von Ahsen O, Lim J H, Caspers P, Martin F, Schönfeld H J, Rassow J, Pfanner N
Institut für Biochemie und Molekularbiologie, Hermann-Herder-Strasse 7, Universität Freiburg, D-79104, Germany.
J Mol Biol. 2000 Mar 31;297(3):809-18. doi: 10.1006/jmbi.2000.3574.
Cyclophilins accelerate slow protein folding reactions in vitro by catalyzing the cis/trans isomerization of peptidyl-prolyl bonds. Cyclophilins were reported to be involved in a variety of cellular functions, including the promotion of protein folding by use of the substrate mouse dihydrofolate reductase (DHFR). The interaction of cyclophilin with DHFR has only been studied under limited conditions so far, not taking into account that native DHFR exists in equilibrium with a non-native late-folding intermediate. Here we report a systematic analysis of catalysis of DHFR folding by cyclophilins. The specific ligand methotrexate traps DHFR in its native state, permitting a specific analysis of the action of cyclophilin on both denatured DHFR with non-native prolyl bonds and denatured DHFR with all-native prolyl bonds. Cyclophilins from yeast and Neurospora crassa as well as the related prolyl isomerase b from Escherichia coli promote the folding of different forms of DHFR to the enzymatically active form, demonstrating the generality of cyclophilin-catalyzed folding of DHFR. The slow equilibrium between the late-folding intermediate and native DHFR suggests that prolyl isomerization may be required for this final phase of conversion to native DHFR. However, by reversible trapping of the intermediate, we analyze the slow interconversion between native and late-folding conformations in the backward and forward reactions and show a complete independence of cyclophilin. We conclude that cyclophilin catalyzes folding of DHFR, but surprisingly not in the last slow folding step.
亲环蛋白通过催化肽基 - 脯氨酰键的顺反异构化来加速体外蛋白质的缓慢折叠反应。据报道,亲环蛋白参与多种细胞功能,包括利用底物小鼠二氢叶酸还原酶(DHFR)促进蛋白质折叠。到目前为止,亲环蛋白与DHFR的相互作用仅在有限的条件下进行了研究,未考虑到天然DHFR与非天然晚期折叠中间体处于平衡状态。在此,我们报告了对亲环蛋白催化DHFR折叠的系统分析。特异性配体甲氨蝶呤将DHFR捕获在其天然状态,从而能够对亲环蛋白对具有非天然脯氨酰键的变性DHFR和具有全天然脯氨酰键的变性DHFR的作用进行特异性分析。来自酵母和粗糙脉孢菌的亲环蛋白以及来自大肠杆菌的相关脯氨酰异构酶b促进不同形式的DHFR折叠成酶活性形式,证明了亲环蛋白催化DHFR折叠的普遍性。晚期折叠中间体与天然DHFR之间的缓慢平衡表明,脯氨酰异构化可能是转化为天然DHFR这一最后阶段所必需的。然而,通过可逆捕获中间体,我们分析了正向和反向反应中天然构象与晚期折叠构象之间的缓慢相互转化,并表明亲环蛋白完全独立。我们得出结论,亲环蛋白催化DHFR的折叠,但令人惊讶的是,不是在最后一个缓慢的折叠步骤中。