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金(I)-膦-N-杂环化合物:在 HIVNCp7 锌指的 C 末端的生物活性和特定(配体)相互作用。

Gold(I)-phosphine-N-heterocycles: biological activity and specific (ligand) interactions on the C-terminal HIVNCp7 zinc finger.

机构信息

Institute of Chemistry, University of Campinas-UNICAMP , P.O. Box 6154, CEP 13083-970, Campinas, São Paulo, Brazil.

出版信息

Inorg Chem. 2013 Oct 7;52(19):11280-7. doi: 10.1021/ic401535s. Epub 2013 Sep 24.

Abstract

The syntheses and the characterization by chemical analysis, (1)H and (31)P NMR spectroscopy, and mass spectrometry of a series of linear triphenylphosphine gold(I) complexes with substituted N-heterocycle ligands (L), (PPh3)Au(I)(L), is reported. The reaction of (PPh3)Au(L) (L = Cl(-) or substituted N- heterocyclic pyridine) with the C-terminal (Cys3His) finger of HIVNCp7 shows evidence by mass spectrometry (ESI-MS) and (31)P NMR spectroscopy of a long-lived {(PPh3)Au}-S-peptide species resulting from displacement of the chloride or pyridine ligand by zinc-bound cysteine with concomitant displacement of Zn(2+). In contrast, reactions with the Cys2His2 finger-3 of the Sp1 transcription factor shows significantly reduced intensities of {(PPh3)Au} adducts. The results suggest the possibility of systematic (electronic, steric) variations of "carrier" group PR3 and "leaving" group L as well as the nature of the zinc finger in modulation of biological activity. The cytotoxicity, cell cycle signaling effects, and cellular accumulation of the series are also reported. All compounds display cytotoxicity in the micromolar range upon 96 h continuous exposure to human tumor cells. The results may have relevance for the reported inhibition of viral load in simian virus by the gold(I) drug auranofin.

摘要

本文报道了一系列具有取代杂环配体的线性三苯基膦金(I)配合物(PPh3)Au(I)(L)的合成及通过化学分析、(1)H 和(31)P NMR 光谱和质谱进行的表征。[(PPh3)Au(L)] +(L = Cl-或取代的 N-杂环吡啶)与 HIVNCp7 的 C 末端(Cys3His)指尖的反应通过质谱(ESI-MS)和(31)P NMR 光谱证明了在锌结合半胱氨酸取代氯或吡啶配体的同时置换 Zn(2+)后,形成了长寿命的{(PPh3)Au}-S-肽物种。相比之下,与 Sp1 转录因子的 Cys2His2 指尖-3 的反应导致{(PPh3)Au}加合物的强度显着降低。结果表明,“载体”基团 PR3 和“离去”基团 L 以及锌指的性质在调节生物活性方面存在系统(电子、空间)变化的可能性。还报告了该系列化合物的细胞毒性、细胞周期信号转导效应和细胞积累。所有化合物在 96 h 连续暴露于人类肿瘤细胞后均显示出微摩尔范围内的细胞毒性。这些结果可能与金(I)药物金诺芬报道的抑制病毒载量有关。

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