Rab27a and Rab27b control different steps of the exosome secretion pathway

拉布 外体 细胞生物学 分泌物 基因沉默 微泡 RNA干扰 生物 内体 GTP酶 生物发生 细胞内 效应器 小RNA 核糖核酸 生物化学 基因
作者
Matías Ostrowski,Nuno Carmo,Sophie Krumeich,Isabelle Fanget,Graça Raposo,Ariel Savina,Catarina Moita,Kristine Schauer,Alistair N. Hume,Rui P. Freitas,Bruno Goud,Philippe Benaroch,Nir Hacohen,Mitsunori Fukuda,Claire Desnos,Miguel C. Seabra,François Darchen,Sebastián Amigorena,Luís F. Moita,Clotilde Théry
出处
期刊:Nature Cell Biology [Nature Portfolio]
卷期号:12 (1): 19-30 被引量:2410
标识
DOI:10.1038/ncb2000
摘要

Exosome biogenesis is poorly understood. The small GTPases Rab27a and Rab27b and their effectors, Slp4 and Slac2b, control exosome secretion at different steps by regulating the peripheral localization, retention and docking of exosomal precursors, the multivesicular endosomes. Exosomes are secreted membrane vesicles that share structural and biochemical characteristics with intraluminal vesicles of multivesicular endosomes (MVEs). Exosomes could be involved in intercellular communication and in the pathogenesis of infectious and degenerative diseases. The molecular mechanisms of exosome biogenesis and secretion are, however, poorly understood. Using an RNA interference (RNAi) screen, we identified five Rab GTPases that promote exosome secretion in HeLa cells. Among these, Rab27a and Rab27b were found to function in MVE docking at the plasma membrane. The size of MVEs was strongly increased by Rab27a silencing, whereas MVEs were redistributed towards the perinuclear region upon Rab27b silencing. Thus, the two Rab27 isoforms have different roles in the exosomal pathway. In addition, silencing two known Rab27 effectors, Slp4 (also known as SYTL4, synaptotagmin-like 4) and Slac2b (also known as EXPH5, exophilin 5), inhibited exosome secretion and phenocopied silencing of Rab27a and Rab27b, respectively. Our results therefore strengthen the link between MVEs and exosomes, and introduce ways of manipulating exosome secretion in vivo.
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