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利用小分子荧光分子探针研究天然态、中间态、去折叠态和复折叠态牛血清白蛋白中疏水亚域 IIA。

Exploring hydrophobic subdomain IIA of the protein bovine serum albumin in the native, intermediate, unfolded, and refolded states by a small fluorescence molecular reporter.

机构信息

Department of Chemistry, University of Calcutta, 92 A. P. C. Road, Calcutta 700009, India.

出版信息

J Phys Chem B. 2010 May 13;114(18):6183-96. doi: 10.1021/jp100004t.

Abstract

A simple intramolecular charge transfer (ICT) compound, 5-(4-dimethylamino-phenyl)-penta-2,4-dienoic acid methyl ester (DPDAME), has been documented to be a potential molecular reporter for probing microheterogeneous environments of a model transport protein bovine serum albumin (BSA) using spectroscopic techniques. Meteoric modifications to the emission profile of DPDAME upon addition of BSA come out to be a result of its binding to hydrophobic subdomain IIA. The highly polarity-sensitive ICT emission of DPDAME is found to be a proficient extrinsic molecular reporter for efficient mapping of native, intermediate, unfolded, and refolded states of the protein. Experimental data coupled with a reinforcing support from theoretical simulation using CHARMM22 software confirm the binding site of the probe to be the subdomain IIA of BSA, while FRET study reveals a remarkably close approach of our extrinsic molecular reporter to Trp-212 (in domain IIA): the distance between DPDAME and Trp-212 is 1.437 nm. The caliber of DPDAME as an external fluorescence marker also extends to the depiction of protein-surfactant (BSA-SDS) interaction to commendable fruition. Additionally, the protective action of small amounts of SDS on urea-denatured protein is documented by polarity-sensitive ICT emission of the probe. The present study also reflects the enhancement of the stability of BSA with respect to chemically induced denaturation by urea as a result of binding to the probe DPDAME.

摘要

一种简单的分子内电荷转移(ICT)化合物,5-(4-二甲氨基苯基)戊-2,4-二烯酸甲酯(DPDAME),已被证明是一种潜在的分子报告子,可用于使用光谱技术探测模型转运蛋白牛血清白蛋白(BSA)的微异质环境。BSA 加入后 DPDAME 发射谱的流星变化是由于其与疏水性亚结构域 IIA 的结合所致。发现 DPDAME 的高极性敏感 ICT 发射是一种有效的外部分子报告子,可有效地映射蛋白质的天然、中间、展开和重折叠状态。实验数据与使用 CHARMM22 软件的理论模拟相结合,证实了探针的结合位点是 BSA 的亚结构域 IIA,而 FRET 研究表明我们的外部分子报告子与 Trp-212(在域 IIA)非常接近:DPDAME 和 Trp-212 之间的距离为 1.437nm。DPDAME 作为外部荧光标记物的作用范围还扩展到了对蛋白质-表面活性剂(BSA-SDS)相互作用的描述,取得了令人称道的成果。此外,探针的极性敏感 ICT 发射还记录了少量 SDS 对脲变性蛋白的保护作用。本研究还反映了与探针 DPDAME 结合导致的 BSA 对化学诱导变性的脲稳定性增强。

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