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CryoET reveals actin filaments within platelet microtubules.

Chisato TsujiMarston BradshawMegan F AllenMolly L JacksonJudith MantellUfuk BorucuAlastair W PoolePaul VerkadeIngeborg HersDanielle M PaulMark P Dodding
Published in: Nature communications (2024)
Crosstalk between the actin and microtubule cytoskeletons is important for many cellular processes. Recent studies have shown that microtubules and F-actin can assemble to form a composite structure where F-actin occupies the microtubule lumen. Whether these cytoskeletal hybrids exist in physiological settings and how they are formed is unclear. Here, we show that the short-crossover Class I actin filament previously identified inside microtubules in human HAP1 cells is cofilin-bound F-actin. Lumenal F-actin can be reconstituted in vitro, but cofilin is not essential. Moreover, actin filaments with both cofilin-bound and canonical morphologies reside within human platelet microtubules under physiological conditions. We propose that stress placed upon the microtubule network during motor-driven microtubule looping and sliding may facilitate the incorporation of actin into microtubules.
Keyphrases
  • cell migration
  • endothelial cells
  • induced apoptosis
  • oxidative stress
  • signaling pathway
  • cell proliferation
  • study protocol
  • stress induced
  • network analysis