革兰氏阳性细菌 VII 型分泌系统的多种变体。

microLife Pub Date : 2024-06-05 eCollection Date: 2024-01-01 DOI:10.1093/femsml/uqae013
Stephen R Garrett, Andrew B Higginson, Tracy Palmer
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引用次数: 0

摘要

VII 型分泌系统(T7SS)存在于芽孢杆菌科和放线菌科的细菌中,并在金黄色葡萄球菌、枯草杆菌和致病分枝杆菌中得到了很好的描述。放线菌门和芽孢杆菌门的 T7SS 有两个共同的成分,一个是膜结合的 EccC/EssC ATPase,另一个是 WXG100 家族的小螺旋发夹蛋白 EsxA。不过,它们也有其他门特有的成分,因此分别被称为 T7SSa(放线菌门)和 T7SSb(芽孢杆菌门)。在这里,我们确定了这两个门中 T7SS 的其他组织,并描述了另外 8 种 T7SS 亚型,我们将其命名为 T7SSc-T7SSj。T7SSd 只存在于放线菌门(包括奥氏菌属和双歧杆菌属),而其他七种亚型只存在于芽孢杆菌门(Bacillota)。所有新型亚型都含有标准 ATP 酶(TsxC)和 WXG100 家族蛋白(TsxA)。它们中的大多数还含有一种与泛素有关的小蛋白 TsxB,与 T7SSb EsaB/YukD 成分有关。新型 T7SS 基因簇通常还编码蛋白激酶、磷酸酶和叉头相关蛋白(FHA)。这些新型 T7SS 亚型的候选底物包括 LXG 域蛋白和 RHS 蛋白。预测的底物经常与其他 WXG100 相关小蛋白的基因一起编码,我们推测这些小蛋白是共分泌伙伴。总之,我们的发现揭示了革兰氏阳性菌中 T7SS 意外的多样性。
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Multiple variants of the type VII secretion system in Gram-positive bacteria.

Type VII secretion systems (T7SS) are found in bacteria across the Bacillota and Actinomycetota phyla and have been well described in Staphylococcus aureus, Bacillus subtilis, and pathogenic mycobacteria. The T7SS from Actinomycetota and Bacillota share two common components, a membrane-bound EccC/EssC ATPase and EsxA, a small helical hairpin protein of the WXG100 family. However, they also have additional phylum-specific components, and as a result they are termed the T7SSa (Actinomycetota) and T7SSb (Bacillota), respectively. Here, we identify additional organizations of the T7SS across these two phyla and describe eight additional T7SS subtypes, which we have named T7SSc-T7SSj. T7SSd is found exclusively in Actinomycetota including the Olselnella and Bifodobacterium genus, whereas the other seven are found only in Bacillota. All of the novel subtypes contain the canonical ATPase (TsxC) and the WXG100-family protein (TsxA). Most of them also contain a small ubiquitin-related protein, TsxB, related to the T7SSb EsaB/YukD component. Protein kinases, phosphatases, and forkhead-associated (FHA) proteins are often encoded in the novel T7SS gene clusters. Candidate substrates of these novel T7SS subtypes include LXG-domain and RHS proteins. Predicted substrates are frequently encoded alongside genes for additional small WXG100-related proteins that we speculate serve as cosecretion partners. Collectively our findings reveal unexpected diversity in the T7SS in Gram-positive bacteria.

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