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Distinct actin-tropomyosin cofilament populations drive the functional diversification of cytoskeletal myosin motor complexes.
Reindl, Theresia; Giese, Sven; Greve, Johannes N; Reinke, Patrick Y; Chizhov, Igor; Latham, Sharissa L; Mulvihill, Daniel P; Taft, Manuel H; Manstein, Dietmar J.
Afiliação
  • Reindl T; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Giese S; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Greve JN; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Reinke PY; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Chizhov I; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Latham SL; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Mulvihill DP; School of Biosciences, University of Kent, CT2 7NJ Canterbury, UK.
  • Taft MH; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
  • Manstein DJ; Institute for Biophysical Chemistry, Fritz-Hartmann-Centre for Medical Research, Hannover Medical School, 30625 Hannover, Germany.
iScience ; 25(7): 104484, 2022 Jul 15.
Article em En | MEDLINE | ID: mdl-35720262
ABSTRACT
The effects of N-terminal acetylation of the high molecular weight tropomyosin isoforms Tpm1.6 and Tpm2.1 and the low molecular weight isoforms Tpm1.12, Tpm3.1, and Tpm4.2 on the actin affinity and the thermal stability of actin-tropomyosin cofilaments are described. Furthermore, we show how the exchange of cytoskeletal tropomyosin isoforms and their N-terminal acetylation affects the kinetic and chemomechanical properties of cytoskeletal actin-tropomyosin-myosin complexes. Our results reveal the extent to which the different actin-tropomyosin-myosin complexes differ in their kinetic and functional properties. The maximum sliding velocity of the actin filament as well as the optimal motor density for continuous unidirectional movement, parameters that were previously considered to be unique and invariant properties of each myosin isoform, are shown to be influenced by the exchange of the tropomyosin isoform and the N-terminal acetylation of tropomyosin.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article