ISGylation controls exosome secretion by promoting lysosomal degradation of MVB proteins

被引:0
作者
Carolina Villarroya-Beltri
Francesc Baixauli
María Mittelbrunn
Irene Fernández-Delgado
Daniel Torralba
Olga Moreno-Gonzalo
Sara Baldanta
Carlos Enrich
Susana Guerra
Francisco Sánchez-Madrid
机构
[1] Centro Nacional de Investigaciones Cardiovasculares (CNIC),Department of Preventive Medicine
[2] Immunology Service,undefined
[3] Hospital de la Princesa,undefined
[4] Instituto Investigación Sanitaria Princesa,undefined
[5] Universidad Autónoma de Madrid,undefined
[6] Public Health and Microbiology,undefined
[7] Universidad Autónoma de Madrid,undefined
[8] Departament de Biomedicina,undefined
[9] Unitat de Biologia Cel·lular,undefined
[10] Centre de Recerca Biomèdica CELLEX,undefined
[11] Institut d’Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS),undefined
[12] Facultat de Medicina,undefined
[13] Universitat de Barcelona,undefined
来源
Nature Communications | / 7卷
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摘要
Exosomes are vesicles secreted to the extracellular environment through fusion with the plasma membrane of specific endosomes called multivesicular bodies (MVB) and mediate cell-to-cell communication in many biological processes. Posttranslational modifications are involved in the sorting of specific proteins into exosomes. Here we identify ISGylation as a ubiquitin-like modification that controls exosome release. ISGylation induction decreases MVB numbers and impairs exosome secretion. Using ISG15-knockout mice and mice expressing the enzymatically inactive form of the de-ISGylase USP18, we demonstrate in vitro and in vivo that ISG15 conjugation regulates exosome secretion. ISG15 conjugation triggers MVB co-localization with lysosomes and promotes the aggregation and degradation of MVB proteins. Accordingly, inhibition of lysosomal function or autophagy restores exosome secretion. Specifically, ISGylation of the MVB protein TSG101 induces its aggregation and degradation, being sufficient to impair exosome secretion. These results identify ISGylation as a novel ubiquitin-like modifier in the control of exosome production.
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