Froehlich E, Mandeville J S, Jennings C J, Sedaghat-Herati R, Tajmir-Riahi H A
Département de Chimie-Biologie, Université du Quebec à Trois-Rivières, C. P. 500, Trois-Rivières, Québec, G9A 5H7, Canada.
J Phys Chem B. 2009 May 14;113(19):6986-93. doi: 10.1021/jp9011119.
Dendrimers are synthetic, highly branched, spherical macromolecules with nanometer dimensions and potential applications in DNA and drug delivery systems. Human serum albumin (HSA) is a major transporter for delivering several endogenous compounds and drugs in vivo. The aim of this study was to examine the interaction of human serum albumin with several dendrimers such as mPEG-PAMAM (G3), mPEG-PAMAM (G4), and PAMAM (G4) at physiological conditions, using constant protein concentration and various dendrimer compositions. FTIR, UV-visible, CD, and fluorescence spectroscopic methods were used to analyze macromolecule binding mode, the binding constant and the effects of dendrimers complexation on HSA stability and conformation. Structural analysis showed that dendrimers bind HSA via polypeptide polar groups (hydrophilic) with number of bound polymer (n) 1.08 (mPEG-PAMAM-G3), 1.50 (mPEG-PAMAM-G4), and 0.96 (PAMAM-G4). The overall binding constants estimated were of KmPEG-G3=1.3 (+/-0.2)x10(4) M(-1), KmPEG-G4=2.2 (+/-0.4)x10(4) M(-1), and KPAMAM-G4=2.6 (+/-0.5)x10(4) M(-1). HSA conformation was altered by dendrimers with a major reduction of alpha-helix and increase in random coil and turn structures suggesting a partial protein unfolding.
树枝状聚合物是合成的、高度分支的球形大分子,尺寸在纳米级别,在DNA和药物递送系统中有潜在应用。人血清白蛋白(HSA)是体内递送多种内源性化合物和药物的主要转运蛋白。本研究的目的是在生理条件下,使用恒定的蛋白质浓度和不同的树枝状聚合物组成,研究人血清白蛋白与几种树枝状聚合物如甲氧基聚乙二醇-聚酰胺-胺(G3)、甲氧基聚乙二醇-聚酰胺-胺(G4)和聚酰胺-胺(G4)之间的相互作用。采用傅里叶变换红外光谱(FTIR)、紫外可见光谱、圆二色光谱(CD)和荧光光谱方法分析大分子的结合模式、结合常数以及树枝状聚合物络合对HSA稳定性和构象的影响。结构分析表明,树枝状聚合物通过多肽极性基团(亲水性)与HSA结合,结合的聚合物数量(n)分别为1.08(甲氧基聚乙二醇-聚酰胺-胺-G3)、1.50(甲氧基聚乙二醇-聚酰胺-胺-G4)和0.96(聚酰胺-胺-G4)。估算的总体结合常数分别为KmPEG-G3 = 1.3(±0.2)×10⁴ M⁻¹、KmPEG-G4 = 2.2(±0.4)×10⁴ M⁻¹和KPAMAM-G4 = 2.6(±0.5)×10⁴ M⁻¹。树枝状聚合物改变了HSA的构象,α-螺旋显著减少,无规卷曲和转角结构增加,表明蛋白质部分展开。