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金属离子与阳离子抗菌肽 LL-37 [hCAP(134-170)]的十二肽片段相互作用。

Metal-Ion Interactions with Dodecapeptide Fragments of Human Cationic Antimicrobial Protein LL-37 [hCAP(134-170)].

机构信息

Faculty of Chemistry, University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland.

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15218, United States.

出版信息

J Phys Chem B. 2022 Sep 15;126(36):6911-6921. doi: 10.1021/acs.jpcb.2c05200. Epub 2022 Sep 1.

Abstract

Isothermal titration calorimetry, circular dichroism (CD) techniques, and analysis were used to determine potential metal binding sites in human cationic antimicrobial protein (hCAP) corresponding to overlapping the dodecapeptide sequences of hCAP(134-170) referred to as LL-37. The correct antibacterial action of LL-37 is closely related to its established unique structure. Disturbances in the LL-37 structure (e.g., unwanted presence of metal ions) lead to a radical change in its biological functions. Five fragments of the LL-37 [hCAP(134-170)], namely, hCAP(134-145) (), hCAP(140-151) (), hCAP(146-157) (), hCAP(152-163) (), and hCAP(159-170) (), were taken into account and their affinity to Mn(II) and Zn(II) ions was rigorously assessed. We prove that only three of the investigated peptides (, , and ) are capable of forming thermodynamically stable complexes with metal ions. Additionally, based on density functional theory (DFT) calculations, we propose the most likely coordination modes of metal(II) to peptides as well as discuss the chemical nature of the interactions. Finally, we present the structural features of the strongest binding peptide, hCAP(159-170), responsible for the metal binding. The presented results provide important structural and thermodynamic information to understand the influence of some metal ions on the activity of hCAP(134-170).

摘要

等温滴定量热法、圆二色性(CD)技术和分析被用于确定人阳离子抗菌蛋白(hCAP)中与重叠的十二肽序列对应的潜在金属结合位点,该序列被称为 LL-37。LL-37 的正确抗菌作用与其独特的结构密切相关。LL-37 结构的紊乱(例如,不需要的金属离子存在)导致其生物学功能发生根本变化。LL-37 的五个片段[hCAP(134-170)],即 hCAP(134-145)()、hCAP(140-151)()、hCAP(146-157)()、hCAP(152-163)()和 hCAP(159-170)(),被考虑在内,并严格评估了它们对 Mn(II)和 Zn(II)离子的亲和力。我们证明,只有三种被研究的肽(、和)能够与金属离子形成热力学稳定的配合物。此外,基于密度泛函理论(DFT)计算,我们提出了金属(II)与肽最可能的配位模式,并讨论了相互作用的化学性质。最后,我们提出了负责金属结合的最强结合肽 hCAP(159-170)的结构特征。所提出的结果提供了重要的结构和热力学信息,以了解一些金属离子对 hCAP(134-170)活性的影响。

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