Literature DB >> 29105867

Structural destabilization of tropomyosin induced by the cardiomyopathy-linked mutation R21H.

Thu Ly1, Inna Krieger2, Dmitri Tolkatchev1, Cheyenna Krone1, Timothy Moural3, Fadel A Samatey4, ChulHee Kang3, Alla S Kostyukova1.   

Abstract

The missense mutation R21H in striated muscle tropomyosin is associated with hypertrophic cardiomyopathy, a genetic cardiac disease and a leading cause of sudden cardiac death in young people. Tropomyosin adopts conformation of a coiled coil which is critical for regulation of muscle contraction. In this study, we investigated the effects of the R21H mutation on the coiled-coil structure of tropomyosin and its interactions with its binding partners, tropomodulin and leiomodin. Using circular dichroism and isothermal titration calorimetry, we found that the mutation profoundly destabilized the structural integrity of αTM1a1-28 Zip, a chimeric peptide containing the first 28 residues of tropomyosin. The mutated αTM1a1-28 Zip was still able to interact with tropomodulin and leiomodin. However, the mutation resulted in a ∼30-fold decrease of αTM1a1-28 Zip's binding affinity to leiomodin. We used a crystal structure of αTM1a1-28 Zip that we solved at 1.5 Å resolution to study the mutation's effect in silico by means of molecular dynamics simulation. The simulation data indicated that while the mutation disrupted αTM1a1-28 Zip's coiled-coil structure, most notably from residue Ala18 to residue His31, it may not affect the N-terminal end of tropomyosin. The drastic decrease of αTM1a1-28 Zip's affinity to leiomodin caused by the mutation may lead to changes in the dynamics at the pointed end of thin filaments. Therefore, the R21H mutation is likely interfering with the regulation of the normal thin filament length essential for proper muscle contraction.
© 2017 The Protein Society.

Entities:  

Keywords:  circular dichroism; hypertrophic cardiomyopathy; isothermal titration calorimetry; leiomodin; tropomodulin; tropomyosin

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Substances:

Year:  2017        PMID: 29105867      PMCID: PMC5775174          DOI: 10.1002/pro.3341

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  58 in total

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Authors:  Dmitri Tolkatchev; Garry E Smith; Alla S Kostyukova
Journal:  Prog Mol Biol Transl Sci       Date:  2019-04-13       Impact factor: 3.622

2.  Effects of cardiomyopathy-linked mutations K15N and R21H in tropomyosin on thin-filament regulation and pointed-end dynamics.

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Journal:  Molecules       Date:  2021-11-19       Impact factor: 4.927

5.  Leiomodin creates a leaky cap at the pointed end of actin-thin filaments.

Authors:  Dmitri Tolkatchev; Garry E Smith; Lauren E Schultz; Mert Colpan; Gregory L Helms; John R Cort; Carol C Gregorio; Alla S Kostyukova
Journal:  PLoS Biol       Date:  2020-09-08       Impact factor: 8.029

6.  Structural insights into the tropomodulin assembly at the pointed ends of actin filaments.

Authors:  Dmitri Tolkatchev; Balaganesh Kuruba; Garry E Smith; Kyle D Swain; Kaitlin A Smith; Natalia Moroz; Trenton J Williams; Alla S Kostyukova
Journal:  Protein Sci       Date:  2020-12-02       Impact factor: 6.993

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