Bernardi Francesca, Gaggelli Elena, Molteni Elena, Porciatti Elena, Valensin Daniela, Valensin Gianni
Department of Chemistry and NMR Centre, University of Siena, Siena 53100, Italy.
Biophys J. 2006 Feb 15;90(4):1350-61. doi: 10.1529/biophysj.105.074245. Epub 2005 Nov 18.
Cyclosporin A (CsA) is an important drug used to prevent graft rejection in organ transplantations. Its immunosuppressive activity is related to the inhibition of T-cell activation through binding with the proteins Cyclophilin (Cyp) and, subsequently, Calcineurin (CN). In the complex with its target (Cyp), CsA adopts a conformation with all trans peptide bonds and this feature is very important for its pharmacological action. Unfortunately, CsA can cause several side effects, and it can favor the excretion of calcium and magnesium. To evaluate the possible role of conformational effects induced by these two metal ions in the action mechanism of CsA, its complexes with Mg(II) and Ce(III) (the latter as a paramagnetic probe for calcium) have been examined by two-dimensional NMR and relaxation rate analysis. The conformations of the two complexes and of the free form have been determined by restrained molecular dynamics calculations based on the experimentally obtained metal-proton and interproton distances. The findings here ratify the formation of 1:1 complexes of CsA with both Mg(II) and Ce(III), with metal coordination taking place on carbonyl oxygens and substantially altering the peptide structure with respect to the free form, although the residues involved and the resulting conformational changes, including cis-trans conversion of peptide bonds, are different for the two metals.
环孢素A(CsA)是一种用于预防器官移植中移植物排斥反应的重要药物。其免疫抑制活性与通过与亲环蛋白(Cyp)以及随后的钙调神经磷酸酶(CN)结合来抑制T细胞活化有关。在与其靶标(Cyp)形成的复合物中,CsA呈现出所有肽键均为反式的构象,这一特征对其药理作用非常重要。不幸的是,CsA会引起多种副作用,并且会促进钙和镁的排泄。为了评估这两种金属离子诱导的构象效应在CsA作用机制中的可能作用,通过二维核磁共振和弛豫速率分析研究了其与Mg(II)和Ce(III)(后者作为钙的顺磁探针)的复合物。基于实验获得的金属-质子和质子间距离,通过受限分子动力学计算确定了两种复合物以及游离形式的构象。此处的研究结果证实了CsA与Mg(II)和Ce(III)均形成了1:1复合物,金属配位发生在羰基氧上,相对于游离形式,肽结构发生了显著改变,尽管两种金属所涉及的残基以及由此产生的构象变化(包括肽键的顺反转换)有所不同。