Department of Bioengineering, University of Washington, Seattle, WA 98195-7962, USA.
Am J Physiol Heart Circ Physiol. 2012 Oct 1;303(7):H863-70. doi: 10.1152/ajpheart.00395.2012. Epub 2012 Aug 3.
Calcium sensitivity of the force-pCa relationship depends strongly on sarcomere length (SL) in cardiac muscle and is considered to be the cellular basis of the Frank-Starling law of the heart. SL dependence may involve changes in myofilament lattice spacing and/or myosin crossbridge orientation to increase probability of binding to actin at longer SLs. We used the L48Q cardiac troponin C (cTnC) variant, which has enhanced Ca(2+) binding affinity, to test the hypotheses that the intrinsic properties of cTnC are important in determining 1) thin filament binding site availability and responsiveness to crossbridge activation and 2) SL dependence of force in cardiac muscle. Trabeculae containing L48Q cTnC-cTn lost SL dependence of the Ca(2+) sensitivity of force. This occurred despite maintaining the typical SL-dependent changes in maximal force (F(max)). Osmotic compression of preparations at SL 2.0 μm with 3% dextran increased F(max) but not pCa(50) in L48Q cTnC-cTn exchanged trabeculae, whereas wild-type (WT)-cTnC-cTn exchanged trabeculae exhibited increases in both F(max) and pCa(50). Furthermore, crossbridge inhibition with 2,3-butanedione monoxime at SL 2.3 μm decreased F(max) and pCa(50) in WT cTnC-cTn trabeculae to levels measured at SL 2.0 μm, whereas only F(max) was decreased with L48Q cTnC-cTn. Overall, these results suggest that L48Q cTnC confers reduced crossbridge dependence of thin filament activation in cardiac muscle and that changes in the Ca(2+) sensitivity of force in response to changes in SL are at least partially dependent on properties of thin filament troponin.
钙敏感性与力-pCa 关系强烈依赖于心肌的肌节长度 (SL),被认为是心脏的弗兰克-斯塔林定律的细胞基础。SL 依赖性可能涉及肌丝晶格间距和/或肌球蛋白横桥方向的变化,以增加在较长 SL 时与肌动蛋白结合的概率。我们使用 L48Q 型心肌肌钙蛋白 C (cTnC) 变体,该变体具有增强的 Ca(2+) 结合亲和力,以检验以下假设:cTnC 的固有特性对于确定 1) 薄丝结合位点的可用性和对横桥激活的反应性以及 2) 心肌力的 SL 依赖性具有重要作用。含有 L48Q cTnC-cTn 的横桥失去了力的 Ca(2+) 敏感性的 SL 依赖性。尽管保持了最大力 (F(max)) 的典型 SL 依赖性变化,但仍会发生这种情况。用 3%葡聚糖对 SL 为 2.0 μm 的标本进行渗透压压缩,增加了 L48Q cTnC-cTn 交换的横桥抑制,增加了 F(max),但不增加 pCa(50);而 WT-cTnC-cTn 交换的横桥抑制增加了 F(max)和 pCa(50)。此外,在 SL 为 2.3 μm 时用 2,3-丁二酮单肟抑制横桥,WT cTnC-cTn 横桥抑制降低了 F(max)和 pCa(50),达到在 SL 为 2.0 μm 时测量的水平,而 L48Q cTnC-cTn 则仅降低了 F(max)。总的来说,这些结果表明,L48Q cTnC 赋予了心肌中薄丝激活的横桥依赖性降低,并且力的 Ca(2+) 敏感性响应 SL 变化的变化至少部分依赖于薄丝肌钙蛋白的特性。