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影响铂类抗癌药物与磷脂结合的结构因素:电荷及磷酸钳形成的影响

Structural Factors Affecting Binding of Platinum Anticancer Agents with Phospholipids: Influence of Charge and Phosphate Clamp Formation.

作者信息

Gorle Anil Kumar, Zhang Junyong, Liu Qin, Berners-Price Susan J, Farrell Nicholas P

机构信息

Institute for Glycomics, Griffith University, Gold Coast Campus, Southport, Queensland, 4222, Australia.

School of Biomedical, Biomolecular & Chemical Sciences, University of Western Australia, Crawley, WA, 6009, Australia.

出版信息

Chemistry. 2018 Mar 26;24(18):4643-4652. doi: 10.1002/chem.201705822. Epub 2018 Feb 28.

Abstract

We report a detailed NMR and DFT study of the interaction of polynuclear platinum anticancer agents (PPCs) with negatively charged phospholipids as a mechanism for their cellular uptake. The reactions of fully N-labelled [{trans-PtCl(NH ) } (μ-trans-Pt(NH ) {NH (CH ) NH } )] ( N-1, 1,0,1/t,t,t) and the dinuclear [{trans-PtCl(NH ) } {μ-H N(CH ) NH }] ( N-2, 1,1/t,t) with the sodium salt of 1,2-dihexanoyl-sn-glycero-3-phosphate (DHPA) were studied at 298 K, pH ≈5.4, by [ H, N] HSQC 2D NMR spectroscopy. Both N-1 and N-2 form an initial mono-adduct in which the DHPA is coordinated via the phosphate O atom. For the dinuclear N-2, coordination of a second DHPA, in two different orientations, leads to two conformers of the bifunctional adduct. For N-1, coordination of the second DHPA allows the central {PtN } coordination unit to bind electrostatically to two additional DHPA molecules via phosphate clamp interactions, in an extended network. For both 1,0,1/t,t,t (1) and 1,1/t,t (2), equilibrium conditions are obtained more slowly (>35 h) than in the presence of phosphate (12 h) and in each case the rate constant for the first step of DHPA binding (k ) is about 8 times higher than that for phosphate, whereas the rate constants for the reverse reactions are quite similar. Reaction of N-1 with the sodium salt of 1,2-dihexanoyl-sn-glycero-3-[phosphatidyl-l-serine] (DHPS) showed only minor adduct formation via coordination to the N-donor atom of the phosphoserine group.

摘要

我们报告了一项关于多核铂抗癌剂(PPCs)与带负电荷的磷脂相互作用的详细核磁共振(NMR)和密度泛函理论(DFT)研究,以此作为其细胞摄取机制。在298 K、pH≈5.4条件下,通过[¹H,¹⁵N] HSQC二维核磁共振光谱研究了完全¹⁵N标记的[{反式-PtCl(NH₃)₂}₂(μ-反式-Pt(NH₃)₂{NH₂(CH₂)₂NH₂})](¹⁵N-1,1,0,1/t,t,t)和双核[{反式-PtCl(NH₃)₂}₂{μ-H₂N(CH₂)₂NH₂}](¹⁵N-2,1,1/t,t)与1,2-二己酰基-sn-甘油-3-磷酸(DHPA)钠盐的反应。¹⁵N-1和¹⁵N-2均形成初始单加合物,其中DHPA通过磷酸根O原子配位。对于双核¹⁵N-2,第二个DHPA以两种不同取向配位,导致双功能加合物的两种构象。对于¹⁵N-1,第二个DHPA的配位使中心{PtN₄}配位单元通过磷酸钳相互作用在扩展网络中与另外两个DHPA分子静电结合。对于1,0,1/t,t,t(1)和1,1/t,t(2),达到平衡条件的速度比存在磷酸盐时(12 h)更慢(>35 h),并且在每种情况下,DHPA结合第一步的速率常数(k₁)约为磷酸盐的8倍,而逆反应的速率常数相当相似。¹⁵N-1与1,2-二己酰基-sn-甘油-3-[磷脂酰-l-丝氨酸](DHPS)钠盐的反应仅显示通过与磷酸丝氨酸基团的N供体原子配位形成少量加合物。

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