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本文引用的文献

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Small non-coding RNAs in Streptomyces coelicolor.天蓝色链霉菌中的小非编码RNA
Nucleic Acids Res. 2008 Dec;36(22):7240-51. doi: 10.1093/nar/gkn898. Epub 2008 Nov 12.
2
Assemblies of DivIVA mark sites for hyphal branching and can establish new zones of cell wall growth in Streptomyces coelicolor.DivIVA聚集体标记了天蓝色链霉菌中菌丝分支的位点,并能建立新的细胞壁生长区域。
J Bacteriol. 2008 Nov;190(22):7579-83. doi: 10.1128/JB.00839-08. Epub 2008 Sep 19.
3
Reduced lysis upon growth of Lactococcus lactis on galactose is a consequence of decreased binding of the autolysin AcmA.乳酸乳球菌在半乳糖上生长时裂解减少是自溶素AcmA结合减少的结果。
Appl Environ Microbiol. 2008 Aug;74(15):4671-9. doi: 10.1128/AEM.00103-08. Epub 2008 Jun 6.
4
LysM, a widely distributed protein motif for binding to (peptido)glycans.溶菌酶M(LysM),一种广泛分布的用于结合(肽)聚糖的蛋白质基序。
Mol Microbiol. 2008 May;68(4):838-47. doi: 10.1111/j.1365-2958.2008.06211.x.
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The penicillin-binding proteins: structure and role in peptidoglycan biosynthesis.青霉素结合蛋白:结构及其在肽聚糖生物合成中的作用
FEMS Microbiol Rev. 2008 Mar;32(2):234-58. doi: 10.1111/j.1574-6976.2008.00105.x. Epub 2008 Feb 11.
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Bacterial peptidoglycan (murein) hydrolases.细菌肽聚糖(胞壁质)水解酶
FEMS Microbiol Rev. 2008 Mar;32(2):259-86. doi: 10.1111/j.1574-6976.2007.00099.x. Epub 2008 Feb 11.
7
Covalent attachment of proteins to peptidoglycan.蛋白质与肽聚糖的共价连接。
FEMS Microbiol Rev. 2008 Mar;32(2):307-20. doi: 10.1111/j.1574-6976.2008.00102.x. Epub 2008 Feb 11.
8
Cytoplasmic steps of peptidoglycan biosynthesis.肽聚糖生物合成的胞质步骤。
FEMS Microbiol Rev. 2008 Mar;32(2):168-207. doi: 10.1111/j.1574-6976.2008.00104.x. Epub 2008 Feb 11.
9
The resuscitation-promoting factors of Mycobacterium tuberculosis are required for virulence and resuscitation from dormancy but are collectively dispensable for growth in vitro.结核分枝杆菌的复苏促进因子对于毒力和从休眠状态复苏是必需的,但总体上对于体外生长并非必需。
Mol Microbiol. 2008 Feb;67(3):672-84. doi: 10.1111/j.1365-2958.2007.06078.x.
10
Developmentally regulated cleavage of tRNAs in the bacterium Streptomyces coelicolor.天蓝色链霉菌中tRNA的发育调控切割
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细胞壁水解酶影响天蓝色链霉菌的萌发、营养生长和孢子形成。

Cell wall hydrolases affect germination, vegetative growth, and sporulation in Streptomyces coelicolor.

作者信息

Haiser Henry J, Yousef Mary R, Elliot Marie A

机构信息

Department of Biology and Michael G. DeGroote Institute for Infectious Disease Research, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4K1, Canada.

出版信息

J Bacteriol. 2009 Nov;191(21):6501-12. doi: 10.1128/JB.00767-09. Epub 2009 Aug 28.

DOI:10.1128/JB.00767-09
PMID:19717604
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2795291/
Abstract

Peptidoglycan is a major cell wall constituent of gram-positive bacteria. It is a dynamic macromolecule that is actively remodeled to enable cell growth and differentiation through a tightly choreographed interplay of hydrolytic and biosynthetic enzyme activities. The filamentous bacterium Streptomyces coelicolor has a complex life cycle that likely requires considerable cell wall remodeling to enable both extension of vegetative hyphae and formation of differentiated cell types. In silico analysis of the S. coelicolor genome enabled identification of 56 candidate cell wall hydrolase genes. We found that seven of these genes shared a highly conserved 5' untranslated region and were expressed during both vegetative growth and sporulation; four of these genes were selected for more extensive biochemical and biological characterization. The proteins encoded by these genes, termed RpfA, SwlA, SwlB, and SwlC, were confirmed to be hydrolytic enzymes, as they could efficiently cleave S. coelicolor cell walls. Phenotypic analyses revealed that these enzymes are important throughout development; deletion of each hydrolase gene resulted in a mutant strain that was heat sensitive, defective in spore formation, and either altered in vegetative growth or delayed in spore germination. Our results indicate that these enzymes play key roles at multiple stages in the growth and development of S. coelicolor, highlighting both the lack of redundancy in hydrolase activity and the importance of cell wall remodeling in the S. coelicolor life cycle.

摘要

肽聚糖是革兰氏阳性菌细胞壁的主要成分。它是一种动态大分子,通过水解酶和生物合成酶活性之间精心编排的相互作用,被积极重塑以促进细胞生长和分化。丝状细菌天蓝色链霉菌具有复杂的生命周期,可能需要大量的细胞壁重塑来实现营养菌丝的延伸和分化细胞类型的形成。对天蓝色链霉菌基因组的计算机分析使得能够鉴定出56个候选细胞壁水解酶基因。我们发现其中7个基因共享一个高度保守的5'非翻译区,并且在营养生长和孢子形成过程中均有表达;选择其中4个基因进行更广泛的生化和生物学特性分析。这些基因编码的蛋白质,分别称为RpfA、SwlA、SwlB和SwlC,被证实是水解酶,因为它们能够有效裂解天蓝色链霉菌的细胞壁。表型分析表明,这些酶在整个发育过程中都很重要;每个水解酶基因的缺失都会导致突变菌株对热敏感、孢子形成有缺陷,并且营养生长改变或孢子萌发延迟。我们的结果表明,这些酶在天蓝色链霉菌的生长和发育的多个阶段发挥关键作用,突出了水解酶活性缺乏冗余以及细胞壁重塑在天蓝色链霉菌生命周期中的重要性。