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利用波长选择性荧光法研究牛α-乳白蛋白变性球蛋白状态下色氨酸的组织和动态:与天然状态和变性状态的比较。

Organization and dynamics of tryptophans in the molten globule state of bovine alpha-lactalbumin utilizing wavelength-selective fluorescence approach: comparisons with native and denatured states.

机构信息

Centre for Cellular and Molecular Biology, Council of Scientific and Industrial Research, Uppal Road, Hyderabad 500 007, India.

出版信息

Biochem Biophys Res Commun. 2010 Apr 16;394(4):1082-6. doi: 10.1016/j.bbrc.2010.03.130. Epub 2010 Mar 24.

DOI:10.1016/j.bbrc.2010.03.130
PMID:20346348
Abstract

Bovine alpha-lactalbumin (BLA) is known to be present in molten globule form in its apo-state (i.e., Ca(2+) depleted state). We explored the organization and dynamics of the functionally important tryptophan residues of BLA in native, molten globule and denatured states utilizing the wavelength-selective fluorescence approach. We observed red edge excitation shift (REES) of 7 nm for the tryptophans in native BLA. Interestingly, we show here that BLA tryptophans exhibit considerable REES (8 nm) in its molten globule state. Taken together, these results indicate that tryptophan residues in BLA in native as well as molten globule states experience motionally restricted environment. We further show that even the denatured form of BLA exhibits a modest REES of 3 nm, indicating that the tryptophans are shielded from bulk solvent, even when denatured, due to the presence of residual structure around tryptophan(s). This is further supported by wavelength-dependent changes in fluorescence anisotropy and lifetime for BLA tryptophans. These novel results constitute one of the first reports of REES in the molten globule state of proteins, and could provide vital insight into the role of tryptophans in the function of BLA in its molten globule state in particular, and other partially ordered proteins in general.

摘要

牛α-乳白蛋白(BLA)已知在其脱辅基状态(即 Ca(2+) 耗尽状态)下以熔融球蛋白的形式存在。我们利用波长选择性荧光法探索了 BLA 中功能重要的色氨酸残基在天然态、熔融态和变性态下的结构和动态。我们观察到天然 BLA 中的色氨酸发生了 7nm 的红移激发边缘位移(REES)。有趣的是,我们在这里表明 BLA 色氨酸在其熔融球蛋白状态下表现出相当大的 REES(8nm)。这些结果表明,BLA 中的色氨酸残基在天然态和熔融球蛋白态下都经历了运动受限的环境。我们进一步表明,即使是 BLA 的变性形式也表现出适度的 REES 为 3nm,这表明即使变性,由于色氨酸周围存在残留结构,色氨酸仍受到溶剂的屏蔽。这进一步得到了 BLA 色氨酸的荧光各向异性和寿命随波长变化的支持。这些新的结果构成了蛋白质熔融球蛋白状态下 REES 的首批报告之一,特别是对 BLA 中色氨酸在其熔融球蛋白状态下的功能以及其他部分有序蛋白质的功能提供了重要的见解。

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