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Phosphate-Catalyzed Succinimide Formation from an NGR-Containing Cyclic Peptide: A Novel Mechanism for Deammoniation of the Tetrahedral Intermediate

机译:含NGR的环状肽的磷酸催化琥珀酰亚胺形成:四面体中间体脱氨的新机制

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摘要

Spontaneous deamidation in the Asn-Gly-Arg (NGR) motif that yields an isoAsp-Gly-Arg (isoDGR) sequence has recently attracted considerable attention because of the possibility of application to dual tumor targeting. It is well known that Asn deamidation reactions in peptide chains occur via the five-membered ring succinimide intermediate. Recently, we computationally showed by the B3LYP density functional theory method, that inorganic phosphate and the Arg side chain can catalyze the NGR deamidation using a cyclic peptide, c[CH2CO–NGRC]–NH2. In this previous study, the tetrahedral intermediate of the succinimide formation was assumed to be readily protonated at the nitrogen originating from the Asn side chain by the solvent water before the release of an NH3 molecule. In the present study, we found a new mechanism for the decomposition of the tetrahedral intermediate that does not require the protonation by an external proton source. The computational method is the same as in the previous study. In the new mechanism, the release of an NH3 molecule occurs after a proton exchange between the peptide and the phosphate and conformational changes. The rate-determining step of the overall reaction course is the previously reported first step, i.e., the cyclization to form the tetrahedral intermediate.
机译:最近,Asn-Gly-Arg(NGR)基序中的自发脱酰胺作用产生了isoAsp-Gly-Arg(isoDGR)序列,因为它有可能应用于双重肿瘤靶向,因此引起了相当大的关注。众所周知,肽链中的Asn脱酰胺反应是通过五元环琥珀酰亚胺中间体发生的。最近,我们通过B3LYP密度泛函理论方法计算表明,无机磷酸盐和Arg侧链可以使用环肽c [CH2CO–NGRC] –NH2催化NGR脱酰胺。在这项先前的研究中,琥珀酰亚胺形成的四面体中间体被认为在释放NH3分子之前,容易被溶剂水在来自Asn侧链的氮上质子化。在本研究中,我们发现了不需要外部质子源进行质子化的四面体中间体分解的新机理。计算方法与以前的研究相同。在新机制中,NH3分子的释放发生在肽和磷酸盐之间的质子交换和构象变化之后。整个反应过程的速率确定步骤是先前报道的第一步,即环化形成四面体中间体。

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