Key Laboratory of Animal Biotechnology, the Ministry of Agriculture, College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China 712100.
Key Laboratory of Animal Biotechnology, the Ministry of Agriculture, College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China 712100
J Cell Sci. 2018 Dec 19;131(24):jcs218792. doi: 10.1242/jcs.218792.
The Birt-Hogg-Dubé (BHD) syndrome related protein FLCN has recently been implicated in the vesicular trafficking processes by interacting with several Rab family GTPases. In the previous studies, we have shown that FLCN could inhibit the binding of overexpressed PAT1, which is a membrane-bound amino acid transporter, to the lysosome in human embryonic kidney 293 cells. This tends to stabilize the lysosomal amino acid pool that is a critical signal to activate the mTORC1 signaling pathway. However, the mechanisms of FLCN during this process remain unexplored. Here we report that FLCN can bind through its C-terminal DENN-like domain to the recycling transport regulator, Rab11A. Suppression of either Rab11A or FLCN facilitated the localization of the overexpressed PAT1 to the lysosome and inhibited its targeting on the plasma membrane. As a consequence, the mTORC1 was down-regulated. The GEF activity assay does not support FLCN modifies the Rab11A activity directly. Instead, we found FLCN promoted the loading of PAT1 on Rab11A. Our data uncover a function of FLCN in the Rab11A-mediated recycling pathway and might provide new clues to understand BHD.This article has an associated First Person interview with the first author of the paper.
Birt-Hogg-Dubé(BHD)综合征相关蛋白 FLCN 最近被发现与几种 Rab 家族 GTPases 相互作用,参与囊泡运输过程。在之前的研究中,我们已经表明,FLCN 可以抑制过表达的 PAT1(一种膜结合氨基酸转运体)与人类胚胎肾 293 细胞溶酶体的结合。这有助于稳定溶酶体中的氨基酸池,这是激活 mTORC1 信号通路的关键信号。然而,FLCN 在这个过程中的机制仍未被探索。在这里,我们报告 FLCN 可以通过其 C 端 DENN 样结构域与再循环转运调节剂 Rab11A 结合。抑制 Rab11A 或 FLCN 均可促进过表达的 PAT1 定位于溶酶体,并抑制其靶向质膜。结果,mTORC1 被下调。GEF 活性测定不支持 FLCN 直接修饰 Rab11A 的活性。相反,我们发现 FLCN 促进了 PAT1 在 Rab11A 上的加载。我们的数据揭示了 FLCN 在 Rab11A 介导的再循环途径中的功能,这可能为理解 BHD 提供新的线索。本文有一篇与该论文第一作者的相关第一人称采访。