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金属离子在镍辅助肽键水解中的双重催化作用。

Dual catalytic role of the metal ion in nickel-assisted peptide bond hydrolysis.

作者信息

Podobas Ewa Izabela, Bonna Arkadiusz, Polkowska-Nowakowska Agnieszka, Bal Wojciech

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5a, 02-106 Warsaw, Poland.

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5a, 02-106 Warsaw, Poland..

出版信息

J Inorg Biochem. 2014 Jul;136:107-14. doi: 10.1016/j.jinorgbio.2014.03.008. Epub 2014 Mar 25.

Abstract

In our previous research we demonstrated the sequence specific peptide bond hydrolysis of the R1-(Ser/Thr)-Xaa-His-Zaa-R2 in the presence of Ni(II) ions. The molecular mechanism of this reaction includes an N-O acyl shift of the R1 group from the Ser/Thr amine to the side chain hydroxyl group of this amino acid. The proposed role of the Ni(II) ion is to establish favorable geometry of the reacting groups. In this work we aimed to find out whether the crucial step of this reaction--the formation of the intermediate ester--is reversible. For this purpose we synthesized the test peptide Ac-QAASSHEQA-am, isolated and purified its intermediate ester under acidic conditions, and reacted it, alone, or in the presence of Ni(II) or Cu(II) ions at pH 8.2. We found that in the absence of either metal ion the ester was quickly and quantitatively (irreversibly) rearranged to the original peptide. Such reaction was prevented by either metal ion. Using Cu(II) ions as CD spectroscopic probe we showed that the metal binding structures of the ester and the final amine are practically identical. Molecular calculations of Ni(II) complexes indicated the presence of steric strain in the substrate, distorting the complex structure from planarity, and the absence of steric strain in the reaction products. These results demonstrated the dual catalytic role of the Ni(II) ion in this mechanism. Ni(II) facilitates the acyl shift by setting the peptide geometry, and prevents the reversal of the acyl shift, by stabilizing subsequent reaction products.

摘要

在我们之前的研究中,我们证明了在Ni(II)离子存在下,R1-(Ser/Thr)-Xaa-His-Zaa-R2的序列特异性肽键水解。该反应的分子机制包括R1基团从Ser/Thr胺向该氨基酸侧链羟基的N-O酰基转移。Ni(II)离子的作用是建立反应基团的有利几何结构。在这项工作中,我们旨在确定该反应的关键步骤——中间酯的形成——是否可逆。为此,我们合成了测试肽Ac-QAASSHEQA-am,在酸性条件下分离并纯化了其中间酯,并使其单独反应,或在pH 8.2的Ni(II)或Cu(II)离子存在下反应。我们发现,在没有任何一种金属离子的情况下,酯会迅速且定量地(不可逆地)重排为原始肽。任何一种金属离子都能阻止这种反应。使用Cu(II)离子作为圆二色光谱探针,我们表明酯和最终胺的金属结合结构实际上是相同的。Ni(II)配合物的分子计算表明,底物中存在空间应变,使配合物结构偏离平面性,而反应产物中不存在空间应变。这些结果证明了Ni(II)离子在该机制中的双重催化作用。Ni(II)通过设定肽的几何结构促进酰基转移,并通过稳定后续反应产物来防止酰基转移的逆转。

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