Department of Veterinary and Comparative Anatomy, Pharmacology and Physiology, Washington State University, Pullman, WA-99164, USA.
J Physiol. 2013 Mar 1;591(5):1217-34. doi: 10.1113/jphysiol.2012.243394. Epub 2012 Dec 3.
Abstract Cardiac troponin T (cTnT) has a highly acidic extended N-terminus, the physiological role of which remains poorly understood. To decipher the physiological role of this unique region, we deleted specific regions within the N-terminus of mouse cTnT (McTnT) to create McTnT1-44 and McTnT45-74 proteins. Contractile function and dynamic force-length measurements were made after reconstituting the McTnT deletion proteins into detergent-skinned cardiac papillary fibres harvested from non-transgenic mice that expressed α-tropomyosin (Tm). To further understand how the functional effects of the N-terminus of cTnT are modulated by Tm isoforms, McTnT deletion proteins were reconstituted into detergent-skinned cardiac papillary fibres harvested from transgenic mice that expressed both α- and β-Tm. McTnT1-44, but not McTnT45-74, attenuated maximal activation of the thin filament. Myofilament Ca(2+) sensitivity, as measured by pCa50 (-log of [Ca(2+)]free required for half-maximal activation), decreased in McTnT1-44 (α-Tm) fibres. The desensitizing effect of McTnT1-44 on pCa50 was ablated in β-Tm fibres. McTnT45-74 enhanced pCa50 in both α- and β-Tm fibres, with β-Tm having a bigger effect. The Hill coefficient of tension development was significantly attenuated by McTnT45-74, suggesting an effect on thin-filament cooperativity. The rate of cross-bridge (XB) detachment and the strained XB-mediated impact on other XBs were augmented by McTnT1-44 in β-Tm fibres. The magnitude of the length-mediated recruitment of XBs was attenuated by McTnT1-44 in β-Tm fibres. Our data demonstrate that the 1-44 region of McTnT is essential for maximal activation, whereas the cardiac-specific 45-74 region of McTnT is essential for augmenting cooperativity. Moreover, our data show that α- and β-Tm isoforms have divergent effects on McTnT deletion mutant's ability to modulate cardiac thin-filament activation and Ca(2+) sensitivity. Our results not only provide the first explicit evidence for the existence of two distinct functional regions within the N-terminus of cTnT, but also offer mechanistic insights into the divergent physiological roles of these regions in mediating cardiac contractile activation.
心肌肌钙蛋白 T(cTnT)具有高度酸性的延伸 N 端,其生理作用仍知之甚少。为了解析这个独特区域的生理作用,我们对小鼠 cTnT(McTnT)的 N 端进行了特定区域的缺失,构建了 McTnT1-44 和 McTnT45-74 蛋白。将 McTnT 缺失蛋白重新构建到非转基因小鼠表达的α-原肌球蛋白(Tm)的去污剂处理的心肌乳头状纤维中,然后进行收缩功能和动态力-长度测量。为了进一步了解 cTnT N 端的功能效应如何被 Tm 同工型调节,将 McTnT 缺失蛋白重新构建到同时表达α-和β-Tm 的转基因小鼠的去污剂处理的心肌乳头状纤维中。与 McTnT45-74 不同,McTnT1-44 减弱了薄丝的最大激活。通过 pCa50(半最大激活所需的[Ca2+] 自由的负对数)测量的肌球蛋白 Ca2+敏感性在 McTnT1-44(α-Tm)纤维中降低。在β-Tm 纤维中,McTnT1-44 对 pCa50 的脱敏作用被消除。McTnT45-74 增加了 α-和β-Tm 纤维中的 pCa50,β-Tm 的影响更大。张力发展的 Hill 系数因 McTnT45-74 而显著减弱,提示对薄丝协同性的影响。在β-Tm 纤维中,McTnT1-44 增加了交联桥(XB)的分离速率和受应变的 XB 对其他 XB 的影响。McTnT1-44 减弱了β-Tm 纤维中交联桥的长度介导募集。我们的数据表明,McTnT 的 1-44 区域对于最大激活是必需的,而 McTnT 的心脏特异性 45-74 区域对于增强协同性是必需的。此外,我们的数据表明,α-和β-Tm 同工型对 McTnT 缺失突变体调节心脏薄丝激活和 Ca2+敏感性的能力具有不同的影响。我们的结果不仅首次提供了 cTnT N 端存在两个不同功能区域的明确证据,而且还为这些区域在介导心脏收缩激活中的不同生理作用提供了机制上的见解。