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首页> 外文期刊>Journal of Fluorescence >Fluorescence study on Interactions of alpha-Crystallin with the Molten Globule State of 1, 4-beta-D-Glucan Glucanohydrolase from Thermomonospora sp induced by guanidine hydrochloride
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Fluorescence study on Interactions of alpha-Crystallin with the Molten Globule State of 1, 4-beta-D-Glucan Glucanohydrolase from Thermomonospora sp induced by guanidine hydrochloride

机译:盐酸胍诱导α-晶体与热单孢菌1,4-β-D-葡聚糖葡聚糖水解酶熔融球态相互作用的荧光研究

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In this paper, the interaction between alpha- crystallin and molten globule structure of 1,4-beta-D-Glucan Glucohydrolase (TSC) from an alkalothermophilic Thermomonospora sp. was investigated mainly by fluorescence quenching spectra, circular dichroism and three dimensional fluorescence spectra under simulative physiological conditions. Denaturation studies using GdnCl indicated that TSC folds through a partially folded state that resembles molten globule at 1.8 M GdnCl. The chaperone activity of alpha- crystallin was employed to study refolding of TSC. Here we studied the refolding of GdnCl denatured TSC from its molten globule state (TSC-m complex) in the presence and absence of alpha-crystallin to elucidate the molecular mechanism of chaperone-mediated in vitro folding. Our results, based on intrinsic tryptophan fluorescence and ANS binding studies, suggest that alpha-crystallin formed a complex with a putative intermediate molten globule - like intermediate in the refolding pathway of TSC. Reconstitution of the active TSC was observed on cooling the alpha-crystallin aEuro cent TSC -m complex to 4A degrees C. Addition of alpha-crystallin to the molten globule - like intermediate of TSC (TSC-m complex) complex initiated the refolding of TSC with 69 % recovery of the biological activity of the enzyme.
机译:在本文中,α-结晶蛋白与来自嗜碱嗜热单孢菌种的1,4-β-D-葡聚糖葡糖水解酶(TSC)的熔融小球结构之间的相互作用。在模拟生理条件下,主要通过荧光猝灭光谱,圆二色性和三维荧光光谱进行了研究。使用GdnCl进行的变性研究表明,TSC折叠通过类似于1.8 M GdnCl的熔融小球的部分折叠状态。使用α-结晶蛋白的伴侣活性来研究TSC的重折叠。在这里,我们研究了在存在和不存在α-晶状蛋白的情况下,GdnCl变性的TSC从其熔融小球状状态(TSC-m络合物)的重折叠,以阐明分子伴侣介导的体外折叠的分子机制。我们基于固有色氨酸荧光和ANS结合研究的结果表明,α-晶状体蛋白与推定的中间熔融小球(如TSC重折叠途径中的中间产物)形成了复合物。在将α-晶体蛋白aEurocent TSC-m络合物冷却至4A℃时,观察到了活性TSC的重构。将α-晶体蛋白添加到熔融的小球-TSC中间体(TSC-m络合物)中引发了TSC的重折叠酶的生物活性恢复了69%。

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