Vps60 initiates alternative ESCRT-III filaments

J Cell Biol. 2023 Nov 6;222(11):e202206028. doi: 10.1083/jcb.202206028. Epub 2023 Sep 28.

Abstract

Endosomal sorting complex required for transport-III (ESCRT-III) participates in essential cellular functions, from cell division to endosome maturation. The remarkable increase of its subunit diversity through evolution may have enabled the acquisition of novel functions. Here, we characterize a novel ESCRT-III copolymer initiated by Vps60. Membrane-bound Vps60 polymers recruit Vps2, Vps24, Did2, and Ist1, as previously shown for Snf7. Snf7- and Vps60-based filaments can coexist on membranes without interacting as their polymerization and recruitment of downstream subunits remain spatially and biochemically separated. In fibroblasts, Vps60/CHMP5 and Snf7/CHMP4 are both recruited during endosomal functions and cytokinesis, but their localization is segregated and their recruitment dynamics are different. Contrary to Snf7/CHMP4, Vps60/CHMP5 is not recruited during nuclear envelope reformation. Taken together, our results show that Vps60 and Snf7 form functionally distinct ESCRT-III polymers, supporting the notion that diversification of ESCRT-III subunits through evolution is linked to the acquisition of new cellular functions.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Cell Division
  • Endosomal Sorting Complexes Required for Transport* / genetics
  • Endosomal Sorting Complexes Required for Transport* / metabolism
  • Endosomes / genetics
  • Endosomes / metabolism
  • Humans
  • Polymers / metabolism

Substances

  • Endosomal Sorting Complexes Required for Transport
  • Polymers
  • CHMP5 protein, human
  • CHMP4A protein, human