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Production of Muramic δ-Lactam in Bacillus subtilis Spore Peptidoglycan

机译:枯草芽孢杆菌孢子肽聚糖中鼠李糖δ-内酰胺的产生

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Bacterial spore heat resistance is primarily dependent upon dehydration of the spore cytoplasm, a state that is maintained by the spore peptidoglycan wall, the spore cortex. A peptidoglycan structural modification found uniquely in spores is the formation of muramic δ-lactam. Production of muramic δ-lactam in Bacillus subtilis requires removal of a peptide side chain from the N-acetylmuramic acid residue by a cwlD-encoded muramoyl-l-Alanine amidase. Expression of cwlD takes place in both the mother cell and forespore compartments of sporulating cells, though expression is expected to be required only in the mother cell, from which cortex synthesis derives. Expression of cwlD in the forespore is in a bicistronic message with the upstream gene ybaK. We show that ybaK plays no apparent role in spore peptidoglycan synthesis and that expression of cwlD in the forespore plays no significant role in spore peptidoglycan formation. Peptide cleavage by CwlD is apparently followed by deacetylation of muramic acid and lactam ring formation. The product of pdaA (yfjS), which encodes a putative deacetylase, has recently been shown to also be required for muramic δ-lactam formation. Expression of CwlD in Escherichia coli results in muramoyl l-Alanine amidase activity but no muramic δ-lactam formation. Expression of PdaA alone in E. coli had no effect on E. coli peptidoglycan structure, whereas expression of CwlD and PdaA together resulted in the formation of muramic δ-lactam. CwlD and PdaA are necessary and sufficient for muramic δ-lactam production, and no other B. subtilis gene product is required. PdaA probably carries out both deacetylation and lactam ring formation and requires the product of CwlD activity as a substrate.
机译:细菌孢子的耐热性主要取决于孢子细胞质的脱水,该状态由孢子肽聚糖壁,孢子皮层维持。在孢子中唯一发现的一种肽聚糖结构修饰是形成不规则的δ-内酰胺。在枯草芽孢杆菌中产生抗坏血酸的δ-内酰胺需要通过 cwlD 编码的muramoyl从 N -乙酰基尿酸残基上去除肽侧链。 -1-丙氨酸酰胺酶。尽管 cwlD 的表达在孢子形成细胞的母细胞和前孢子区中均发生,但预计仅在衍生皮层合成的母细胞中才需要表达。 cwlD 在前孢子中的表达与上游基因 ybaK 呈双顺反子传递。我们表明, ybaK 在孢子肽聚糖合成中没有明显作用,而 cwlD 在前孢子中的表达在孢子肽聚糖形成中没有重要作用。 CwlD切割肽后,显然会发生山梨酸脱乙酰化和内酰胺环形成。最近发现,编码推测的脱乙酰基酶的 pdaA yfjS )产物也需要形成大量的δ-内酰胺。 CwlD在大肠杆菌中的表达导致了村酰胺1-丙氨酸酰胺酶的活性,但没有形成村级δ-内酰胺。 PdaA在 E中的单独表达。大肠杆菌 E没有影响。肽肽聚糖的结构,而CwlD和PdaA的共同表达导致形成了不相容的δ-内酰胺。 CwlD和PdaA对于产生大量δ-内酰胺是必需的,而没有其他的B。需要枯草杆菌基因产物。 PdaA可能同时进行脱乙酰基作用和内酰胺环形成,并且需要CwlD活性产物作为底物。

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