作者
Soah Lee, Alison S Vander Roest, Cheavar Blair, Kerry Kao, Samantha B Bremner, Matthew C Childers, Divya Pathak, Paul Heinrich, Daniel Lee, Orlando Chirikian, Saffie Mohran, Brock Roberts, Jacqueline E Smith, James WS Jahng, David T Paik, Joseph C Wu, Ruwanthi N Gunawardane, James A Spudich, Kathleen M Ruppel, David Mack, Beth L Pruitt, Michael Regnier, Sean M Wu, Daniel Bernstein
发表日期
2023
期刊
bioRxiv
页码范围
2023.06. 08.544276
出版商
Cold Spring Harbor Laboratory
简介
Rationale
Over 200 mutations in the sarcomeric protein β-myosin heavy chain (MYH7) have been linked to hypertrophic cardiomyopathy (HCM). However, different mutations in MYH7 lead to variable penetrance and clinical severity, and alter myosin function to varying degrees, making it difficult to determine genotype-phenotype relationships, especially when caused by rare gene variants such as the G256E mutation.
Objective
This study aims to determine the effects of low penetrant MYH7 G256E mutation on myosin function. We hypothesize that the G256E mutation would alter myosin function, precipitating compensatory responses in cellular functions.
Methods
We developed a collaborative pipeline to characterize myosin function at multiple scales (protein to myofibril to cell to tissue). We also used our previously published data on other mutations to compare the degree to which myosin function was altered.
Results
At the protein level, the G256E mutation disrupts the transducer region of the S1 head and reduces the fraction of myosin in the folded-back state by 50.9%, suggesting more myosins available for contraction. Myofibrils isolated from hiPSC-CMs CRISPR-edited with G256E (MYH7WT/G256E) generated greater tension, had faster tension development and slower early phase relaxation, suggesting altered myosin-actin crossbridge cycling kinetics. This hypercontractile phenotype persisted in single-cell hiPSC-CMs and engineered heart tissues. Single-cell transcriptomic and metabolic profiling demonstrated upregulation of mitochondrial genes and increased mitochondrial respiration, suggesting altered bioenergetics as an early feature …
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