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首页> 外文期刊>Protein and peptide letters >Comparing the Interaction of Cyclophosphamide Monohydrate to Human Serum Albumin as Opposed to Holo-Transferrin by Spectroscopic and Molecular Modeling Methods: Evidence for Allocating the Binding Site
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Comparing the Interaction of Cyclophosphamide Monohydrate to Human Serum Albumin as Opposed to Holo-Transferrin by Spectroscopic and Molecular Modeling Methods: Evidence for Allocating the Binding Site

机译:通过光谱和分子建模方法比较环磷酰胺一水合物与人血清白蛋白相互作用的全铁转铁蛋白的相互作用:分配结合位点的证据。

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The interaction between cyclophosphamide monohydrate with human serum albumin (HSA) and human serum transferrin (hTf) was studied with UV absorption, fluorescence and circular dichroism (CD) spectroscopies as well as molecular modeling. Based on the fluorescence quenching results, it was determined that HSA and hTf had two classes of apparent binding constants and binding sites at physiological conditions. The K-SV1, K-SV2, n(1) and n(2) values for HSA were found to be 8.6x10(8) Lmol(-1), 6.34x10(8) Lmol(-1), 0.7 and 0.8, respectively, and the corresponding results for hTf were 6.08x10(7) Lmol(-1), 4.65x10(7) Lmol(-1), 1.3 and 2.6, respectively. However, the binding affinity of cyclophosphamide monohydrate to HSA was more significant than to hTf. Circular dichroism results demonstrated that the binding of cyclophosphamide to HSA and hTf induced secondary changes in the structure and that the alpha-helix content became altered into beta sheet, turn and random coil forms. The participation of tyrosyl and tryptophan residues of proteins was also estimated in the drug-HSA and hTf complexes by synchronous fluorescence. The micro-environment of the HSA and hTf fluorophores was transferred to hydrophobic and hydrophilic conditions, respectively. The distance r between donor and acceptor was obtained by the Forster energy according to fluorescence resonance energy transfer (FRET) and found to be 1.84 nm and 1.73 nm for HSA and hTf, respectively. This confirmed the existence of static quenching for both proteins in the presence of cyclophosphamide monohydrate. Site marker competitive displacement experiments demonstrated that cyclophosphamide bound with high affinity to Site II, sub-domain IIIA of HSA, and for hTf, the C-lobe constituted the binding site. Furthermore, a study of molecular modeling showed that cyclophosphamide situated in domain II in HSA was bound through hydrogen bonding with Arg 257 and Ser 287, and that cyclophosphamide was situated in the C-lobe in hTf, presenting hydrogen bonding with Asp 625 and Arg 453. The modeling data thus confirmed the experimental results.
机译:通过紫外吸收,荧光和圆二色性(CD)光谱学以及分子模型研究了环磷酰胺一水合物与人血清白蛋白(HSA)和人血清转铁蛋白(hTf)之间的相互作用。根据荧光猝灭结果,确定HSA和hTf在生理条件下具有两类表观结合常数和结合位点。发现HSA的K-SV1,K-SV2,n(1)和n(2)值分别为8.6x10(8)Lmol(-1),6.34x10(8)Lmol(-1),0.7和0.8 ,分别,和hTf的相应结果分别为6.08x10(7)Lmol(-1),4.65x10(7)Lmol(-1),1.3和2.6。但是,一水合环磷酰胺对HSA的结合亲和力比对hTf更重要。圆二色性结果表明,环磷酰胺与HSA和hTf的结合诱导了结构的二次变化,并且α-螺旋含量变成了β片,匝和无规卷曲形式。还通过同步荧光估计了药物-HSA和hTf复合物中蛋白质的酪氨酰和色氨酸残基的参与。 HSA和hTf荧光团的微环境分别转移到疏水和亲水条件下。根据荧光共振能量转移(FRET),通过福斯特能量获得供体和受体之间的距离r,发现HSA和hTf分别为1.84 nm和1.73 nm。这证实了在环磷酰胺一水合物存在下两种蛋白质均存在静态淬灭。位点标记竞争性置换实验表明,环磷酰胺与HSA的位点II,亚域IIIA具有高亲和力,而对于hTf,C瓣构成了结合位点。此外,分子模型研究表明,位于HSA区域II中的环磷酰胺通过与Arg 257和Ser 287的氢键结合,而环磷酰胺位于hTf的C-叶中,表现为与Asp 625和Arg 453的氢键。因此,建模数据证实了实验结果。

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