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A structural and functional perspective into the mechanism of Ca2+-sensitizers that target the cardiac troponin complex

机译:从结构和功能角度探讨针对心肌肌钙蛋白复合物的Ca2 +增敏剂的作用机理

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摘要

The Ca2+ dependant interaction between troponin I (cTnI) and troponin C (cTnC) triggers contraction in heart muscle Heart failure is characterized by a decrease in cardiac output and compounds that increase the sensitivity of cardiac muscle to Ca2+ have therapeutic potential The Ca2+-sensitizer levosimendan targets cTnC however detailed understanding of its mechanism has been obscured by its instability In order to understand how this class of positive inotropes function we investigated the mode of action of two fluorine containing novel analogs of levosimendan 2 4-difluoro(1 1'-biphenyl) 4-yloxy acetic acid (dfbp-o) and 2 4'-difluoro(1 1'-biphenyl)-4 yl acetic acid (dfbp) The affinities of dfbp and dfbp o for the regulatory domain of cTnC were measured in the absence and presence of cTnI by NMR spectroscopy and dfbp o was found to bind more strongly than dfbp Dfbp o also increased the affinity of cTnI for cTnC Dfbp-o increased the Ca2+ sensitivity of demembranated cardiac trabeculae in a manner similar to levosimendan The high resolution NMR solution structure of the cTnC-cTnl-dfbp o ternary complex showed that dfbp o bound at the hydrophobic interface formed by cTnC and cTnI making critical interactions with residues such as Arg147 of cTnI In the absence of cTnI docking localized dfbp-o to the same position in the hydrophobic groove of cTnC The structural and functional data reveal that the levosimendan class of Ca2+ sensitizers work by binding to the regulatory domain of cTnC and stabilizing the pivotal aTcC-cTnI regulatory unit via a network of hydrophobic and electrostatic interactions in contrast to the destabilizing effects of antagonists such as W7 at the same interface (C) 2010 Elsevier Ltd All rights reserved
机译:肌钙蛋白I(cTnI)和肌钙蛋白C(cTnC)之间的Ca2 +依赖性相互作用触发心肌收缩心力衰竭的特征是心输出量降低,增加心肌对Ca2 +敏感性的化合物具有治疗潜力。Ca2 +-敏化剂左西孟旦靶向cTnC,但是对其不稳定性的详细了解已被其不稳定性所掩盖。为了了解此类正性变力剂如何发挥作用,我们研究了两种含氟的左西孟旦2 4-二氟(1 1'-联苯)新型类似物的作用方式。 4-酰氧基乙酸(dfbp-o)和2 4'-二氟(1 1'-联苯)-4基乙酸(dfbp)在不存在和不存在cTnC的情况下测量dfbp和dfbp o对cTnC调控域的亲和力核磁共振波谱法检测到cTnI的存在,发现dfbp o比dfbp Dfbp o结合更牢固,这也增加了cTnI对cTnC Dfbp-o的亲和力,增加了去膜心脏小梁的Ca2 +敏感性。类似于左西孟旦的方式cTnC-cTnl-dfbp三元复合物的高分辨率NMR溶液结构显示dfbp o结合在cTnC和cTnI形成的疏水界面上,与cTnI的Arg147等残基形成关键相互作用结构和功能数据表明,左西孟旦类Ca2 +增敏剂通过与cTnC的调节域结合并通过CnC的网络稳定关键的aTcC-cTnI调节单元而起作用。疏水性和静电相互作用与拮抗剂(例如W7)在同一界面处的去稳定化作用相反(C)2010 Elsevier Ltd保留所有权利

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