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Journal Abstract Search


483 related items for PubMed ID: 9772181

  • 21. Flexibility of actin filaments derived from thermal fluctuations. Effect of bound nucleotide, phalloidin, and muscle regulatory proteins.
    Isambert H, Venier P, Maggs AC, Fattoum A, Kassab R, Pantaloni D, Carlier MF.
    J Biol Chem; 1995 May 12; 270(19):11437-44. PubMed ID: 7744781
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  • 22. Nucleotide binding to actin. Cation dependence of nucleotide dissociation and exchange rates.
    Kinosian HJ, Selden LA, Estes JE, Gershman LC.
    J Biol Chem; 1993 Apr 25; 268(12):8683-91. PubMed ID: 8473312
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  • 23. Polymerization and structure of nucleotide-free actin filaments.
    De La Cruz EM, Mandinova A, Steinmetz MO, Stoffler D, Aebi U, Pollard TD.
    J Mol Biol; 2000 Jan 21; 295(3):517-26. PubMed ID: 10623543
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  • 25. The influence of divalent cations on the dynamic properties of actin filaments: a spectroscopic study.
    Hild G, Nyitrai M, Belágyi J, Somogyi B.
    Biophys J; 1998 Dec 21; 75(6):3015-22. PubMed ID: 9826621
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  • 26. Significance of the N-terminal fragment of myosin regulatory light chain for myosin-actin interaction.
    Stepkowski D, Szczesna D, Babiychuk EB, Borovikov YS, Kakol I.
    Biochem Mol Biol Int; 1995 Mar 21; 35(3):677-84. PubMed ID: 7773203
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  • 27. A correlative analysis of actin filament assembly, structure, and dynamics.
    Steinmetz MO, Goldie KN, Aebi U.
    J Cell Biol; 1997 Aug 11; 138(3):559-74. PubMed ID: 9245786
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  • 33. Antagonistic effects of cofilin, beryllium fluoride complex, and phalloidin on subdomain 2 and nucleotide-binding cleft in F-actin.
    Muhlrad A, Ringel I, Pavlov D, Peyser YM, Reisler E.
    Biophys J; 2006 Dec 15; 91(12):4490-9. PubMed ID: 16997870
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  • 35. Effect of Ca2+-Mg2+ exchange on the flexibility and/or conformation of the small domain in monomeric actin.
    Nyitrai M, Hild G, Lakos Z, Somogyi B.
    Biophys J; 1998 May 15; 74(5):2474-81. PubMed ID: 9591673
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  • 36. Kinetics of myosin subfragment-1-induced condensation of G-actin into oligomers, precursors in the assembly of F-actin-S1. Role of the tightly bound metal ion and ATP hydrolysis.
    Fievez S, Pantaloni D, Carlier MF.
    Biochemistry; 1997 Sep 30; 36(39):11837-42. PubMed ID: 9305975
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  • 37. Microsecond rotational dynamics of actin: spectroscopic detection and theoretical simulation.
    Prochniewicz E, Zhang Q, Howard EC, Thomas DD.
    J Mol Biol; 1996 Jan 26; 255(3):446-57. PubMed ID: 8568889
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  • 38. Conformational and dynamic differences between actin filaments polymerized from ATP- or ADP-actin monomers.
    Nyitrai M, Hild G, Hartvig N, Belágyi J, Somogyi B.
    J Biol Chem; 2000 Dec 29; 275(52):41143-9. PubMed ID: 11005806
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  • 39. Effect of replacement of the tightly bound Ca2+ by Ba2+ on actin polymerization.
    DalleDonne I, Milzani A, Colombo R.
    Arch Biochem Biophys; 1998 Mar 15; 351(2):141-8. PubMed ID: 9514647
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  • 40. The influence of adenosine triphosphate, adenosine diphosphate and cytochalasin B on nucleotide exchange of F-actin. Evidence that treadmilling is not involved.
    Dancker P, Fischer S.
    Biochim Biophys Acta; 1985 Jan 28; 838(1):6-11. PubMed ID: 3967046
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