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Complete spore-cortex hydrolysis during germination of Bacillus subtilis 168 requires SleB and YpeB

机译:枯草芽孢杆菌168的萌发期间完全孢子皮质水解需要SELB和YPEB

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摘要

The role of the sleB gene of Bacillus subtilis, which encodes a putative spore-cortex-lytic enzyme, and the downstream ypeB gene were investigated. Both SleB and YpeB were required for normal germination to occur. The corresponding mutants formed phase-bright, heat-resistant spores with no apparent defects in dormancy. However, mutant spore suspensions lost optical density slower than the wild-type and spores were phase-grey even 12?h after the triggering of germination. Since the loss of heat resistance and release of dipicolinic acid was similar to the wild-type, these mutants were blocked in the later stages of germination. The mutants were nevertheless capable of outgrowth on rich agar to form colonies, indicating that other spore components can compensate for their function sufficiently to allow outgrowth. The expression and regulation of the operon was examined using a lacZ transcriptional fusion. Expression of the operon began 2?h after the onset of sporulation and was under the control of RNA polymerase containing the forespore-specific sigma factor, σG. The application of reverse phase HPLC revealed that the mutants do not have any structural defect in the dormant spore cortex and therefore these genes are not required for normal spore-cortex synthesis. The analysis of peptidoglycan dynamics during germination showed, however, that the cortex was only partially hydrolysed in both mutants. This analysis also revealed that the likely hydrolytic bond specificity of SleB is likely to be that of a lytic transglycosylase.
机译:研究了枯草芽孢杆菌的SELB基因的作用,其编码了调用孢子皮质酶和下游YPEB基因。对于正常发芽,需要两种SEB和YPEB。相应的突变体形成相明,耐热性孢子,休眠中没有明显缺陷。然而,突变孢子悬浮液损失光学密度比野生型和孢子在萌发触发后的相灰色甚至12μl。由于耐热性和脱辛酸释放的丧失与野生型相似,因此这些突变体在发芽的后期阶段被封闭。然而,突变体能够在富琼脂上呈现出菌落形成菌落,表明其他孢子组分可以充分地补偿其功能以允许产物。使用LacZ转录融合检查操纵子的表达和调节。在孢子发作后,操纵子的表达开始2?H,并在含有孕目特异性Sigma因子,σg的RNA聚合酶的控制下。反相HPLC的施用显示,突变体在休眠孢子皮层中没有任何结构缺陷,因此对于正常孢子皮层合成,因此不需要这些基因。然而,分析萌发期间的肽聚糖动力学显示,皮质仅在两个突变体中部分水解。该分析还显示出SELB的可能水解键特异性可能是裂解转基质胶酶的水解粘合剂。

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