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大 GTP 酶 Mx1 与 Kif5B 结合,沿微管进行货物运输。

The large GTPase Mx1 binds Kif5B for cargo transport along microtubules.

机构信息

Department of Cell Biology and Cell Pathology, Philipps University of Marburg, Marburg, Germany.

DFG Research Training Group, Membrane Plasticity in Tissue Development and Remodeling, Philipps University of Marburg, Marburg, Germany.

出版信息

Traffic. 2018 Dec;19(12):947-964. doi: 10.1111/tra.12616. Epub 2018 Oct 23.

Abstract

A highly specific transport and sorting machinery directing secretory cargo to the apical or basolateral plasma membrane maintains the characteristic polarized architecture of epithelial cells. This machinery comprises a defined set of transport carriers, which are crucial for cargo delivery to the correct membrane domain. Each carrier is composed of a distinct set of proteins to verify precise routing and cargo selection. Among these components, the dynamin-related GTPase Mx1 was identified on post-Golgi vesicles destined for the apical membrane of MDCK cells. In addition to the presence on late secretory compartments, Mx1 was also detected on compartments of the early secretory pathway. Vesicular structures positive for this GTPase are highly dynamic, and we have studied the influence of the microtubule cytoskeleton on this motility. Live-cell microscopy indicated that microtubule disruption using nocodazole inhibits long-range trafficking of these structures. Mx1 directly or indirectly interacts with α-tubulin and the kinesin motor Kif5B as assessed by coimmunoprecipitation. In agreement with these observations knock out of Mx1 or a mutation in the unstructured L4 loop of Mx1 decreases the efficiency of apical cargo delivery. Interestingly, the L4 loop mutant still interacts with Kif5B; however, it causes vesicle elongation. This suggests that Mx1 aids in vesicle fission and stabilizes the interaction between Kif5B, microtubules and apical transport carriers.

摘要

高度特异的运输和分拣机制将分泌货物定向到上皮细胞的顶侧或基底外侧质膜,维持了上皮细胞特有的极化结构。该机制包含一组特定的运输载体,对于将货物递送到正确的膜域至关重要。每个载体由一组独特的蛋白质组成,以确保精确的路由和货物选择。在这些成分中,与高尔基后囊泡相关的 dynamin 相关 GTPase Mx1 被鉴定为定向到 MDCK 细胞顶侧质膜的货物。除了存在于晚期分泌隔室中外,Mx1 还在早期分泌途径的隔室中被检测到。对这种 GTPase 呈阳性的囊泡结构高度动态,我们研究了微管细胞骨架对这种运动的影响。活细胞显微镜表明,使用诺考达唑破坏微管会抑制这些结构的长距离运输。通过共免疫沉淀评估,Mx1 直接或间接与α-微管蛋白和驱动蛋白 Kif5B 相互作用。与这些观察结果一致,Mx1 的敲除或 Mx1 无规则 L4 环中的突变会降低顶侧货物递送的效率。有趣的是,L4 环突变体仍与 Kif5B 相互作用;然而,它会导致囊泡伸长。这表明 Mx1 有助于囊泡分裂,并稳定了 Kif5B、微管和顶侧运输载体之间的相互作用。

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