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SpxB调节乳酸乳球菌肽聚糖对水解的O-乙酰化依赖性抗性。

SpxB regulates O-acetylation-dependent resistance of Lactococcus lactis peptidoglycan to hydrolysis.

作者信息

Veiga Patrick, Bulbarela-Sampieri Carmen, Furlan Sylviane, Maisons Aurélie, Chapot-Chartier Marie-Pierre, Erkelenz Michael, Mervelet Peggy, Noirot Philippe, Frees Dorte, Kuipers Oscar P, Kok Jan, Gruss Alexandra, Buist Girbe, Kulakauskas Saulius

机构信息

Unité Bactéries Lactiques et Pathogènes Opportunistes, Institut National de la Recherche Agronomique, 78352 Jouy-en-Josas Cedex, France.

出版信息

J Biol Chem. 2007 Jul 6;282(27):19342-54. doi: 10.1074/jbc.M611308200. Epub 2007 May 7.

DOI:10.1074/jbc.M611308200
PMID:17485463
Abstract

Endogenous peptidoglycan (PG)-hydrolyzing enzymes, the autolysins, are needed to relax the rigid PG sacculus to allow bacterial cell growth and separation. PGs of pathogens and commensal bacteria may also be degraded by hydrolases of animal origin (lysozymes), which act as antimicrobials. The genetic mechanisms regulating PG resistance to hydrolytic degradation were dissected in the Gram-positive bacterium Lactococcus lactis. We found that the ability of L. lactis to counteract PG hydrolysis depends on the degree of acetylation. Overexpression of PG O-acetylase (encoded by oatA) led to bacterial growth arrest, indicating the potential lethality of oatA and a need for its tight regulation. A novel regulatory factor, SpxB (previously denoted as YneH), exerted a positive effect on oatA expression. Our results indicate that SpxB binding to RNA polymerase constitutes a previously missing link in the multistep response to cell envelope stress, provoked by PG hydrolysis with lysozyme. We suggest that the two-component system CesSR responds to this stress by inducing SpxB, thus favoring its interactions with RNA polymerase. Induction of PG O-acetylation by this cascade renders it resistant to hydrolysis.

摘要

内源性肽聚糖(PG)水解酶,即自溶素,是使刚性的PG囊松弛以允许细菌细胞生长和分裂所必需的。病原体和共生细菌的PG也可能被动物源水解酶(溶菌酶)降解,这些水解酶起到抗菌作用。在革兰氏阳性细菌乳酸乳球菌中剖析了调节PG对水解降解抗性的遗传机制。我们发现乳酸乳球菌对抗PG水解的能力取决于乙酰化程度。PG O-乙酰基转移酶(由oatA编码)的过表达导致细菌生长停滞,表明oatA具有潜在致死性,需要对其进行严格调控。一种新型调节因子SpxB(以前称为YneH)对oatA表达产生积极影响。我们的结果表明,SpxB与RNA聚合酶的结合构成了对溶菌酶水解PG引发的细胞包膜应激多步骤反应中先前缺失的环节。我们认为双组分系统CesSR通过诱导SpxB来响应这种应激,从而促进其与RNA聚合酶的相互作用。通过这种级联反应诱导PG O-乙酰化使其对水解具有抗性。

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