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Ngo, J. M.

Publications and source records attributed to Ngo, J. M..

3 recordsLinked to original sources

p62 sorts Lupus La and selected microRNAs into breast cancer-derived exosomes

Exosomes are multivesicular body-derived extracellular vesicles that are secreted by metazoan cells. Exosomes have utility as disease biomarkers, and exosome-mediated miRNA secretion has been proposed to facilitate tumor growth and metastasis. Previously, we demonstrated that the Lupus La protein (La) mediates the selective incorporation of miR-122 into metastatic breast cancer-derived exosomes; however, the mechanism by which La itself is sorted into exosomes remains unknown. Using unbiased proximity labeling proteomics, biochemical fractionation, superresolution microscopy and genetic tools, we establish that the selective autophagy receptor p62 sorts La and miR-122 into exosomes. We then performed small RNA sequencing and found that p62 depletion reduces the exosomal secretion of tumor suppressor miRNAs and results in their accumulation within cells. Our data indicate that p62 is a quality control factor that modulates the miRNA composition of exosomes. Cancer cells may exploit p62-dependent exosome cargo sorting to eliminate tumor suppressor miRNAs and thus to promote cell proliferation.

cell biology↗

Calpains Orchestrate Secretion of Annexin-containing Microvesicles during Membrane Repair

Microvesicles (MVs) are membrane-enclosed, plasma membrane-derived particles released by cells from all branches of life. MVs have utility as disease biomarkers and may participate in intercellular communication; however, physiological processes that induce their secretion are not known. Here, we isolate and characterize annexin-containing MVs and show that these vesicles are secreted in response to the calcium influx caused by membrane damage. The annexins in these vesicles are cleaved by calpains. After plasma membrane injury, cytoplasmic calcium-bound annexins are rapidly recruited to the plasma membrane and form a scab-like structure at the lesion. In a second phase, recruited annexins are cleaved by calpains-1/2, disabling membrane scabbing. Cleavage promotes annexin secretion within MVs. Our data supports a new model of plasma membrane repair, where calpains relax annexin-membrane aggregates in the lesion repair scab, allowing secretion of damaged membrane and annexins as MVs. We anticipate that cells experiencing plasma membrane damage, including muscle and metastatic cancer cells, secrete these MVs at elevated levels.

cell biology↗

Annexin A6 mediates calcium-dependent secretion of exosomes

Exosomes are a subtype of extracellular vesicles (EV) that are secreted upon fusion of multivesicular bodies (MVBs) with the plasma membrane. In order to identify proteins responsible for this fusion event, we developed sensitive cellular and cell-free assays to measure exosome secretion. Our results suggest that exosome secretion is coupled to Ca2+-dependent plasma membrane repair. Using a targeted proteomics approach, we identify annexin A6 (ANXA6), a well-known plasma membrane repair protein, as a MVB binding protein and demonstrate that it is required for Ca2+-dependent exosome secretion both in intact and in permeabilized cells. Our results suggest that cells employ MVBs as a membrane source for plasma membrane lesion repair during physiological mechanical stress or treatment with a bacterial pore-forming toxin, and that this repair process results in the coincident secretion of exosomes. We propose that this unconventional secretion process may contribute significantly to the heterogeneity of EVs in biological fluids.

molecular biology↗