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金属连接方式决定羧肽酶A的抑制作用。

Mode of Metal Ligation Governs Inhibition of Carboxypeptidase A.

作者信息

Amador Balderas Jorge Antonio, Beierlein Frank, Horn Anselm H C, Volkenandt Senta, Völcker Leon, Mokhtari Nikoo, Ndongue Jules Cesar Epee, Imhof Petra

机构信息

Computer Chemistry Center, Department for Chemistry and Pharmacy, Friedrich-Alexander University Erlangen Nürnberg (FAU), Nägelsbachstraße 25, 91052 Erlangen, Germany.

Erlangen National High Performance Computing Center (NHR@FAU), Friedrich-Alexander University Erlangen Nürnberg (FAU), Martensstraße 1, 91058 Erlangen, Germany.

出版信息

Int J Mol Sci. 2024 Dec 23;25(24):13725. doi: 10.3390/ijms252413725.

Abstract

Carboxypeptidase is a Zn-dependent protease that specifically recognises and hydrolyses peptides with a hydrophobic side chain at the C-terminal residue. According to hydrolysis mechanisms proposed in the literature, catalysis requires a water molecule to be close to the Zn ion so as to be activated as a nucleophile. Among small molecules that resemble the slowly hydrolysed Gly-Tyr peptide, which have been previously designed as inhibitors and characterised structurally, a variant with the terminal amino acid in a D-configuration has been the most effective. Our molecular dynamics simulations of carboxypeptidase complexed with different variants of those inhibitor ligands as well as variants of the Gly-Tyr peptide show that the strength of the inhibitory effect is not related to the binding strength of the ligand. Our data rather support an earlier notion that the inhibition is, at least partially, due to blocking a coordination site at the Zn ion by the ligand coordinating the metal ion in a bidentate fashion.

摘要

羧肽酶是一种锌依赖性蛋白酶,它能特异性识别并水解在C末端残基带有疏水侧链的肽。根据文献中提出的水解机制,催化作用需要一个水分子靠近锌离子,以便被激活成为亲核试剂。在先前被设计为抑制剂并进行结构表征的、类似于缓慢水解的甘氨酰 - 酪氨酸肽的小分子中,末端氨基酸为D构型的变体最为有效。我们对羧肽酶与那些抑制剂配体的不同变体以及甘氨酰 - 酪氨酸肽变体形成的复合物进行的分子动力学模拟表明,抑制作用的强度与配体的结合强度无关。我们的数据反而支持了一个较早的观点,即这种抑制作用至少部分是由于配体以双齿方式配位金属离子从而阻断了锌离子的一个配位位点所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06db/11677197/a15c746becb4/ijms-25-13725-g001.jpg

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