The W792R HCM missense mutation in the C6 domain of cardiac myosin binding protein-C increases contractility in neonatal mouse myocardium

被引:2
|
作者
Mertens, Jasmine [1 ,2 ]
De Lange, Willem J. [1 ,2 ]
Farrell, Emily T. [1 ,2 ]
Harbaugh, Ella C. [1 ,2 ]
Gauchan, Angeela [1 ,2 ]
Fitzsimons, Daniel P. [2 ,3 ]
Moss, Richard L. [2 ,3 ]
Ralphe, J. Carter [1 ,2 ]
机构
[1] Univ Wisconsin, Sch Med & Publ Hlth, Dept Pediat, Madison, WI 53706 USA
[2] Univ Wisconsin, UW Cardiovasc Res Ctr, Sch Med & Publ Hlth, Madison, WI 53706 USA
[3] Univ Wisconsin, Sch Med & Publ Hlth, Dept Cell & Regenerat Biol, Madison, WI 53706 USA
基金
美国国家卫生研究院;
关键词
Cardiac myosin binding protein C; Hypertrophic cardiomyopathy; Murine models; Genotype-phenotype correlation; Contractility; Calcium sensitivity; cMyBP-C W792R; HUMAN HYPERTROPHIC CARDIOMYOPATHY; KINASE-A PHOSPHORYLATION; MYBPC3; MUTATION; DIFFERENTIAL ROLES; TROPONIN-I; CMYBP-C; F-ACTIN; FORCE; KINETICS; ABLATION;
D O I
10.1016/j.yjmcc.2024.07.007
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Missense mutations in cardiac myosin binding protein C (cMyBP-C) are known to cause hypertrophic cardiomyopathy (HCM). The W792R mutation in the C6 domain of cMyBP-C causes severe, early onset HCM in humans, yet its impact on the function of cMyBP-C and the mechanism through which it causes disease remain unknown. To fully characterize the effect of the W792R mutation on cardiac morphology and function in vivo, we generated a murine knock-in model. We crossed heterozygous W792RWR mice to produce homozygous mutant W792RRR, heterozygous W792RWR , and control W792RWW mice. W792RRR mice present with cardiac hypertrophy, myofibrillar disarray and fibrosis by postnatal day 10 (PND10), and do not survive past PND21. Full-length cMyBP-C is present at similar levels in W792RWW, W792RWR and W792RRR mice and is properly incorporated into the sarcomere. Heterozygous W792RWR mice displayed normal heart morphology and contractility. Permeabilized myocardium from PND10 W792RRR mice showed increased Ca2+ sensitivity, accelerated cross-bridge cycling kinetics, decreased cooperativity in the activation of force, and increased expression of hypertrophy-related genes. In silico modeling suggests that the W792R mutation destabilizes the fold of the C6 domain and increases torsion in the C5-C7 region, possibly impacting regulatory interactions of cMyBP-C with myosin and actin. Based on the data presented here, we propose a model in which mutant W792R cMyBP-C preferentially forms Ca2+ sensitizing interactions with actin, rather than inhibitory interactions with myosin. The W792R-cMyBP-C mouse model provides mechanistic insights into the pathology of this mutation and may provide a mechanism by which other central domain missense mutations in cMyBP-C may alter contractility, leading to HCM.
引用
收藏
页码:14 / 23
页数:10
相关论文
共 50 条
  • [1] The Missense W792R Mutation in C6 Domain of Cardiac Myosin Binding Protein-C Alters Morphology and Contractility in Mouse Myocardium
    Ralphe, John C.
    Giles, Jasmine A.
    Farrell, Emily T.
    Harbaugh, Ella C.
    de lange, Willem J.
    Moss, Richard L.
    CIRCULATION, 2023, 148
  • [2] The HCM-linked W792R mutation in cardiac myosin-binding protein C reduces C6 FnIII domain stability
    Smelter, Dan F.
    de Lange, Willem J.
    Cai, Wenxuan
    Ge, Ying
    Ralphe, J. Carter
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2018, 314 (06): : H1179 - H1191
  • [3] The W792R mutation in cardiac myosin binding protein-C reduces the C6 FnIII domain stability and causes hypertrophic cardiomyopathy through haploinsufficiency
    Smelter, Dan
    de Lange, Willem
    Ralphe, J. Carter
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2017, 112 : 141 - 141
  • [4] The hypertrophic cardiomyopathy-causing W792R and T1075 mutations in cardiac myosin binding protein-C generate cardiac dysfunction in mice
    Lynch, Thomas I., V
    Giles, Jasmine
    Iverson, Elizabeth
    Fitzsimons, Daniel
    Moss, Richard
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2017, 112 : 163 - 163
  • [5] Effect of cardiac myosin binding protein-C on mechanoenergetics in mouse myocardium
    Palmer, BM
    Noguchi, T
    Wang, Y
    Heim, JR
    Alpert, NR
    Burgon, PG
    Seidman, CE
    Seidman, G
    Maughan, DW
    LeWinter, MM
    CIRCULATION RESEARCH, 2004, 94 (12) : 1615 - 1622
  • [6] Cardiac myosin binding protein-C phosphorylation accelerates β-cardiac myosin detachment rate in mouse myocardium
    Tanner, Bertrand C. W.
    Previs, Michael J.
    Wang, Yuan
    Robbins, Jeffrey
    Palmer, Bradley M.
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2021, 320 (05): : H1822 - H1835
  • [7] Phosphorylation of Serine 282 in Cardiac Myosin Binding Protein-C Increases Myosin MgADP Release and MgATP Binding Rates in Mouse Myocardium
    Tanner, Bertrand C. W.
    Wang, Yuan
    Robbins, Jeffrey
    Palmer, Bradley M.
    BIOPHYSICAL JOURNAL, 2013, 104 (02) : 158A - 158A
  • [8] Kinetics of cardiac myosin isoforms in mouse myocardium are affected differently by presence of myosin binding protein-C
    Bertrand C. W. Tanner
    Yuan Wang
    Jeffrey Robbins
    Bradley M. Palmer
    Journal of Muscle Research and Cell Motility, 2014, 35 : 267 - 278
  • [9] Kinetics of cardiac myosin isoforms in mouse myocardium are affected differently by presence of myosin binding protein-C
    Tanner, Bertrand C. W.
    Wang, Yuan
    Robbins, Jeffrey
    Palmer, Bradley M.
    JOURNAL OF MUSCLE RESEARCH AND CELL MOTILITY, 2014, 35 (5-6) : 267 - 278
  • [10] A homozygous missense mutation in the M-domain of cardiac myosin binding protein-C is lethal in a CRISPR-gene edited mouse model
    Sadler, Rachel
    Strom, Joshua
    Fan, Julie
    Harris, Samantha P.
    BIOPHYSICAL JOURNAL, 2022, 121 (03) : 108 - 109