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神经元钙传感器 1 的 EF 手对二价阳离子 Pb2+、Mn2+和 Hg2 的纳米摩尔亲和力。

Nanomolar affinity of EF-hands in neuronal calcium sensor 1 for bivalent cations Pb2+, Mn2+, and Hg2.

机构信息

Department of Chemistry and Biochemistry, Florida International University, Miami, FL 33199, USA.

Biomolecular Sciences Institute, Florida International University, Miami 33199, USA.

出版信息

Metallomics. 2022 Jul 8;14(7). doi: 10.1093/mtomcs/mfac039.

DOI:10.1093/mtomcs/mfac039
PMID:35657675
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9611292/
Abstract

Abiogenic metals Pb and Hg are highly toxic since chronic and/or acute exposure often leads to severe neuropathologies. Mn2+ is an essential metal ion but in excess can impair neuronal function. In this study, we address in vitro the interactions between neuronal calcium sensor 1 (NCS1) and divalent cations. Results showed that non-physiological ions (Pb2+ and Mn2+) bind to EF-hands in NCS1 with nanomolar affinity and lower equilibrium dissociation constant than the physiological Ca2+ ion. (Kd, Pb2+ = 7.0 ± 1.0 nM; Kd, Mn2+ = 34.0 ± 6.0 nM; K). Native ultra-high resolution mass spectrometry (FT-ICR MS) and trapped ion mobility spectrometry-mass spectrometry (nESI-TIMS-MS) studies provided the NCS1-metal complex compositions-up to four Ca2+ or Mn2+ ions and three Pb2+ ions (M⋅Pb1-3Ca1-3, M⋅Mn1-4Ca1-2, and M⋅Ca1-4) were observed in complex-and similarity across the mobility profiles suggests that the overall native structure is preserved regardless of the number and type of cations. However, the non-physiological metal ions (Pb2+, Mn2+, and Hg2+) binding to NCS1 leads to more efficient quenching of Trp emission and a decrease in W30 and W103 solvent exposure compared to the apo and Ca2+ bound form, although the secondary structural rearrangement and exposure of hydrophobic sites are analogous to those for Ca2+ bound protein. Only Pb2+ and Hg2+ binding to EF-hands leads to the NCS1 dimerization whereas Mn2+ bound NCS1 remains in the monomeric form, suggesting that other factors in addition to metal ion coordination, are required for protein dimerization.

摘要

非生物成因的金属 Pb 和 Hg 具有高度毒性,因为慢性和/或急性暴露通常会导致严重的神经病理学。Mn2+ 是一种必需的金属离子,但过量会损害神经元功能。在这项研究中,我们在体外研究了神经元钙传感器 1(NCS1)和二价阳离子之间的相互作用。结果表明,非生理离子(Pb2+ 和 Mn2+)以纳摩尔亲和力与 NCS1 的 EF 手结合,其平衡解离常数低于生理 Ca2+ 离子。(Kd,Pb2+ = 7.0 ± 1.0 nM;Kd,Mn2+ = 34.0 ± 6.0 nM;K)。天然超高分辨率质谱(FT-ICR MS)和俘获离子淌度谱-质谱(nESI-TIMS-MS)研究提供了 NCS1-金属复合物的组成-多达四个 Ca2+或 Mn2+ 离子和三个 Pb2+ 离子(M⋅Pb1-3Ca1-3、M⋅Mn1-4Ca1-2 和 M⋅Ca1-4)在复合物中观察到,并且迁移率谱的相似性表明,无论阳离子的数量和类型如何,整体天然结构都得以保留。然而,非生理金属离子(Pb2+、Mn2+ 和 Hg2+)与 NCS1 结合导致色氨酸发射的猝灭效率更高,并且 W30 和 W103 溶剂暴露减少,与 apo 和 Ca2+ 结合形式相比,尽管二级结构重排和疏水性位点暴露类似于 Ca2+ 结合蛋白。只有 Pb2+ 和 Hg2+ 与 EF 手结合导致 NCS1 二聚化,而 Mn2+ 结合的 NCS1 仍保持单体形式,这表明除了金属离子配位之外,其他因素也是蛋白质二聚化所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8138/9611292/0898dea66eef/mfac039fig1g.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8138/9611292/0898dea66eef/mfac039fig1g.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8138/9611292/0898dea66eef/mfac039fig1g.jpg

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