Shi Huaiyu, Wang Chenyan, Gao Bruce Z, Henderson James H, Ma Zhen
Department of Biomedical & Chemical Engineering, Syracuse University, Syracuse, NY, United States.
BioInspired Institute for Materials and Living Systems, Syracuse University, Syracuse, NY, United States.
Front Bioeng Biotechnol. 2022 Nov 1;10:1049523. doi: 10.3389/fbioe.2022.1049523. eCollection 2022.
Costameres, as striated muscle-specific cell adhesions, anchor both M-lines and Z-lines of the sarcomeres to the extracellular matrix. Previous studies have demonstrated that costameres intimately participate in the initial assembly of myofibrils. However, how costamere maturation cooperates with myofibril growth is still underexplored. In this work, we analyzed zyxin (costameres), α-actinin (Z-lines) and myomesin (M-lines) to track the behaviors of costameres and myofibrils within the cardiomyocytes derived from human induced pluripotent stem cells (hiPSC-CMs). We quantified the assembly and maturation of costameres associated with the process of myofibril growth within the hiPSC-CMs in a time-dependent manner. We found that asynchrony existed not only between the maturation of myofibrils and costameres, but also between the formation of Z-costameres and M-costameres that associated with different structural components of the sarcomeres. This study helps us gain more understanding of how costameres assemble and incorporate into the cardiomyocyte sarcomeres, which sheds a light on cardiomyocyte mechanobiology.
肌联蛋白作为横纹肌特异性细胞黏附结构,将肌节的M线和Z线都锚定到细胞外基质。先前的研究表明,肌联蛋白密切参与肌原纤维的初始组装。然而,肌联蛋白成熟如何与肌原纤维生长协同作用仍未得到充分探索。在这项工作中,我们分析了桩蛋白(肌联蛋白)、α-辅肌动蛋白(Z线)和肌间蛋白(M线)来追踪人诱导多能干细胞来源的心肌细胞(hiPSC-CMs)内肌联蛋白和肌原纤维的行为。我们以时间依赖性方式量化了hiPSC-CMs内与肌原纤维生长过程相关的肌联蛋白的组装和成熟。我们发现,不仅肌原纤维和肌联蛋白的成熟之间存在不同步,而且与肌节不同结构成分相关的Z-肌联蛋白和M-肌联蛋白的形成之间也存在不同步。这项研究有助于我们更深入地了解肌联蛋白如何组装并整合到心肌细胞肌节中这一问题,为心肌细胞力学生物学提供了新的线索。