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环孢素同型体特异性抑制亲环素的结构基础。

Structural Basis for Cyclosporin Isoform-Specific Inhibition of Cyclophilins from .

机构信息

Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134Verona, Italy.

Department of Crystallography and Structural Biology, Institute of Physical Chemistry Rocasolano (IQFR), CSIC, Serrano 119, 28006Madrid, Spain.

出版信息

ACS Infect Dis. 2023 Feb 10;9(2):365-377. doi: 10.1021/acsinfecdis.2c00566. Epub 2023 Jan 18.

Abstract

Cyclosporin (CsA) has antiparasite activity against the human pathogen . A possible mechanism of action involves CsA binding to cyclophilins, although much remains to be understood. Herein, we characterize the functional and structural properties of a conserved (TgCyp23) and a more divergent (TgCyp18.4) cyclophilin isoform from . While TgCyp23 is a highly active cis-trans-prolyl isomerase (PPIase) and binds CsA with nanomolar affinity, TgCyp18.4 shows low PPIase activity and is significantly less sensitive to CsA inhibition. The crystal structure of the TgCyp23:CsA complex was solved at the atomic resolution showing the molecular details of CsA recognition by the protein. Computational and structural studies revealed relevant differences at the CsA-binding site between TgCyp18.4 and TgCyp23, suggesting that the two cyclophilins might have distinct functions in the parasite. These studies highlight the extensive diversification of TgCyps and pave the way for antiparasite interventions based on selective targeting of cyclophilins.

摘要

环孢素(CsA)对人体病原体具有抗寄生虫活性。一种可能的作用机制涉及 CsA 与亲环素结合,尽管仍有许多需要了解。在此,我们描述了来自 的保守(TgCyp23)和更具差异(TgCyp18.4)亲环素同工型的功能和结构特性。虽然 TgCyp23 是一种高度活跃的顺式-反式脯氨酰异构酶(PPIase),并以纳摩尔亲和力结合 CsA,但 TgCyp18.4 显示出低 PPIase 活性,并且对 CsA 抑制的敏感性显着降低。TgCyp23:CsA 复合物的晶体结构以原子分辨率解决,显示了蛋白质识别 CsA 的分子细节。计算和结构研究揭示了 TgCyp18.4 和 TgCyp23 之间 CsA 结合位点的相关差异,表明这两种亲环素在寄生虫中可能具有不同的功能。这些研究强调了 TgCyps 的广泛多样化,并为基于亲环素选择性靶向的抗寄生虫干预铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6974/9926490/af4de2998f9e/id2c00566_0002.jpg

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