Department of Chemistry and Biochemistry, University of Notre Dame, 354 McCourtney Hall, Notre Dame, IN, 46556, USA.
Chembiochem. 2023 Jun 1;24(11):e202300282. doi: 10.1002/cbic.202300282. Epub 2023 May 8.
Clostridioides difficile is a spore-forming human pathogen responsible for significant morbidity and mortality. Infections by this pathogen ensue dysbiosis of the intestinal tract, which leads to germination of the spores. The process of spore formation requires a transition for the cell-wall peptidoglycan of the vegetative C. difficile to that of spores, which entails the formation of muramyl-δ-lactam. We describe a set of reactions for three recombinant C. difficile proteins, GerS, CwlD, and PdaA1, with the use of four synthetic peptidoglycan analogs. CwlD and PdaA1 excise the peptidoglycan stem peptide and the acetyl moiety of N-acetyl muramate, respectively. The reaction of CwlD is accelerated in the presence of GerS. With the use of a suitable substrate, we document that PdaA1 catalyzes a novel zinc-dependent transamidation/transpeptidation reaction, an unusual reaction that requires excision of the stem peptide as a pre-requisite.
艰难梭菌是一种能形成孢子的人类病原体,可导致严重的发病率和死亡率。该病原体感染会导致肠道菌群失调,从而导致孢子萌发。孢子形成的过程需要使营养期艰难梭菌的细胞壁肽聚糖过渡到孢子的肽聚糖,这需要形成 muramyl-δ-lactam。我们描述了使用四种合成肽聚糖类似物对三种重组艰难梭菌蛋白(GerS、CwlD 和 PdaA1)的一系列反应。CwlD 和 PdaA1 分别切除肽聚糖茎肽和 N-乙酰胞壁酸的乙酰基部分。GerS 的存在加速了 CwlD 的反应。使用合适的底物,我们证明 PdaA1 催化一种新的锌依赖性转酰胺/转肽反应,这是一种需要切除茎肽作为前提条件的不寻常反应。