Department of Biochemistry, University of Alberta, Edmonton, Alberta T6G 2R3, Canada.
Randall Centre for Cell and Molecular Biophysics, King's College London, London SE1 1UL, United Kingdom.
ACS Chem Biol. 2022 Jun 17;17(6):1495-1504. doi: 10.1021/acschembio.2c00126. Epub 2022 Jun 1.
W7 is a sarcomere inhibitor that decreases the calcium sensitivity of force development in cardiac muscle. W7 binds to the interface of the regulatory domain of cardiac troponin C (cNTnC) and the switch region of troponin I (cTnI), decreasing the binding of cTnI to cNTnC, presumably by electrostatic repulsion between the -NH group of W7 and basic amino acids in cTnI. W7 analogs with a -CO tail are inactive. To evaluate the importance of the location of the charged -NH, we used a series of compounds W4, W6, W8, and W9, which have three less, one less, one more, and two more methylene groups in the tail region than W7. W6, W8, and W9 all bind tighter to cNTnC-cTnI chimera (cChimera) than W7, while W4 binds weaker. W4 and, strikingly, W6 have no effect on calcium sensitivity of force generation, while W8 and W9 decrease calcium sensitivity, but less than W7. The structures of the cChimera-W6 and cChimera-W8 complexes reveal that W6 and W8 bind to the same hydrophobic cleft as W7, with the aliphatic tail taking a similar route to the surface. NMR relaxation data show that internal flexibility in the tail of W7 is very limited. Alignment of the cChimera-W7 structure with the recent cryoEM structures of the cardiac sarcomere in the diastolic and systolic states reveals the critical location of the amino group. Small molecule induced structural changes can therefore affect the tightly balanced equilibrium between tethered components required for rapid contraction.
W7 是一种肌节抑制剂,可降低心肌中力发展的钙敏感性。W7 结合在心脏肌钙蛋白 C(cNTnC)的调节域和肌钙蛋白 I(cTnI)的开关区域的界面上,通过 W7 的-NH 基团与 cTnI 中的碱性氨基酸之间的静电排斥,降低 cTnI 与 cNTnC 的结合。带有-CO 尾的 W7 类似物没有活性。为了评估带电-NH 的位置的重要性,我们使用了一系列化合物 W4、W6、W8 和 W9,它们在尾部区域比 W7 少三个、一个、一个和两个亚甲基。W6、W8 和 W9 与 cNTnC-cTnI 嵌合体(cChimera)的结合比 W7 更紧密,而 W4 的结合较弱。W4 而且,引人注目,W6 对力生成的钙敏感性没有影响,而 W8 和 W9 降低了钙敏感性,但不如 W7。cChimera-W6 和 cChimera-W8 复合物的结构表明,W6 和 W8 与 W7 结合在相同的疏水性裂缝中,脂肪尾巴采用类似的途径到达表面。NMR 弛豫数据表明,W7 尾巴内的内部灵活性非常有限。将 cChimera-W7 结构与最近在舒张和收缩状态下心脏肌节的冷冻电镜结构对齐,揭示了氨基的关键位置。小分子诱导的结构变化因此可以影响快速收缩所需的束缚成分之间的紧密平衡的平衡。