4.3 Article

Proteogenomic analysis reveals exosomes are more oncogenic than ectosomes

期刊

ONCOTARGET
卷 6, 期 17, 页码 15375-15396

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.3801

关键词

exosomes; ectosomes; proteogenomics; extracellular vesicles; integrated OMICs analysis

资金

  1. Australian NHMRC fellowship [1016599]
  2. Australian Research Council Discovery project grant [DP130100535, DE150101777]

向作者/读者索取更多资源

Extracellular vesicles (EVs) include the exosomes (30-100 nm) that are produced through the endocytic pathway via the multivesicular bodies and the ectosomes (100-1000 nm) that are released through the budding of the plasma membrane. Despite the differences in the mode of biogenesis and size, reliable markers that can distinguish between exosomes and ectosomes are non-existent. Moreover, the precise functional differences between exosomes and ectosomes remains poorly characterised. Here, using label-free quantitative proteomics, we highlight proteins that could be exploited as markers to discriminate between exosomes and ectosomes. For the first time, a global proteogenomics analysis unveiled the secretion of mutant proteins that are implicated in cancer progression through tumor-derived EVs. Follow up integrated bioinformatics analysis highlighted the enrichment of oncogenic cargo in exosomes and ectosomes. Interestingly, exosomes induced significant cell proliferation and migration in recipient cells compared to ectosomes confirming the oncogenic nature of exosomes. These findings ascertain that cancer cells facilitate oncogenesis by the secretion of mutant and oncoproteins into the tumor microenvironment via exosomes and ectosomes. The integrative proteogenomics approach utilized in this study has the potential to identify disease biomarker candidates which can be later assayed in liquid biopsies obtained from cancer patients.

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