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Amide hydrogens reveal a temperature-dependent structural transition that enhances site-II Ca2+-binding affinity in a C-domain mutant of cardiac troponin C

机译:酰胺氢显示依赖温度的结构转变可增强心肌肌钙蛋白C的C结构域突变体中的位点II Ca2 +结合亲和力

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摘要

The hypertrophic cardiomyopathy-associated mutant D145E, in cardiac troponin C (cTnC) C-domain, causes generalised instability at multiple sites in the isolated protein. As a result, structure and function of the mutant are more susceptible to higher temperatures. Above 25 °C there are large, progressive increases in N-domain Ca2+-binding affinity for D145E but only small changes for the wild-type protein. NMR-derived backbone amide temperature coefficients for many residues show a sharp transition above 30–40 °C, indicating a temperature-dependent conformational change that is most prominent around the mutated EF-hand IV, as well as throughout the C-domain. Smaller, isolated changes occur in the N-domain. Cardiac skinned fibres reconstituted with D145E are more sensitive to Ca2+ than fibres reconstituted with wild-type, and this defect is amplified near body-temperature. We speculate that the D145E mutation destabilises the native conformation of EF-hand IV, leading to a transient unfolding and dissociation of helix H that becomes more prominent at higher temperatures. This creates exposed hydrophobic surfaces that may be capable of binding unnaturally to a variety of targets, possibly including the N-domain of cTnC when it is in its open Ca2+-saturated state. This would constitute a potential route for propagating signals from one end of TnC to the other.
机译:心肌肌钙蛋白C(cTnC)C域中的肥厚型心肌病相关突变D145E在分离的蛋白质的多个位点引起普遍的不稳定性。结果,突变体的结构和功能更容易受到较高温度的影响。在25℃以上,对D145E的N域Ca 2 + 结合亲和力有较大的递进增加,而对野生型蛋白只有很小的改变。 NMR衍生的许多残基的主链酰胺温度系数在30–40°C以上显示出急剧的跃迁,表明温度相关的构象变化在EF手IV以及整个C结构域中最为突出。 N域中会发生较小的孤立更改。用D145E重建的心脏皮肤纤维比用野生型重建的纤维对Ca 2 + 更敏感,并且这种缺陷在体温附近被放大。我们推测,D145E突变破坏了EF手IV的天然构象,从而导致了螺旋H的瞬时解折叠和解离,而螺旋H在较高温度下变得更加突出。这样会形成暴露的疏水表面,该表面可能能够非自然地与多种靶标结合,而当靶标处于开放的Ca 2 + 饱和状态时,可能包括cTnC的N结构域。这将构成一条将信号从TnC一端传播到另一端的潜在途径。

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