Zn(II) Affinity and Structural Conformations of 2His-2Cys Zinc Finger-Like Motif Peptide Determined by Ion Mobility–Mass Spectrometry and PM6 Molecular Modeling

IF 1.9 3区 化学 Q3 BIOCHEMICAL RESEARCH METHODS
Richmond A. Adomako, Michael B. Owusu, Rebekah K. Oberdick, Kwabena Senyah, Perfect Asare, Riccardo Spezia, Laurence A. Angel
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Abstract

This study focuses on investigating the conformational structure and zinc(II) affinity of a zinc finger-like motif (ZFM) peptide with the sequence acetyl-His1-Cys2-Gly3-Pro4-Gly5-His6-Cys7, where bold highlights the potential zinc(II) binding sites. Zinc fingers are crucial protein motifs known for their high specificity and affinity for zinc ions. The ZFM peptide's sequence contains the 2His-2Cys zinc-binding sites similar to those in natural zinc finger proteins but without the hydrophobic core, making it a valuable model for studying zinc(II)–peptide interactions. Previous research on related peptides showed that collision cross sections and B3LYP modeling predicted that the His-2Cys-carboxyl terminus coordination of zinc(II) was more stable than the 2His-2Cys. Employing a comprehensive approach integrating ion mobility–mass spectrometry and theoretical modeling techniques, various zinc(II) binding modes of the ZFM have been thoroughly compared to ascertain their influence on the competitive threshold collision-induced dissociation method for measuring the relative gas-phase Zn(II) affinity of the ZFM peptide. The measured Zn(II) affinity of ZFM is greater than those measured recently for two peptides with similar primary structures, acetyl-His1-Cys2-Gly3-Pro4-Gly5-Gly6-Cys7 and acetyl-Asp1-His2-Gly3-Pro4-Gly5-Gly6-Cys7, indicating the preference for the His1-Cys2-His6-Cys7 side groups for coordinating zinc(II) over the His-2Cys-carboxyl terminus or Asp-His-Cys-carboxyl terminus in these related heptapeptides.

离子迁移-质谱和PM6分子模拟研究2His-2Cys锌指状基序肽的Zn(II)亲和力和结构构象
本研究的重点是研究具有乙酰基- his1 - cys2 - gly3 - pro4 - gly5 - his6 - cys7序列的锌指状基序(ZFM)肽的构象结构和锌(II)亲和力,其中黑体突出了潜在的锌(II)结合位点。锌指是一种重要的蛋白质基序,以其对锌离子的高特异性和亲和力而闻名。ZFM肽序列包含与天然锌指蛋白相似的2His-2Cys锌结合位点,但没有疏水核心,使其成为研究锌(II)-肽相互作用的有价值模型。先前对相关肽的研究表明,碰撞截面和B3LYP模型预测锌(II)的his - 2cys -羧基端配位比2His-2Cys更稳定。采用离子迁移质谱和理论建模技术相结合的综合方法,对ZFM的各种锌(II)结合模式进行了全面比较,以确定它们对竞争阈值碰撞诱导解离法测量ZFM肽相对气相锌(II)亲和力的影响。ZFM对锌(II)的亲和力高于最近测定的两个具有相似初级结构的肽,乙酰基- his1 - cys2 - gly3 - pro4 - gly5 - gly6 - cys7和乙酰基- asp1 - his2 - gly3 - pro4 - gly5 - gly6 - cys7,这表明在这些相关的七肽中,His1-Cys2-His6-Cys7侧基对锌(II)的配位优于his - 2cys -羧基端或asp - his - cys -羧基端。
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来源期刊
Journal of Mass Spectrometry
Journal of Mass Spectrometry 化学-光谱学
CiteScore
5.10
自引率
0.00%
发文量
84
审稿时长
1.5 months
期刊介绍: The Journal of Mass Spectrometry publishes papers on a broad range of topics of interest to scientists working in both fundamental and applied areas involving the study of gaseous ions. The aim of JMS is to serve the scientific community with information provided and arranged to help senior investigators to better stay abreast of new discoveries and studies in their own field, to make them aware of events and developments in associated fields, and to provide students and newcomers the basic tools with which to learn fundamental and applied aspects of mass spectrometry.
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