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多核铂类抗癌药物的膜相互作用机制。对细胞摄取的影响。

Mechanism of the membrane interaction of polynuclear platinum anticancer agents. Implications for cellular uptake.

作者信息

Liu Qin, Qu Yun, Van Antwerpen Rik, Farrell Nicholas

机构信息

Department of Chemistry, Virginia Commonwealth University, Richmond, Virginia 23284-2006, USA.

出版信息

Biochemistry. 2006 Apr 4;45(13):4248-56. doi: 10.1021/bi052517z.

Abstract

The interaction between phospholipids and polynuclear platinum drugs was studied as a mechanism model for cellular uptake of anticancer drugs. The interaction was studied by differential scanning calorimetry (DSC), 31P nuclear magnetic resonance spectroscopy (NMR), inductively coupled plasma optical emission spectroscopy (ICP-OES), and electrospray ionization mass spectrometry (ESI-MS). The transition temperature, enthalpy, and entropy of negatively charged phospholipids DPPS, DPPA, and DPPG were changed upon reaction with the trinuclear platinum complex {trans-PtCl(NH3)2}2mu-Pt(NH3)2{H2N(CH2)6NH2}24 (I, BBR3464) and the dinuclear analogue [{trans-PtCl(NH3)2}mu-{(NH2)(CH2)3NH2(CH2)4(NH2)}Cl3 (II, BBR3571). This suggests that these platinum complexes interacted not only with the phosphate headgroup but also with the region of the fatty acid tail of liposomes and finally changed the fluidity of the membrane. Both noncovalent (presumably electrostatic and hydrogen bonding) and covalent interactions were involved in the reactions of the negatively charged phospholipids DPPA, DPPS, and DPPG with the highly positively charged platinum complexes. In contrast, few differences were seen for the zwitterionic phospholipids DPPC and DPPE. The binding ratio of BBR3464 to DPPA liposomes was higher than the ratio of BBR3464 to DPPS liposomes, and similar differences were seen for BBR3571. The binding ratios of the platinum complexes to negatively charged phospholipids DPPA, DPPS, and DPPG were slightly lower in a 100 mM chloride solution than in a chloride-free solution. The binding of BBR3464 and BBR3571 with the liposomes was significantly stronger than that with cis-[PtCl2(NH3)2], cisplatin. ESI-MS confirmed that the products of the incubation of BBR3464 with DPPA and DPPS correspond to chloride displacement and formation of [Pt3(NH3)6{NH2(CH2)6NH2}2(DPPA)2]2+ (1) and [Pt3(NH3)6{NH2(CH2)6NH2}2(DPPS)2]2+ (2), respectively. Similar observations were made for BBR3571. 31P NMR spectra confirmed that the site of binding for DPPA was the phosphate oxygen, whereas for DPPS, a binding site of the nitrogen of the serine side chain is indicated. Noncovalent interactions were also confirmed by use of the analogue {Pt(NH3)3}2mu-Pt(NH3)2{H2N(CH2)6NH2}26 (III, 0,0,0/t,t,t). The implications of these results for the mechanism of cellular uptake of polynuclear platinum complexes are discussed.

摘要

研究了磷脂与多核铂类药物之间的相互作用,以此作为抗癌药物细胞摄取的机制模型。通过差示扫描量热法(DSC)、31P核磁共振波谱法(NMR)、电感耦合等离子体发射光谱法(ICP - OES)和电喷雾电离质谱法(ESI - MS)对该相互作用进行了研究。带负电荷的磷脂DPPS、DPPA和DPPG与三核铂配合物{trans - PtCl(NH3)2}2μ - Pt(NH3)2{H2N(CH2)6NH2}24(I,BBR3464)以及双核类似物[{trans - PtCl(NH3)2}μ - {(NH2)(CH2)3NH2(CH2)4(NH2)}Cl3(II,BBR3571)反应后,其转变温度、焓和熵发生了变化。这表明这些铂配合物不仅与磷酸头部基团相互作用,还与脂质体脂肪酸尾部区域相互作用,最终改变了膜的流动性。带负电荷的磷脂DPPA、DPPS和DPPG与带高正电荷的铂配合物反应涉及非共价(可能是静电和氢键)和共价相互作用。相比之下,两性离子磷脂DPPC和DPPE几乎没有差异。BBR3464与DPPA脂质体的结合率高于BBR3464与DPPS脂质体的结合率,BBR3571也有类似差异。在100 mM氯化物溶液中,铂配合物与带负电荷的磷脂DPPA、DPPS和DPPG的结合率略低于无氯化物溶液中的结合率。BBR3464和BBR3571与脂质体的结合明显强于与顺式[PtCl2(NH3)2](顺铂)的结合。ESI - MS证实,BBR3464与DPPA和DPPS孵育的产物分别对应于氯离子取代以及[Pt3(NH3)6{NH2(CH2)6NH2}2(DPPA)2]2 +(1)和[Pt3(NH3)6{NH2(CH2)6NH2}2(DPPS)2]2 +(2)的形成。对BBR3571也有类似观察结果。31P NMR光谱证实,DPPA的结合位点是磷酸氧,而对于DPPS,表明丝氨酸侧链氮的结合位点。使用类似物{Pt(NH3)3}2μ - Pt(NH3)2{H2N(CH2)6NH2}26(III,0,0,0/t,t,t)也证实了非共价相互作用。讨论了这些结果对多核铂配合物细胞摄取机制的影响。

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