ExoCan Healthcare Technologies Ltd, Pune, India.
J Cell Physiol. 2023 Apr;238(4):687-697. doi: 10.1002/jcp.30967. Epub 2023 Feb 6.
Exosome biogenesis occurs parallel to multiple endocytic traffic routes. These coexisting routes drive cargo loading in exosomes via overlapping of exosome biogenesis with endosomal pathways. One such pathway is autophagy which captures damaged intracellular organelles or their components in an autophagosome vesicle and route them for lysosomal degradation. However, in case of a noncanonical fusion event between autophagosome and maturing multivesicular body (MVB)-a site for exosome biogenesis, the autophagic cargo is putatively loaded in exosomes and subsequent released out of the cell via formation of an "amphisome" like structure. Similarly, during "mitophagy" or mitochondrial (mt) autophagy, amphisome formation routes mitophagy cargo to exosomes. These mt-cargo enriched exosomes or mt-enREXO are often positive for LC3 protein-an autophagic flux marker, and potent regulators of paracrine signaling with both homeostatic and pathological roles. Here, I review this emerging concept and discuss how intracellular autophagic routes helps in generation of mt-enREXO and utility of these vesicles in paracrine cellular signaling and diagnostic areas.
外体的生物发生与多种内吞作用途径并行发生。这些共存的途径通过将外体生物发生与内体途径重叠,从而在外体中加载货物。其中一种途径是自噬,它在自噬体囊泡中捕获受损的细胞内细胞器或其成分,并将它们运送到溶酶体进行降解。然而,在自噬体与成熟多泡体(MVB)之间发生非典型融合事件的情况下——MVB 是外体生物发生的部位,自噬货物被假定装载在外体中,并通过形成“两性体”样结构随后从细胞中释放出来。同样,在“线粒体自噬”或线粒体(mt)自噬过程中,两性体形成途径将线粒体自噬货物输送到外体。这些富含 mt 货物的外体或 mt-enREXO 通常对 LC3 蛋白呈阳性——这是自噬通量的标志物,是旁分泌信号的有效调节剂,具有稳态和病理作用。在这里,我将回顾这一新兴概念,并讨论细胞内自噬途径如何有助于生成 mt-enREXO,以及这些囊泡在旁分泌细胞信号和诊断领域的应用。