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首页> 外文期刊>Journal of Molecular Biology >Cellular architecture of Treponema pallidum: novel flagellum, periplasmic cone, and cell envelope as revealed by cryo electron tomography.
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Cellular architecture of Treponema pallidum: novel flagellum, periplasmic cone, and cell envelope as revealed by cryo electron tomography.

机译:梅毒螺旋体的细胞结构:新型鞭毛,周质锥和细胞包膜,如冷冻电子断层扫描所揭示。

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摘要

High-resolution cryo electron tomography (cryo-ET) was utilized to visualize Treponema pallidum, the causative agent of syphilis, at the molecular level. Three-dimensional (3D) reconstructions from 304 infectious organisms revealed unprecedented cellular structures of this unusual member of the spirochetal family. High-resolution cryo-ET reconstructions provided detailed structures of the cell envelope, which is significantly different from that of Gram-negative bacteria. The 4-nm lipid bilayer of both outer membrane and cytoplasmic membrane resolved in 3D reconstructions, providing an important marker for interpreting membrane-associated structures. Abundant lipoproteins cover the outer leaflet of the cytoplasmic membrane, in contrast to the rare outer membrane proteins visible by scanning probe microscopy. High-resolution cryo-ET images also provided the first observation of T. pallidum chemoreceptor arrays, as well as structural details of the periplasmically located cone-shaped structure at both ends of the bacterium. Furthermore, 3D subvolume averages of periplasmic flagellar motors and flagellar filaments from living organisms revealed the novel flagellar architectures that may facilitate their rotation within the confining periplasmic space. Our findings provide the most detailed structural understanding of periplasmic flagella and the surrounding cell envelope, which enable this enigmatic bacterium to efficiently penetrate tissue and to escape host immune responses.
机译:高分辨率冷冻电子断层扫描(cryo-ET)用于在分子水平上可视化梅毒螺旋体。从304种传染性生物体进行的三维(3D)重建揭示了螺旋体这个不寻常成员的前所未有的细胞结构。高分辨率cryo-ET重建提供了细胞包膜的详细结构,这与革兰氏阴性细菌的结构明显不同。外膜和细胞质膜的4 nm脂质双层在3D重建中得以解析,为解释膜相关结构提供了重要的标记。与通过扫描探针显微镜可见的稀有外膜蛋白相反,大量的脂蛋白覆盖了细胞质膜的小叶。高分辨率cryo-ET图像还提供了苍白锥虫化学感受器阵列的首次观察,以及细菌两端的周质定位锥形结构的结构细节。此外,来自活生物体的周质鞭毛马达和鞭毛丝的3D子体积平均值揭示了新颖的鞭毛结构,这可能有助于它们在封闭的周质空间内旋转。我们的发现提供了对周质鞭毛和周围细胞包膜的最详细的结构理解,这使这种神秘细菌能够有效地穿透组织并逃脱宿主的免疫反应。

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