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评估非免疫抑制性环孢菌素类似物靶向弓形虫亲环素的潜力:结构研究的见解。

Evaluating the potential of non-immunosuppressive cyclosporin analogs for targeting Toxoplasma gondii cyclophilin: Insights from structural studies.

机构信息

Department of Biotechnology, University of Verona, Verona, Italy.

Department of Crystallography and Structural Biology, Institute of Physical Chemistry Blas Cabrera (IQF), CSIC, Madrid, Spain.

出版信息

Protein Sci. 2024 Oct;33(10):e5157. doi: 10.1002/pro.5157.

Abstract

Toxoplasmosis persists as a prevalent disease, facing challenges from parasite resistance and treatment side effects. Consequently, identifying new drugs by exploring novel protein targets is essential for effective intervention. Cyclosporin A (CsA) possesses antiparasitic activity against Toxoplasma gondii, with cyclophilins identified as possible targets. However, CsA immunosuppressive nature hinders its use as an antitoxoplasmosis agent. Here, we evaluate the potential of three CsA derivatives devoid of immunosuppressive activity, namely, NIM811, Alisporivir, and dihydrocyclosporin A to target a previously characterized cyclophilin from Toxoplasma gondii (TgCyp23). We determined the X-ray crystal structures of TgCyp23 in complex with the three analogs and elucidated their binding and inhibitory properties. The high resolution of the structures revealed the precise positioning of ligands within the TgCyp23 binding site and the details of protein-ligand interactions. A comparison with the established ternary structure involving calcineurin indicates that substitutions at position 4 in CsA derivatives prevent calcineurin binding. This finding provides a molecular explanation for why CsA analogs can target Toxoplasma cyclophilins without compromising the human immune response.

摘要

弓形虫病仍然是一种流行疾病,面临着寄生虫耐药性和治疗副作用的挑战。因此,通过探索新的蛋白质靶标来寻找新的药物对于有效的干预至关重要。环孢素 A(CsA)对刚地弓形虫具有抗寄生虫活性,亲环蛋白被认为是可能的靶标。然而,CsA 的免疫抑制性质阻碍了其作为抗弓形虫药物的应用。在这里,我们评估了三种无免疫抑制活性的 CsA 衍生物,即 NIM811、Alisporivir 和二氢环孢素 A,以靶向先前从刚地弓形虫(TgCyp23)中鉴定出的一种亲环蛋白。我们测定了 TgCyp23 与这三种类似物结合的 X 射线晶体结构,并阐明了它们的结合和抑制特性。结构的高分辨率揭示了配体在 TgCyp23 结合位点内的精确定位以及蛋白质-配体相互作用的细节。与涉及钙调神经磷酸酶的已建立的三元结构的比较表明,CsA 衍生物在位置 4 的取代阻止了钙调神经磷酸酶的结合。这一发现为 CsA 类似物如何能够靶向弓形虫亲环蛋白而不影响人类免疫反应提供了分子解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12c3/11418636/1c40072342cd/PRO-33-e5157-g002.jpg

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