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蛋白质组学和质谱研究表明,在缺乏rpoZ的情况下,耻垢分枝杆菌在生物膜培养物中呈浮游生长。

Proteomics and mass spectrometric studies reveal planktonic growth of Mycobacterium smegmatis in biofilm cultures in the absence of rpoZ.

作者信息

Mukherjee Raju, Chatterji Dipankar

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore-560012, India.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2008 Jan 15;861(2):196-202. doi: 10.1016/j.jchromb.2007.08.009. Epub 2007 Aug 21.

DOI:10.1016/j.jchromb.2007.08.009
PMID:17822967
Abstract

Mycobacterium smegmatis is known to form biofilms and many cell surface molecules like core glycopeptidolipids and short-chain mycolates appear to play important role in the process. However, the involvement of the cell surface molecules in mycobacteria towards complete maturation of biofilms is still not clear. This work demonstrates the importance of the glycopeptidolipid species with hydroxylated alkyl chain and the epoxylated mycolic acids, during the process of biofilm development. In our previous study, we reported the impairment of biofilm formation in rpoZ-deleted M. smegmatis, where rpoZ codes for the omega subunit of RNA polymerase (R. Mathew, R. Mukherjee, R. Balachandar, D. Chatterji, Microbiology 152 (2006) 1741). Here we report the occurrence of planktonic growth in a mc(2)155 strain which is devoid of rpoZ gene. This strain is deficient in selective incorporation of the hydroxylated glycopeptidolipids and the epoxy mycolates to their respective locations in the cell wall. Hence it forms a mutant biofilm defective in maturation, wherein the cells undertake various alternative metabolic pathways to survive in an environment where oxygen, the terminal electron acceptor, is limiting.

摘要

耻垢分枝杆菌已知会形成生物膜,许多细胞表面分子如核心糖肽脂和短链霉菌酸似乎在这一过程中发挥重要作用。然而,细胞表面分子在分枝杆菌生物膜完全成熟过程中的作用仍不清楚。这项工作证明了具有羟基化烷基链的糖肽脂种类和环氧化霉菌酸在生物膜形成过程中的重要性。在我们之前的研究中,我们报道了缺失rpoZ的耻垢分枝杆菌生物膜形成受损,其中rpoZ编码RNA聚合酶的ω亚基(R. Mathew、R. Mukherjee、R. Balachandar、D. Chatterji,《微生物学》152 (2006) 1741)。在此我们报道了在缺乏rpoZ基因的mc(2)155菌株中出现浮游生长。该菌株在将羟基化糖肽脂和环氧霉菌酸选择性掺入细胞壁各自位置方面存在缺陷。因此,它形成了一种成熟缺陷的突变生物膜,其中细胞采用各种替代代谢途径在终端电子受体氧气有限的环境中存活。

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