizes prior to engulfment completion close to the surface of the developing spore, but formation of the outer coat is a late, σK-controlled event. We have transplanted cotE to progressively later classes of mother cell gene expression. This created an early class of mutants in which cotE is expressed prior to engulfment completion and a late class in which expression of cotE follows the complete engulfment of the prespore. Mutants of the early class assemble a nearly normal outer coat structure, whereas mutants of the late class do not. Hence, the early expression of CotE is essential for outer coat assembly. Surprisingly, however, all mutants were fully resistant to lysozyme. The results suggest that CotE has genetically separable functions in spore resistance to lysozyme and spore outer coat assembly.
机译:枯草芽孢杆菌孢子外壳组装所需的结构成分和形态发生因子的合成受母细胞特异性转录级联的支配。基因表达的前两个临时类别涉及RNA聚合酶σE因子和辅助调节因子GerR和SpoIIID,在母细胞吞没前孢子之前进行部署。最后两个类依赖于σK和GerE,σK的活化在吞没完成之后发生。 cotE基因编码一个外皮层组装和孢子对溶菌酶的抗性所必需的形态发生蛋白。 cotE首先从依赖σE的启动子表达,然后在第二阶段从另外需要SpoIIID并在σK控制下保持活性的启动子表达。在吞噬完成之前,CotE会在发育中的孢子表面附近定位,但是外层的形成是受σK控制的晚期事件。我们已经将cotE移植到了后来的母细胞基因表达的后续类中。这产生了早期类别的突变体,其中在吞噬完成之前表达了cotE,而后期类别中的突变体是在孢子被完全吞噬之后表达了cotE。早期的突变体装配了几乎正常的外被膜结构,而晚期的突变体则没有。因此,CotE的早期表达对于外涂层组装至关重要。然而令人惊讶的是,所有突变体均对溶菌酶完全抗性。结果表明,CotE在孢子对溶菌酶和孢子外被膜的抗性方面具有遗传上可分离的功能。

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