Kinetic, thermodynamic, and ab initio insights of AsnGly isomerisation as a ticking time bomb for protein integrity

IF 5.9 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Communications Chemistry Pub Date : 2024-12-19 DOI:10.1038/s42004-024-01374-1
Fruzsina Pilhál, Imre Jákli, Ernő Keszei, András Láng, András Perczel
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Abstract

Under physiological conditions in peptides or proteins, the -AsnGly- motif autonomously rearranges within hours/days to β-Asp and α-Asp containing sequence, via succinimide intermedier. The formation of the succinimide is the rate-limiting step, with a strong pH and temperature dependence. We found that Arg(+) at the (n + 2) position (relative to Asn in the nth position) favors isomerisation by forming a transition-state like structure, whereas Glu(-) disfavors isomerisation by adopting a β-turn like conformer. Four to six key intermediate structures (proton transfer, transition-state formation, ring-closure and ammonia-release steps) have been identified along the intrinsic reaction coordinate pathways. We explain how, under the right conditions, the N-atom of a backbone amide, hardly a potent nucleophile, can nevertheless initiate isomerisation. The new data are useful for the design of self-structuring motifs, more resistant protein backbones, antibodies, etc. AsnGly motif within peptides or proteins can rearrange to β-Asp and α-Asp by asparagine deamidation and isomerisation via a succinimide intermediate, however, the mechanism underlying this transition remains underexplored. Here, the authors present a quantitative kinetic model for the overall isomerisation reaction, show that for peptides containing both charged and neutral (n + 2) amino acid residues, geometry plays a more important role in their isomerisation reaction rates, and they also identify key reaction sub-steps within succinimide formation.

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作为蛋白质完整性定时炸弹的AsnGly异构化的动力学,热力学和从头算见解
在肽或蛋白质的生理条件下,- asngly -基序在数小时或数天内通过琥珀酰亚胺中间体自动重排到含有β-Asp和α-Asp的序列。琥珀酰亚胺的形成是限速步骤,具有很强的pH和温度依赖性。我们发现位于(n + 2)位置的Arg(+)(相对于位于第n位的Asn)通过形成类似过渡态的结构而有利于异构化,而Glu(-)通过采用类似β的构象而不利于异构化。在本征反应的配位路径上已经确定了4 ~ 6个关键的中间结构(质子转移、过渡态形成、环闭合和氨释放步骤)。我们解释了在合适的条件下,主干酰胺的n原子(几乎不是强效亲核试剂)是如何引发异构化的。这些新数据对设计自结构基序、更耐药的蛋白骨架、抗体等具有重要意义。肽或蛋白质中的AsnGly基序可以通过琥珀酰亚胺中间体的天冬酰胺脱酰胺和异构化而重排为β-Asp和α-Asp,然而,这种转变的机制尚不清楚。在这里,作者提出了一个整体异构化反应的定量动力学模型,表明对于含有带电和中性(n + 2)氨基酸残基的肽,几何形状在其异构化反应速率中起着更重要的作用,并且他们还确定了琥珀酰亚胺形成过程中的关键反应子步骤。
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来源期刊
Communications Chemistry
Communications Chemistry Chemistry-General Chemistry
CiteScore
7.70
自引率
1.70%
发文量
146
审稿时长
13 weeks
期刊介绍: Communications Chemistry is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the chemical sciences. Research papers published by the journal represent significant advances bringing new chemical insight to a specialized area of research. We also aim to provide a community forum for issues of importance to all chemists, regardless of sub-discipline.
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