Department of Veterinary and Comparative Anatomy, Washington State University, Pullman, WA 99164, USA.
J Mol Cell Cardiol. 2012 Oct;53(4):542-51. doi: 10.1016/j.yjmcc.2012.07.018. Epub 2012 Aug 4.
One limitation in understanding how different familial hypertrophic cardiomyopathy (FHC)-related mutations lead to divergent cardiac phenotypes is that such mutations are often studied in transgenic (TG) mouse hearts which contain a fast cycling myosin heavy chain isoform (α-MHC). However, the human heart contains a slow cycling MHC isoform (β-MHC). Given the physiological significance of MHC-troponin interplay effects on cardiac contractile function, we hypothesized that cardiac troponin T (cTnT) mutation-mediated effects on contractile function depend on the type of MHC isoform present in the sarcomere. We tested our hypothesis using two variants of cTnT containing mutations at FHC hotspot R92 (R92L or R92Q), expressed against either an α-MHC or β-MHC background in TG mouse hearts. One finding from our study was that R92L attenuated the length-dependent increase in tension and abolished the length-dependent increase in myofilament Ca(2+) sensitivity only when β-MHC was present. In addition, α- and β-MHC isoforms differentially affected how R92 mutations altered crossbridge (XB) recruitment dynamics. For example, the rate of XB recruitment was faster in R92L or R92Q fibers when β-MHC was present, but was unaffected when α-MHC was present. The R92Q mutation sped XB detachment in the presence of β-MHC, but not in the presence of α-MHC. R92Q affected the XB strain-dependent influence on XB recruitment dynamics, an effect not observed for R92L. Our findings have major implications for understanding not only the divergent effects of R92 mutations on cardiac phenotype, but also the distinct effects of MHC isoforms in determining the outcome of mutations in cTnT.
理解不同家族性肥厚型心肌病 (FHC) 相关突变如何导致不同的心脏表型的一个限制因素是,这些突变通常在含有快速循环肌球蛋白重链同工型 (α-MHC) 的转基因 (TG) 小鼠心脏中进行研究。然而,人类心脏含有慢速循环 MHC 同工型 (β-MHC)。鉴于 MHC-肌钙蛋白相互作用对心脏收缩功能的生理意义,我们假设心脏肌钙蛋白 T (cTnT) 突变对收缩功能的影响取决于肌节中存在的 MHC 同工型的类型。我们使用含有 FHC 热点 R92 突变的两种 cTnT 变体(R92L 或 R92Q)在 TG 小鼠心脏中针对 α-MHC 或 β-MHC 背景进行表达,从而检验了我们的假设。我们研究的一个发现是,当仅存在β-MHC 时,R92L 减弱了张力的长度依赖性增加,并消除了肌球蛋白细丝 Ca(2+) 敏感性的长度依赖性增加。此外,α-MHC 和 β-MHC 同工型对 R92 突变如何改变交联桥 (XB) 募集动力学有不同的影响。例如,当存在 β-MHC 时,R92L 或 R92Q 纤维中的 XB 募集速度更快,但当存在 α-MHC 时不受影响。R92Q 突变在存在 β-MHC 的情况下加速了 XB 脱离,但在存在 α-MHC 的情况下则不受影响。R92Q 影响 XB 应变对 XB 募集动力学的影响,而 R92L 则没有观察到这种影响。我们的发现对于理解 R92 突变对心脏表型的不同影响以及 MHC 同工型在决定 cTnT 突变结果方面的不同影响具有重要意义。