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首页> 外文期刊>The Journal of Biochemistry >Identification of the coiled-coil domains of Enterococcus faecalis DivIVA that mediate oligomerization and their importance for biological function.
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Identification of the coiled-coil domains of Enterococcus faecalis DivIVA that mediate oligomerization and their importance for biological function.

机译:鉴定介导寡聚化的粪肠球菌DivIVA的卷曲螺旋结构域及其对生物学功能的重要性。

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Bacillus subtilis (Bs) DivIVA comprises coiled-coil structures and self-associates forming a 10-12 mer complex in vitro. Using bioinformatic approaches, we determined that Enterococcus faecalis (Ef) DivIVA comprises four coiled-coil domains, one at the N-terminus, the second and the third in the central region of the protein and the fourth at the C-terminus. We determined that DivIVA(Ef) self-interacts and forms a 10-12 multimeric complex. Point mutations or deletions of the central regions predicted bioinformatically to disrupt the coiled-coil structures either eliminated or weakened DivIVA(Ef) self-interaction and reduced oligomerization. Mutations disrupting the N- and C-terminal coiled-coils of DivIVA(Ef) did not affect DivIVA(Ef) oligomerization. The introduction of DivIVA(Ef) mutations to both the N-terminal and the central coiled-coil domains were lethal unless rescued by expressing wild-type DivIVA(Ef) in trans. E. faecalis cells expressing these mutations displayed aberrant cell morphology, indicating disruption of the normal cell division phenotype. The results in E. faecalis also indicate that both the N-terminal and the central coiled-coil structures of DivIVA(Ef) are indispensable for proper biological function. Overexpression of wild-type DivIVA(Ef) in both rod-shaped and round Escherichia coli cells resulted in morphological changes, while the overexpression of DivIVA(Ef) mutations failed to induce such alterations.
机译:枯草芽孢杆菌(Bs)枯草芽孢杆菌DivIVA包括卷曲螺旋结构和自缔合物,在体外形成10-12 mer的复合物。使用生物信息学方法,我们确定粪肠球菌(Ef)DivIVA包含四个卷曲螺旋域,一个在N末端,第二个和第三个在蛋白质中心区域,第四个在C末端。我们确定DivIVA(Ef)自相互作用并形成10-12多聚体复合物。中心区域的点突变或缺失在生物信息学上预测破坏或消除或减弱DivIVA(Ef)自相互作用和减少的低聚化的卷曲螺旋结构。突变破坏DivIVA(Ef)的N和C末端卷曲螺旋不会影响DivIVA(Ef)的低聚。除非通过反式表达野生型DivIVA(Ef)得以挽救,否则将DivIVA(Ef)突变引入N末端和中央卷曲螺旋结构域都是致命的。表达这些突变的粪肠球菌细胞表现出异常的细胞形态,表明正常细胞分裂表型的破坏。粪肠球菌的结果还表明,DivIVA(Ef)的N末端和中心卷曲螺旋结构对于正常的生物学功能都是必不可少的。杆状和圆形大肠杆菌细胞中野生型DivIVA(Ef)的过表达导致形态学变化,而DivIVA(Ef)突变的过表达未能诱导这种改变。

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