Department of Physics, National Taiwan University, Taipei, Taiwan.
Department of Electrical Engineering, National Taiwan University, Taipei, Taiwan.
Nat Commun. 2023 Mar 27;14(1):1688. doi: 10.1038/s41467-023-37342-x.
Distal appendages (DAPs) are vital in cilia formation, mediating vesicular and ciliary docking to the plasma membrane during early ciliogenesis. Although numerous DAP proteins arranging a nine-fold symmetry have been studied using superresolution microscopy analyses, the extensive ultrastructural understanding of the DAP structure developing from the centriole wall remains elusive owing to insufficient resolution. Here, we proposed a pragmatic imaging strategy for two-color single-molecule localization microscopy of expanded mammalian DAP. Importantly, our imaging workflow enables us to push the resolution limit of a light microscope well close to a molecular level, thus achieving an unprecedented mapping resolution inside intact cells. Upon this workflow, we unravel the ultra-resolved higher-order protein complexes of the DAP and its associated proteins. Intriguingly, our images show that C2CD3, microtubule triplet, MNR, CEP90, OFD1, and ODF2 jointly constitute a unique molecular configuration at the DAP base. Moreover, our finding suggests that ODF2 plays an auxiliary role in coordinating and maintaining DAP nine-fold symmetry. Together, we develop an organelle-based drift correction protocol and a two-color solution with minimum crosstalk, allowing a robust localization microscopy imaging of expanded DAP structures deep into the gel-specimen composites.
远端附属物 (DAPs) 在纤毛形成中至关重要,它在早期纤毛发生过程中介导囊泡和纤毛与质膜的对接。虽然已经使用超分辨率显微镜分析研究了许多排列九重对称的 DAP 蛋白,但由于分辨率不足,对从中心体壁发育而来的 DAP 结构的广泛超微结构理解仍然难以捉摸。在这里,我们提出了一种用于双色单分子定位显微镜扩展哺乳动物 DAP 的实用成像策略。重要的是,我们的成像工作流程使我们能够将光学显微镜的分辨率极限很好地推到接近分子水平,从而在完整细胞内实现前所未有的映射分辨率。在这个工作流程中,我们揭示了 DAP 及其相关蛋白的超高分辨率高级别蛋白复合物。有趣的是,我们的图像显示,C2CD3、微管三聚体、MNR、CEP90、OFD1 和 ODF2 共同构成了 DAP 基部的独特分子构型。此外,我们的发现表明,ODF2 在协调和维持 DAP 九重对称方面发挥辅助作用。总之,我们开发了一种基于细胞器的漂移校正方案和一种具有最小串扰的双色溶液,允许对扩展的 DAP 结构进行稳健的定位显微镜成像,深入到凝胶样本复合材料中。