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首页> 外文期刊>Oral microbiology and immunology >Role of prolipoprotein diacylglyceryl transferase (Lgt) and lipoprotein-specific signal peptidase II (LspA) in localization and physiological function of lipoprotein MsmE in Streptococcus mutans.
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Role of prolipoprotein diacylglyceryl transferase (Lgt) and lipoprotein-specific signal peptidase II (LspA) in localization and physiological function of lipoprotein MsmE in Streptococcus mutans.

机译:脂蛋白二酰基甘油基转移酶(Lgt)和脂蛋白特异性信号肽酶II(LspA)在变形链球菌中脂蛋白MsmE的定位和生理功能中的作用。

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摘要

INTRODUCTION: To clarify the role that prolipoprotein diacylglyceryl transferase (Lgt) and lipoprotein-specific signal peptidase II (LspA) play in the physiological function of MsmE, we constructed lgt-deficient and lspA-deficient mutants of Streptococcus mutans 109c and examined the potential role of Lgt and LspA in membrane anchoring and growth in a melibiose medium of S. mutans. METHODS: The lgt-, lspA-, and msmE-deficient mutants of S. mutans 109c were constructed by double-crossover recombination of their respective genes. Localization of MsmE was demonstrated by Western blot analysis with an MsmE antiserum. The growth of S. mutans cells was examined in a Trypton medium containing melibiose or glucose. RESULTS: In the S. mutans lgt mutant, localization of the surface lipoprotein MsmE changed with the culture supernatant. The growth of the S. mutans lgt and lspA mutants was remarkably reduced in the melibiose medium; however, growth was recovered in the strains complemented with the lgt or the lspAgene. Therefore, lipid-modification by Lgt and subsequent signal peptide cleavage by LspA were crucial for membrane anchoring and the physiological function of MsmE in S. mutans. CONCLUSION: These results demonstrate that MsmE is required for melibiose metabolism in S. mutans and that modification by Lgt and LspA are important processes for the physiological function of MsmE.
机译:简介:为了阐明脂蛋白二酰基甘油基转移酶(Lgt)和脂蛋白特异性信号肽酶II(LspA)在MsmE的生理功能中的作用,我们构建了lgt缺陷型和lspA缺陷型变形链球菌109c突变体,并研究了其潜在作用和LspA在变形链球菌半纤维素培养基中的膜锚定和生长中的作用。方法:变形双歧杆菌109c的lgt,lspA和msmE缺陷型突变体通过各自基因的双交换重组而构建。 MsmE的定位通过使用MsmE抗血清的蛋白质印迹分析进行了证明。在含有黑松糖或葡萄糖的Trypton培养基中检查变形链球菌细胞的生长。结果:在变形链球菌lgt突变体中,表面脂蛋白MsmE的定位随培养上清液而改变。变形链球菌lgt和lspA突变体的生长在混合糖培养基中显着降低。然而,在补充有lgt或lspA基因的菌株中恢复了生长。因此,Lgt对脂质的修饰以及随后LspA对信号肽的切割对于变形链球菌中膜锚定和MsmE的生理功能至关重要。结论:这些结果表明,MsmE是变形链球菌中黑糖代谢所必需的,并且Lgt和LspA修饰是MsmE生理功能的重要过程。

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