4.5 Article

Thymosin-β4 changes the conformation and dynamics of actin monomers

Journal

BIOPHYSICAL JOURNAL
Volume 78, Issue 5, Pages 2516-2527

Publisher

BIOPHYSICAL SOCIETY
DOI: 10.1016/S0006-3495(00)76797-X

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Funding

  1. NIAMS NIH HHS [AR40840, AR35661] Funding Source: Medline
  2. NIGMS NIH HHS [R01 GM057247, GM57247] Funding Source: Medline

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Thymosin-beta(4) (T beta(4)) binds actin monomers stoichiometrically and maintains the bulk of the actin monomer pool in metazoan cells. T beta(4) binding quenches the fluorescence of N-iodoacetyl-N'-(5-sulfo-1-naphthyl)ethylenediamine (AEDANS) conjugated to Cys(374) Of actin monomers. The K-d of the actin-T beta(4) complex depends on the cation and nucleotide bound to actin but is not affected by the AEDANS probe. The different stabilities are determined primarily by the rates of dissociation. At 25 degrees C, the free energy of T beta(4) binding MgATP-actin is primarily enthalpic in origin but entropic for CaATP-actin. Binding is coupled to the dissociation of bound water molecules, which is greater for CaATP-actin than MgATP-actin monomers. Proteolysis of MgATP-actin, but not CaATP-actin, at Gly(46) On subdomain 2 is >12 times faster when T beta(4) is bound. The C terminus of T beta(4) contacts actin near this cleavage site, at His(40). By tritium exchange, T beta(4) slows the exchange rate of approximately eight rapidly exchanging amide protons on actin. We conclude that Tp, changes the conformation and structural dynamics (breathing) of actin monomers. The conformational change may reflect the unique ability of T beta(4) to sequester actin monomers and inhibit nucleotide exchange.

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