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Reassessment of MxiH subunit orientation and fold within native Shigella T3SS needles using surface labelling and solid-state NMR

机译:使用表面标记和固态NMR重新评估天然志贺氏菌T3SS针中MxiH亚基的方向和折叠

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摘要

T3SSs are essential virulence determinants of many Gram-negative bacteria, used to inject bacterial effectors of virulence into eukaryotic host cells. Their major extracellular portion, a ∼50 nm hollow, needle-like structure, is essential to host cell sensing and the conduit for effector secretion. It is formed of a small, conserved subunit arranged as a helical polymer. The structure of the subunit has been studied by electron cryomicroscopy within native polymers and by solid-state NMR in recombinant polymers, yielding two incompatible atomic models. To resolve this controversy, we re-examined the native polymer used for electron cryomicroscopy via surface labelling and solid-state NMR. Our data show the orientation and overall fold of the subunit within this polymer is as established by solid-state NMR for recombinant polymers.
机译:T3SS是许多革兰氏阴性细菌必不可少的毒力决定因素,用于将毒力的细菌效应子注入真核宿主细胞。它们的主要细胞外部分是约50 nm的空心针状结构,对于宿主细胞感测和效应物分泌的导管至关重要。它由排列成螺旋状聚合物的小的保守亚单元形成。亚基的结构已通过电子低温显微镜在天然聚合物中进行了研究,并通过固态NMR在重组聚合物中进行了研究,产生了两个不兼容的原子模型。为了解决这个争议,我们通过表面标记和固态NMR重新检查了用于电子显微检查的天然聚合物。我们的数据显示该聚合物中亚基的方向和整体折叠是通过固态NMR对重组聚合物确定的。

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