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模拟上皮钙通道 TRPV6 失活的阻断。

Inactivation-mimicking block of the epithelial calcium channel TRPV6.

机构信息

Department of Nephrology and Hypertension and Department of Biomedical Research, University of Bern, Inselspital, Freiburgstrasse 15, CH-3010 Bern, Switzerland.

Institute of Biophysics, Johannes Kepler University Linz, Gruberstrasse 40, 4020 Linz, Austria.

出版信息

Sci Adv. 2020 Nov 27;6(48). doi: 10.1126/sciadv.abe1508. Print 2020 Nov.

Abstract

Epithelial calcium channel TRPV6 plays vital roles in calcium homeostasis, and its dysregulation is implicated in multifactorial diseases, including cancers. Here, we study the molecular mechanism of selective nanomolar-affinity TRPV6 inhibition by (4-phenylcyclohexyl)piperazine derivatives (PCHPDs). We use x-ray crystallography and cryo-electron microscopy to solve the inhibitor-bound structures of TRPV6 and identify two types of inhibitor binding sites in the transmembrane region: (i) modulatory sites between the S1-S4 and pore domains normally occupied by lipids and (ii) the main site in the ion channel pore. Our structural data combined with mutagenesis, functional and computational approaches suggest that PCHPDs plug the open pore of TRPV6 and convert the channel into a nonconducting state, mimicking the action of calmodulin, which causes inactivation of TRPV6 channels under physiological conditions. This mechanism of inhibition explains the high selectivity and potency of PCHPDs and opens up unexplored avenues for the design of future-generation biomimetic drugs.

摘要

上皮钙通道 TRPV6 在钙稳态中发挥着重要作用,其功能失调与多种疾病有关,包括癌症。在这里,我们研究了(4-苯基环己基)哌嗪衍生物(PCHPDs)对 TRPV6 具有纳米级亲和力的选择性抑制的分子机制。我们使用 X 射线晶体学和冷冻电镜解析了 TRPV6 的抑制剂结合结构,并在跨膜区域中鉴定出两种类型的抑制剂结合位点:(i)S1-S4 和孔结构域之间的调节性位点,通常被脂质占据;(ii)离子通道孔中的主要位点。我们的结构数据结合突变、功能和计算方法表明,PCHPDs 堵塞了 TRPV6 的开放孔道,并将通道转换为非传导状态,模拟了钙调蛋白的作用,钙调蛋白在生理条件下会使 TRPV6 通道失活。这种抑制机制解释了 PCHPDs 的高选择性和高效性,并为新一代仿生药物的设计开辟了未探索的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37ad/7695471/3cffb3f1202a/abe1508-F1.jpg

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