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静电力在基于心肌细丝的敏化剂作用机制中的作用。

The Role of Electrostatics in the Mechanism of Cardiac Thin Filament Based Sensitizers.

机构信息

Department of Biochemistry, University of Alberta, Edmonton, AB T6G 2R3, Canada.

Ministry of Health, Government of Alberta, Edmonton, AB T5J 1S6, Canada.

出版信息

ACS Chem Biol. 2020 Aug 21;15(8):2289-2298. doi: 10.1021/acschembio.0c00519. Epub 2020 Jul 22.

Abstract

Heart muscle contraction is regulated by calcium binding to cardiac troponin C. This induces troponin I (cTnI) switch region binding to the regulatory domain of troponin C (cNTnC), pulling the cTnI inhibitory region off actin and triggering muscle contraction. Small molecules targeting this cNTnC-cTnI interface have potential in the treatment of heart disease. Most of these have an aromatic core which binds to the hydrophobic core of cNTnC, and a polar and often charged 'tail'. The calmodulin antagonist W7 is unique in that it acts as calcium desensitizer. W7 binds to the interface of cNTnC and cTnI switch region and weakens cTnI binding, possibly by electrostatic repulsion between the positively charged terminal amino group of W7 and the positively charged RRVR region of cTnI. To evaluate the role of electrostatics, we synthesized A7, where the amino group of W7 was replaced with a carboxyl group. We determined the high-resolution solution NMR structure of A7 bound to a cNTnC-cTnI chimera. The structure shows that A7 does not change the overall conformation of the cNTnC-cTnI interface, and the naphthalene ring of A7 sits in the same hydrophobic pocket as that of W7, but the charged tail takes a different route to the surface of the complex, especially with respect to the position of the switch region of cTnI. We measured the affinities of A7 for cNTnC and the cNTnC-cTnI complex and that of the cTnI switch peptide for the cNTnC-A7 complex. We also compared the binding of W7 and A7 for two cNTnC-cTnI chimeras, differing in the presence or absence of the RRVR region of cTnI. A7 decreased the binding affinity of cTnI to cNTnC substantially less than W7 and bound more tightly to the more positively charged chimera. We tested the effects of W7 and A7 on the force-calcium relation of demembranated rat right ventricular trabeculae and demonstrated that A7 has a much weaker desensitization effect than W7. We also synthesized A6, which has one less methylene group on the hydrocarbon chain than A7. A6 did not affect binding of cTnI switch peptide nor change the calcium sensitivity of ventricular trabeculae. These results suggest that the negative inotropic effect of W7 may result from a combination of electrostatic repulsion and steric hindrance with cTnI.

摘要

心肌收缩受钙与心肌肌钙蛋白 C 结合的调节。这诱导肌钙蛋白 I(cTnI)开关区结合到肌钙蛋白 C 的调节域(cNTnC),将 cTnI 抑制区从肌动蛋白上拉开,并触发肌肉收缩。靶向该 cNTnC-cTnI 界面的小分子在心脏病治疗中有潜力。这些小分子大多数都有一个芳核,与 cNTnC 的疏水区结合,还有一个极性的、通常带电荷的“尾巴”。钙调蛋白拮抗剂 W7 的独特之处在于它是一种钙敏感受体拮抗剂。W7 结合到 cNTnC 和 cTnI 开关区的界面,削弱 cTnI 的结合,这可能是由于 W7 的带正电荷的末端氨基和 cTnI 的带正电荷的 RRVR 区之间的静电排斥。为了评估静电的作用,我们合成了 A7,其中 W7 的氨基被羧基取代。我们确定了 A7 与 cNTnC-cTnI 嵌合体结合的高分辨率溶液 NMR 结构。结构表明,A7 不改变 cNTnC-cTnI 界面的整体构象,并且 A7 的萘环位于与 W7 相同的疏水性口袋中,但带电的尾巴采取了与复合物表面不同的路径,尤其是相对于 cTnI 的开关区的位置。我们测量了 A7 对 cNTnC 和 cNTnC-cTnI 复合物的亲和力,以及 cTnI 开关肽对 cNTnC-A7 复合物的亲和力。我们还比较了 W7 和 A7 对两种 cNTnC-cTnI 嵌合体的结合,这两种嵌合体的区别在于是否存在 cTnI 的 RRVR 区。A7 使 cTnI 与 cNTnC 的结合亲和力降低的程度明显小于 W7,并且与带正电荷更多的嵌合体结合得更紧密。我们测试了 W7 和 A7 对去膜大鼠右心室小梁的力-钙关系的影响,并证明 A7 的脱敏作用比 W7 弱得多。我们还合成了 A6,其烃链上比 A7 少一个亚甲基。A6 既不影响 cTnI 开关肽的结合,也不改变心室小梁的钙敏感性。这些结果表明,W7 的负性肌力作用可能是静电排斥和与 cTnI 的空间位阻共同作用的结果。

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