4.4 Review

Hidden Behind Autophagy: The Unconventional Roles of ATG Proteins

期刊

TRAFFIC
卷 14, 期 10, 页码 1029-1041

出版社

WILEY
DOI: 10.1111/tra.12091

关键词

apoptosis; ATG proteins; autophagy; degradation; immunity; infection; pathogens; subversion; unconventional

资金

  1. ZonMW VENI grant [916.126.018]
  2. ECHO [700.59.003]
  3. ALW Open Program [821.02.017, 822.02.014]
  4. DFG-NWO [DN82-303]
  5. ZonMW VICI grants [016.130.606]

向作者/读者索取更多资源

Macroautophagy (hereafter referred to as autophagy) is an evolutionarily conserved intracellular catabolic transport route that generally allows the lysosomal degradation of cytoplasmic components, including bulk cytosol, protein aggregates, damaged or superfluous organelles and invading microbes. Target structures are sequestered by double-membrane vesicles called autophagosomes, which are formed through the concerted action of the autophagy (ATG)-related proteins. Until recently it was assumed that ATG proteins were exclusively involved in autophagy. A growing number of studies, however, have attributed functions to some of them that are distinct from their classical role in autophagosome biogenesis. Autophagy-independent roles of the ATG proteins include the maintenance of cellular homeostasis and resistance to pathogens. For example, they assist and enhance the turnover of dead cells and microbes upon their phagocytic engulfment, and inhibit murine norovirus replication. Moreover, bone resorption by osteoclasts, innate immune regulation triggered by cytoplasmic DNA and the ER-associated degradation regulation all have in common the requirement of a subset of ATG proteins. Microorganisms such as coronaviruses, Chlamydia trachomatis or Brucella abortus have even evolved ways to manipulate autophagy-independent functions of ATG proteins in order to ensure the completion of their intracellular life cycle. Taken together these novel mechanisms add to the repertoire of functions and extend the number of cellular processes involving the ATG proteins.

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