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YidC1 and YidC2 are functionally distinct proteins involved in protein secretion, biofilm formation and cariogenicity of Streptococcus mutans

机译:YIDC1和YIDC2是功能性不同的蛋白质,涉及蛋白质分泌,生物膜形成和链球菌的致癌性

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The cariogenic bacterium Streptococcus mutans has two paralogues of the YidC/Oxa1/Alb3 family of membrane protein insertases/chaperones. Disruption of yidC2 results in loss of genetic competence, decreased membrane-associated ATPase activity and stress sensitivity (acid, osmotic and oxidative). Elimination of yidC1 has less severe effects, with little observable effect on growth or stress sensitivity. To examine the respective roles of YidC1 and YidC2, a conditional expression system was developed allowing simultaneous elimination of both endogenous YidCs. The function of the YidC C-terminal tails was also investigated and a chimeric YidC1 protein appended with the C terminus of YidC2 enabled YidC1 to complement a ΔyidC2 mutant for stress tolerance, ATP hydrolysis activity and extracellular glyceraldehyde-3-phosphate dehydrogenase (GAPDH) activity. Elimination of yidC1 or yidC2 affected levels of extracellular proteins, including GtfB, GtfC and adhesin P1 (AgI/II, PAc), which were increased without YidC1 but decreased in the absence of YidC2. Both yidC1 and yidC2 were shown to contribute to S. mutans biofilm formation and to cariogenicity in a rat model. Collectively, these results provide evidence that YidC1 and YidC2 contribute to cell surface biogenesis and protein secretion in S. mutans and that differences in stress sensitivity between the ΔyidC1 and ΔyidC2 mutants stem from a functional difference in the C-termini of these two proteins.
机译:致癌细菌链球菌具有两个副腺癌的Yidc / Oxa1 / Alb3系列膜蛋白嵌入剂/伴侣。 YIDC2的破坏导致遗传能力的丧失,膜相关的ATP酶活性和应激敏感性(酸,渗透和氧化)减少。消除YIDC1具有较小的严重影响,对生长或应激敏感性几乎没有观察到的影响。为了检查YIDC1和YIDC2的各个作用,开发了一种条件表达系统,允许同时消除内源性YIDC。还研究了YIDC C末端尾部的功能,并附上YIDC2的C末端的嵌合YIDC1蛋白,使YIDC1能够补充αyidc2突变体,用于应力耐受性,ATP水解活性和细胞外甘油醛-3-磷酸脱氢酶(GAPDH)活性。消除YIDC1或YIDC2受影响的细胞外蛋白水平,包括GTFB,GTFC和粘合剂P1(AGI / II,PAC),其没有YIDC1而增加,但在没有YIDC2的情况下降低。 yidc1和yidc2都显示出贡献的含有S. mutans Biofilm的形成和在大鼠模型中的致癌性。总的来说,这些结果提供了证据表明,YIDC1和YIDC2有助于细胞表面生物发生和蛋白质分泌在S. mutans中,并且Δyidc1和Δyidc2突变体之间的应力敏感性的差异源于这两种蛋白质的C-末端的功能差异。

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