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MurZ 和 MurA 的负调控是肺炎链球菌 D39 中 GpsB 和 StkP 介导的蛋白磷酸化必需的基础。

Negative regulation of MurZ and MurA underlies the essentiality of GpsB- and StkP-mediated protein phosphorylation in Streptococcus pneumoniae D39.

机构信息

Department of Biology, Indiana University Bloomington, Bloomington, Indiana, USA.

Institute of Microbiology, Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Mol Microbiol. 2023 Sep;120(3):351-383. doi: 10.1111/mmi.15122. Epub 2023 Jul 14.

Abstract

GpsB links peptidoglycan synthases to other proteins that determine the shape of the respiratory pathogen Streptococcus pneumoniae (pneumococcus; Spn) and other low-GC Gram-positive bacteria. GpsB is also required for phosphorylation of proteins by the essential StkP(Spn) Ser/Thr protein kinase. Here we report three classes of frequently arising chromosomal duplications (≈21-176 genes) containing murZ (MurZ-family homolog of MurA) or murA that suppress ΔgpsB or ΔstkP. These duplications arose from three different repeated sequences and demonstrate the facility of pneumococcus to modulate gene dosage of numerous genes. Overproduction of MurZ or MurA alone or overproduction of MurZ caused by ΔkhpAB mutations suppressed ΔgpsB or ΔstkP phenotypes to varying extents. ΔgpsB and ΔstkP were also suppressed by MurZ amino-acid changes distant from the active site, including one in commonly studied laboratory strains, and by truncation or deletion of the homolog of IreB(ReoM). Unlike in other Gram-positive bacteria, MurZ is predominant to MurA in pneumococcal cells. However, ΔgpsB and ΔstkP were not suppressed by ΔclpCP, which did not alter MurZ or MurA amounts. These results support a model in which regulation of MurZ and MurA activity, likely by IreB(Spn), is the only essential requirement for StkP-mediated protein phosphorylation in exponentially growing D39 pneumococcal cells.

摘要

GpsB 将肽聚糖合成酶与其他决定呼吸道病原体肺炎链球菌(肺炎球菌;Spn)和其他低 GC 革兰氏阳性细菌形状的蛋白质联系起来。GpsB 还需要通过必需的 StkP(Spn) Ser/Thr 蛋白激酶对蛋白质进行磷酸化。在这里,我们报告了三类经常出现的染色体重复(≈21-176 个基因),其中包含 murZ(MurA 的 MurZ 家族同源物)或 murA,可抑制ΔgpsB 或ΔstkP。这些重复序列来自三个不同的重复序列,证明了肺炎球菌调节许多基因基因剂量的能力。MurZ 或 MurA 的单独过表达或由ΔkhpAB 突变引起的 MurZ 过表达在不同程度上抑制了ΔgpsB 或ΔstkP 表型。ΔgpsB 和ΔstkP 也被 MurZ 氨基酸变化抑制,这些变化远离活性位点,包括在常见的研究实验室菌株中,并且被 IreB(ReoM)同源物的截断或缺失所抑制。与其他革兰氏阳性菌不同,MurZ 在肺炎球菌细胞中占主导地位。然而,ΔgpsB 和ΔstkP 不受不改变 MurZ 或 MurA 量的ΔclpCP 的抑制。这些结果支持了这样一种模型,即 MurZ 和 MurA 活性的调节,可能通过 IreB(Spn),是指数生长的 D39 肺炎球菌细胞中 StkP 介导的蛋白质磷酸化的唯一必需要求。

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