Evolution and assembly of ESCRTs

Sara Ghazi-Tabatabai, Takayuki Obita, Ajaybabu V. Pobbati, Olga Perisic, Rachel Y. Samson, Stephen D. Bell, Roger L. Williams*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

The AAA (ATPase associated with various cellular activities) proteins participate in membrane trafficking, organelle biogenesis, DNA replication, intracellular locomotion, cytoskeletal remodelling, protein folding and proteolysis. The AAA Vps (vacuolar protein sorting) 4 is central to traffic to lysosomes, retroviral budding and mammalian cell division. It dissociates ESCRTs (endosomal sorting complexes required for transport) from endosomal membranes, enabling their recycling to the cytosol, and plays a role in fission of intraluminal vesicles within MVBs (multivesicular bodies). The mechanism of Vps4-catalysed disassembly of ESCRT networks is unknown; however, it requires interaction between Vps4 and ESCRT-III subunits. The 30 Cterminal residues of Vps2 and Vps46 (Did2) subunits are both necessary and sufficient for interaction with the Vps4 N-terminal MIT (microtubule-interacting and transport) domain, and the crystal structure of the Vps2 C-terminus in a complex with the Vps4 MIT domain shows that MIT helices α2 and α3 recognize a (D/E) XXLXXRLXXL(K/R) MIM (MIT-interacting motif). These Vps2-MIT interactions are essential for vacuolar sorting and for Vps4-catalysed disassembly of ESCRT-III networks in vitro. Electron microscopy of ESCRT-III filaments assembled in vitro has enabled us to identify surfaces of the Vps24 subunit that are critical for protein sorting in vivo. The ESCRT-III-Vps4 interaction predates the divergence of Archaea and Eukarya. The Crenarchaea have three classes of ESCRT-III-like subunits, and one of these subunits interacts with an archaeal Vps4-like protein in a manner closely related to the human Vps4-human ESCRT-III subunit Vps20 interaction. This archaeal Vps4-ESCRT-III interaction appears to have a fundamental role in cell division in the Crenarchaea.

Original languageEnglish
Pages (from-to)151-155
Number of pages5
JournalBiochemical Society Transactions
Volume37
Issue number1
DOIs
StatePublished - 2009

Keywords

  • Archaeon
  • Endosomal sorting complex required for transport (ESCRT)
  • Lysosome
  • Multivesicular body (MVB)
  • Protein sorting

ASJC Scopus subject areas

  • Biochemistry

Fingerprint

Dive into the research topics of 'Evolution and assembly of ESCRTs'. Together they form a unique fingerprint.

Cite this