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Rab8 and TNPO1 are ciliary transport adaptors for GTPase Arl13b by interacting with its RVEP motif containing ciliary targeting sequence.Rab8 和 TNPO1 通过与包含纤毛靶向序列的 RVEP 基序相互作用,成为 GTPase Arl13b 的纤毛运输衔接蛋白。
J Biol Chem. 2023 May;299(5):104604. doi: 10.1016/j.jbc.2023.104604. Epub 2023 Mar 11.
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Knocking out ARL13B completely abolishes primary ciliogenesis in cell lines.敲除ARL13B会完全消除细胞系中的初级纤毛发生。
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The RNA splicing factor PRPF8 is required for left-right organiser cilia function and determination of cardiac left-right asymmetry via regulation of splicing.RNA剪接因子PRPF8是左右组织者纤毛功能以及通过剪接调控来确定心脏左右不对称性所必需的。
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Molecular and structural perspectives on protein trafficking to the primary cilium membrane.蛋白质转运到初级纤毛膜的分子和结构观点。
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Rab8 和 TNPO1 通过与包含纤毛靶向序列的 RVEP 基序相互作用,成为 GTPase Arl13b 的纤毛运输衔接蛋白。

Rab8 and TNPO1 are ciliary transport adaptors for GTPase Arl13b by interacting with its RVEP motif containing ciliary targeting sequence.

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore.

School of Biological Sciences, Nanyang Technological University, Singapore.

出版信息

J Biol Chem. 2023 May;299(5):104604. doi: 10.1016/j.jbc.2023.104604. Epub 2023 Mar 11.

DOI:10.1016/j.jbc.2023.104604
PMID:36907439
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10124946/
Abstract

Arl13b, an ARF/Arl-family GTPase, is highly enriched in the cilium. Recent studies have established Arl13b as one of the most crucial regulators for ciliary organization, trafficking, and signaling. The ciliary localization of Arl13b is known to require the RVEP motif. However, its cognate ciliary transport adaptor has been elusive. Here, by imaging the ciliary localization of truncation and point mutations, we defined the ciliary targeting sequence (CTS) of Arl13b as a C-terminal stretch of 17 amino acids containing the RVEP motif. We found Rab8-GDP, but not Rab8-GTP, and TNPO1 simultaneously and directly bind to the CTS of Arl13b in pull-down assays using cell lysates or purified recombinant proteins. Furthermore, Rab8-GDP substantially enhances the interaction between TNPO1 and CTS. Additionally, we determined that the RVEP motif is an essential element as its mutation abolishes the interaction of the CTS with Rab8-GDP and TNPO1 in pull-down and TurboID-based proximity ligation assays. Finally, the knockdown of endogenous Rab8 or TNPO1 decreases the ciliary localization of endogenous Arl13b. Therefore, our results suggest Rab8 and TNPO1 might function together as a ciliary transport adaptor for Arl13b by interacting with its RVEP-containing CTS.

摘要

Arl13b 是 ARF/Arl 家族 GTPase 的一种,在纤毛中高度富集。最近的研究确立了 Arl13b 作为纤毛组织、运输和信号传导的最关键调节因子之一。已知 Arl13b 的纤毛定位需要 RVEP 基序。然而,其同源的纤毛运输衔接蛋白一直难以捉摸。在这里,通过对截断和点突变的纤毛定位成像,我们将 Arl13b 的纤毛靶向序列(CTS)定义为含有 RVEP 基序的 17 个氨基酸的 C 末端延伸。我们发现 Rab8-GDP,但不是 Rab8-GTP,和 TNPO1 同时直接结合到细胞裂解物或纯化重组蛋白的下拉实验中的 Arl13b 的 CTS。此外,Rab8-GDP 显著增强了 TNPO1 和 CTS 之间的相互作用。此外,我们确定 RVEP 基序是一个必需的元件,因为其突变会在下拉和 TurboID 基近连接测定中消除 CTS 与 Rab8-GDP 和 TNPO1 的相互作用。最后,内源性 Rab8 或 TNPO1 的敲低会降低内源性 Arl13b 的纤毛定位。因此,我们的结果表明 Rab8 和 TNPO1 可能通过与含有 RVEP 的 CTS 相互作用,共同作为 Arl13b 的纤毛运输衔接蛋白发挥作用。