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PUBMED FOR HANDHELDS

Journal Abstract Search


216 related items for PubMed ID: 33218166

  • 41. The flexibility of two tropomyosin mutants, D175N and E180G, that cause hypertrophic cardiomyopathy.
    Li XE, Suphamungmee W, Janco M, Geeves MA, Marston SB, Fischer S, Lehman W.
    Biochem Biophys Res Commun; 2012 Aug 03; 424(3):493-6. PubMed ID: 22789852
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  • 42. HCM and DCM cardiomyopathy-linked α-tropomyosin mutations influence off-state stability and crossbridge interaction on thin filaments.
    Farman GP, Rynkiewicz MJ, Orzechowski M, Lehman W, Moore JR.
    Arch Biochem Biophys; 2018 Jun 01; 647():84-92. PubMed ID: 29626422
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  • 43. Tropomyosin as a Regulator of Actin Dynamics.
    Khaitlina SY.
    Int Rev Cell Mol Biol; 2015 Jun 01; 318():255-91. PubMed ID: 26315888
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  • 44. Structural and functional properties of αβ-heterodimers of tropomyosin with myopathic mutations Q147P and K49del in the β-chain.
    Matyushenko AM, Shchepkin DV, Susorov DS, Nefedova VV, Kopylova GV, Berg VY, Kleymenov SY, Levitsky DI.
    Biochem Biophys Res Commun; 2019 Jan 15; 508(3):934-939. PubMed ID: 30545627
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  • 49. Thermal unfolding of various human non-muscle isoforms of tropomyosin.
    Nefedova VV, Marchenko MA, Kleymenov SY, Datskevich PN, Levitsky DI, Matyushenko AM.
    Biochem Biophys Res Commun; 2019 Jun 30; 514(3):613-617. PubMed ID: 31072616
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  • 50. Comparative structural and functional studies of low molecular weight tropomyosin isoforms, the TPM3 gene products.
    Marchenko MA, Nefedova VV, Yampolskaya DS, Borzova VA, Kleymenov SY, Nabiev SR, Nikitina LV, Matyushenko AM, Levitsky DI.
    Arch Biochem Biophys; 2021 Oct 15; 710():108999. PubMed ID: 34339666
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  • 51. Impact of Troponin in Cardiomyopathy Development Caused by Mutations in Tropomyosin.
    Nefedova VV, Kopylova GV, Shchepkin DV, Kochurova AM, Kechko OI, Borzova VA, Ryabkova NS, Katrukha IA, Mitkevich VA, Bershitsky SY, Levitsky DI, Matyushenko AM.
    Int J Mol Sci; 2022 Dec 11; 23(24):. PubMed ID: 36555368
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  • 55. Regulated crosslinked actin filaments and the decoupling between their ATPase activity and sliding motility.
    Honda H, Tagami N, Hatori K, Matsuno K.
    J Biochem; 1997 Jan 11; 121(1):47-9. PubMed ID: 9058190
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  • 56. Cooperative effects of tropomyosin on the dynamics of the actin filament.
    Khaitlina S, Tsaplina O, Hinssen H.
    FEBS Lett; 2017 Jul 11; 591(13):1884-1891. PubMed ID: 28555876
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  • 57. Structural and Functional Peculiarities of Cytoplasmic Tropomyosin Isoforms, the Products of TPM1 and TPM4 Genes.
    Marchenko M, Nefedova V, Artemova N, Kleymenov S, Levitsky D, Matyushenko A.
    Int J Mol Sci; 2021 May 13; 22(10):. PubMed ID: 34067970
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  • 58. Unique functional properties of slow skeletal muscle tropomyosin.
    Matyushenko AM, Shchepkin DV, Kopylova GV, Bershitsky SY, Levitsky DI.
    Biochimie; 2020 Jul 13; 174():1-8. PubMed ID: 32224097
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  • 59. Acetylation of fission yeast tropomyosin does not promote differential association with cognate formins.
    Tang Q, Pollard LW, Homa KE, Kovar DR, Trybus KM.
    Cytoskeleton (Hoboken); 2023 Mar 13; 80(3-4):77-92. PubMed ID: 36692369
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  • 60. The cardiomyopathy-associated K15N mutation in tropomyosin alters actin filament pointed end dynamics.
    Colpan M, Ly T, Grover S, Tolkatchev D, Kostyukova AS.
    Arch Biochem Biophys; 2017 Sep 15; 630():18-26. PubMed ID: 28732641
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