RABL2 promotes the outward transition zone passage of signaling proteins in cilia via ARL3

Author:

Zhang Rui-Kai1ORCID,Sun Wei-Yue1ORCID,Liu Yan-Xia1ORCID,Zhang Emma Y.2ORCID,Fan Zhen-Chuan1ORCID

Affiliation:

1. State Key Laboratory of Food Nutrition and Safety, Institute of Health Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China

2. Hamilton High School, Chandler, AZ 85248

Abstract

Certain transmembrane and membrane-tethered signaling proteins export from cilia as BBSome cargoes via the outward BBSome transition zone (TZ) diffusion pathway, indispensable for maintaining their ciliary dynamics to enable cells to sense and transduce extracellular stimuli inside the cell. Murine Rab-like 2 (Rabl2) GTPase resembles Chlamydomonas Arf-like 3 (ARL3) GTPase in promoting outward TZ passage of the signaling protein cargo-laden BBSome. During this process, ARL3 binds to and recruits the retrograde IFT train-dissociated BBSome as its effector to diffuse through the TZ for ciliary retrieval, while how RABL2 and ARL3 cross talk in this event remains uncertain. Here, we report that Chlamydomonas RABL2 in a GTP-bound form (RABL2 GTP ) cycles through cilia via IFT as an IFT-B1 cargo, dissociates from retrograde IFT trains at a ciliary region right above the TZ, and converts to RABL2 GDP for activating ARL3 GDP as an ARL3 guanine nucleotide exchange factor. This confers ARL3 GTP to detach from the ciliary membrane and become available for binding and recruiting the phospholipase D (PLD)-laden BBSome, autonomous of retrograde IFT association, to diffuse through the TZ for ciliary retrieval. Afterward, RABL2 GDP exits cilia by being bound to the ARL3 GTP /BBSome entity as a BBSome cargo. Our data identify ciliary signaling proteins exported from cilia via the RABL2-ARL3 cascade-mediated outward BBSome TZ diffusion pathway. According to this model, hedgehog signaling defect-induced Bardet–Biedl syndrome caused by RABL2 mutations in humans could be well explained in a mutation-specific manner, providing us with a mechanistic understanding behind the outward BBSome TZ passage required for proper ciliary signaling.

Funder

MOST | National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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