Induction of Autophagy Promotes Fusion of Multivesicular Bodies with Autophagic Vacuoles in K562 Cells

细胞生物学 自噬 内体 生物 液泡 ESCRT公司 自噬体 微泡 生物化学 细胞质 细胞内 细胞凋亡 基因 小RNA
作者
Claudio M. Fader,Diego Sánchez‐Martínez,Marcelo Furlán,María I. Colombo
出处
期刊:Traffic [Wiley]
卷期号:9 (2): 230-250 被引量:430
标识
DOI:10.1111/j.1600-0854.2007.00677.x
摘要

Morphological and biochemical studies have shown that autophagosomes fuse with endosomes forming the so‐called amphisomes, a prelysosomal hybrid organelle. In the present report, we have analyzed this process in K562 cells, an erythroleukemic cell line that generates multivesicular bodies (MVBs) and releases the internal vesicles known as exosomes into the extracellular medium. We have previously shown that in K562 cells, Rab11 decorates MVBs. Therefore, to study at the molecular level the interaction of MVBs with the autophagic pathway, we have examined by confocal microscopy the fate of MVBs in cells overexpressing green fluorescent protein (GFP)–Rab11 and the autophagosomal protein red fluorescent protein–light chain 3 (LC3). Autophagy inducers such as starvation or rapamycin caused an enlargement of the vacuoles decorated with GFP–Rab11 and a remarkable colocalization with LC3. This convergence was abrogated by a Rab11 dominant negative mutant, indicating that a functional Rab11 is involved in the interaction between MVBs and the autophagic pathway. Interestingly, we presented evidence that autophagy induction caused calcium accumulation in autophagic compartments. Furthermore, the convergence between the endosomal and the autophagic pathways was attenuated by the Ca 2+ chelator acetoxymethyl ester (AM) of the calcium chelator 1,2‐bis(o‐aminophenoxy)ethane‐N,N,N′,N′‐tetraacetic acid (BAPTA), indicating that fusion of MVBs with the autophagosome compartment is a calcium‐dependent event. In addition, autophagy induction or overexpression of LC3 inhibited exosome release, suggesting that under conditions that stimulates autophagy, MVBs are directed to the autophagic pathway with consequent inhibition in exosome release.
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