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Bardet-Biedl 综合征 3 蛋白通过 BBSome 促进信号蛋白磷脂酶 D 的纤毛出口。

Bardet-Biedl syndrome 3 protein promotes ciliary exit of the signaling protein phospholipase D via the BBSome.

机构信息

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

Department of Cellular Biology, University of Georgia, Athens, United States.

出版信息

Elife. 2021 Feb 15;10:e59119. doi: 10.7554/eLife.59119.

Abstract

Certain ciliary signaling proteins couple with the BBSome, a conserved complex of Bardet-Biedl syndrome (BBS) proteins, to load onto retrograde intraflagellar transport (IFT) trains for their removal out of cilia in . Here, we show that loss of the Arf-like 6 (ARL6) GTPase BBS3 causes the signaling protein phospholipase D (PLD) to accumulate in cilia. Upon targeting to the basal body, BBSomes enter and cycle through cilia via IFT, while BBS3 in a GTP-bound state separates from BBSomes, associates with the membrane, and translocates from the basal body to cilia by diffusion. Upon arriving at the ciliary tip, GTP-bound BBS3 binds and recruits BBSomes to the ciliary membrane for interacting with PLD, thus making the PLD-laden BBSomes available to load onto retrograde IFT trains for ciliary exit. Therefore, BBS3 promotes PLD exit from cilia via the BBSome, providing a regulatory mechanism for ciliary signaling protein removal out of cilia.

摘要

某些纤毛信号蛋白与 BBSome 结合,BBSome 是 Bardet-Biedl 综合征 (BBS) 蛋白的保守复合物,用于加载逆行纤毛内运输 (IFT) 列车,以便从纤毛中去除。在这里,我们表明 Arf 样 6 (ARL6) GTPase BBS3 的缺失会导致信号蛋白磷脂酶 D (PLD) 在纤毛中积累。在靶向基底体后,BBSomes 通过 IFT 进入并在纤毛中循环,而处于 GTP 结合状态的 BBS3 与 BBSomes 分离,与膜结合,并通过扩散从基底体转移到纤毛。当到达纤毛尖端时,GTP 结合的 BBS3 与 BBSomes 结合并将其募集到纤毛膜上,与 PLD 相互作用,从而使载有 PLD 的 BBSomes 能够加载到逆行 IFT 列车上,以便从纤毛中退出。因此,BBS3 通过 BBSome 促进 PLD 从纤毛中退出,为纤毛信号蛋白从纤毛中去除提供了一种调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7213/7963478/2b52c4b3c743/elife-59119-fig1.jpg

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