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与环孢素A及N-甲基-4-[(E)-2-丁烯基]-4,4-二甲基苏氨酸环孢素A复合的亲环蛋白A的晶体结构

Crystal structures of cyclophilin A complexed with cyclosporin A and N-methyl-4-[(E)-2-butenyl]-4,4-dimethylthreonine cyclosporin A.

作者信息

Ke H, Mayrose D, Belshaw P J, Alberg D G, Schreiber S L, Chang Z Y, Etzkorn F A, Ho S, Walsh C T

机构信息

Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel HIll 27599.

出版信息

Structure. 1994 Jan 15;2(1):33-44. doi: 10.1016/s0969-2126(00)00006-x.

Abstract

BACKGROUND

Cyclophilin (CyP) is a ubiquitious intracellular protein that binds the immunosuppressive drug cyclosporin A (CsA). CyP-CsA forms a ternary complex with calcineurin and thereby inhibits T-cell activation. CyP also has enzymatic activity, catalyzing the cis-trans isomerization of peptidyl-prolyl amide bonds.

RESULTS

We have determined the structure of human cyclophilin A (CyPA) complexed with CsA to 2.1 A resolution. We also report here the structure of CyPA complexed with an analog of CsA, CsA (MeBm2t1-CsA), which binds less well to CyPA, but has increased immunosuppressive activity. Comparison of these structures with previously determined structures of unligated CyPA and CyPA complexed with a candidate substrate for the isomerase activity, the dipeptide AlaPro, reveals that subtle conformational changes occur in both CsA and CyPA on complex formation.

CONCLUSIONS

MeBm2t1-CsA binds to CyPA in an essentially similar manner to CsA. The 100-fold weaker affinity of its binding may be attributable to the close contact between MeBmt1 and the active site residue Ala103 of CyPA, which causes small conformational changes in both protein and drug. One change, the slight movement of MeLeu6 in CsA relative to MeBm2t1-CsA, may be at least partially responsible for the higher affinity of the CyPA-MeBm2t1-CsA complex for calcineurin. Our comparison between CyPA-CsA and CyPA-AlaPro suggests that CsA is probably not an analog of the natural substrate, confirming that the catalytic activity of CyPA is not related to its role in immunosuppression either structurally or functionally.

摘要

背景

亲环蛋白(CyP)是一种普遍存在的细胞内蛋白,可与免疫抑制药物环孢素A(CsA)结合。CyP-CsA与钙调神经磷酸酶形成三元复合物,从而抑制T细胞活化。CyP还具有酶活性,可催化肽基 - 脯氨酰胺键的顺反异构化。

结果

我们已将与人亲环蛋白A(CyPA)复合的CsA的结构解析到2.1埃分辨率。我们在此还报告了与CsA类似物CsA(MeBm2t1-CsA)复合的CyPA的结构,该类似物与CyPA的结合较弱,但免疫抑制活性增强。将这些结构与先前确定的未结合的CyPA以及与异构酶活性候选底物二肽AlaPro复合的CyPA的结构进行比较,结果表明在复合物形成时,CsA和CyPA中均发生了细微的构象变化。

结论

MeBm2t1-CsA与CyPA的结合方式与CsA基本相似。其结合亲和力弱100倍可能归因于MeBmt1与CyPA的活性位点残基Ala103之间的紧密接触,这导致蛋白质和药物均发生小的构象变化。其中一个变化是CsA中的MeLeu6相对于MeBm2t1-CsA的轻微移动,这可能至少部分解释了CyPA-MeBm2t1-CsA复合物对钙调神经磷酸酶的更高亲和力。我们对CyPA-CsA和CyPA-AlaPro的比较表明,CsA可能不是天然底物的类似物,这证实了CyPA的催化活性在结构或功能上与其免疫抑制作用无关。

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