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艰难梭菌中组氨酸激酶介导的万古霉素耐药操纵子的交叉调控。

Histidine kinase-mediated cross-regulation of the vancomycin-resistance operon in Clostridioides difficile.

机构信息

Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, Massachusetts, USA.

出版信息

Mol Microbiol. 2024 Jun;121(6):1182-1199. doi: 10.1111/mmi.15273. Epub 2024 May 1.

Abstract

The dipeptide D-Ala-D-Ala is an essential component of peptidoglycan and the target of vancomycin. Most Clostridioides difficile strains possess the vanG operon responsible for the synthesis of D-Ala-D-Ser, which can replace D-Ala-D-Ala in peptidoglycan. The C. difficile vanG operon is regulated by a two-component system, VanRS, but is not induced sufficiently by vancomycin to confer resistance to this antibiotic. Surprisingly, in the absence of the VanS histidine kinase (HK), the vanG operon is still induced by vancomycin and also by another antibiotic, ramoplanin, in a VanR-dependent manner. This suggested the cross-regulation of VanR by another HK or kinases that are activated in the presence of certain lipid II-targeting antibiotics. We identified these HKs as CD35990 and CD22880. However, mutations in either or both HKs did not affect the regulation of the vanG operon in wild-type cells suggesting that intact VanS prevents the cross-activation of VanR by non-cognate HKs. Overproduction of VanR in the absence of VanS, CD35990, and CD22880 led to high expression of the vanG operon indicating that VanR can potentially utilize at least one more phosphate donor for its activation. Candidate targets of CD35990- and CD22880-mediated regulation in the presence of vancomycin or ramoplanin were identified by RNA-Seq.

摘要

二肽 D-Ala-D-Ala 是肽聚糖的必需成分,也是万古霉素的靶标。大多数艰难梭菌菌株都具有负责合成 D-Ala-D-Ser 的 vanG 操纵子,该操纵子可以替代肽聚糖中的 D-Ala-D-Ala。艰难梭菌的 vanG 操纵子受双组分系统 VanRS 调控,但万古霉素不能充分诱导该操纵子产生耐药性。令人惊讶的是,在没有 VanS 组氨酸激酶 (HK) 的情况下,vanG 操纵子仍然可以被万古霉素和另一种抗生素雷莫拉宁以 VanR 依赖的方式诱导。这表明 VanR 受到另一种 HK 或在某些靶向脂质 II 的抗生素存在下被激活的激酶的交叉调控。我们鉴定出这些 HK 是 CD35990 和 CD22880。然而,在任一或两个 HK 突变体中,vanG 操纵子的调控不受影响,这表明完整的 VanS 可防止非同源 HK 对 VanR 的交叉激活。在没有 VanS、CD35990 和 CD22880 的情况下过表达 VanR 会导致 vanG 操纵子的高表达,这表明 VanR 可能至少利用另一个磷酸供体进行激活。在万古霉素或雷莫拉宁存在的情况下,通过 RNA-Seq 鉴定了 CD35990 和 CD22880 介导的调控的候选靶标。

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