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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Study on effect of lipophilic curcumin on sub-domain IIA site of human serum albumin during unfolded and refolded states: A synchronous fluorescence spectroscopic study
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Study on effect of lipophilic curcumin on sub-domain IIA site of human serum albumin during unfolded and refolded states: A synchronous fluorescence spectroscopic study

机译:亲和性姜黄素对人血清白蛋白亚结构域IIA折叠和折叠状态的影响研究:同步荧光光谱研究

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Curcumin having pharmaceutical application as anti-oxidant, anti-inflammatory and anti-carcinogenic drug necessitates studying interaction of this molecule with native, unfolded and refolded state of human serum albumin (HSA), carrier protein in the blood. We proposed a simultaneous static and dynamic fluorescence quenching mechanism operating in the complex formation between HSA and curcumin. Location of curcumin in the close proximity of tryptophan with respect to tyrosine was further evident from the observation of two fold increase in rate of depletion of SFS intensity for tryptophan with respect to tyrosine in HSA in SFS spectrum. Alteration of SFS spectral peak position, electronic absorbance, fluorescence intensity and lifetime suggested chemical denaturation by urea expectedly unfold the protein molecule in the absence and presence of curcumin. Denatured HSA had similar fluorescence peak position and lifetime to that of l-tryptophan in the polar environment. During unfolding of HSA the spectral change of tyrosine and tryptophan was resolved through synchronous fluorescence spectra at two different Δλ in absence and presence of curcumin. It is found that curcumin remained bound to unfolded state of HSA and facilitated the process by pushing tryptophan moiety to more polar environment in the unfolded state. Dilution of the denatured protein by phosphate buffer reversibly refolded the sub-domain IIA, by also recovering fluorescence lifetime loss, but it was slow in the presence of curcumin. k _q values indicate that curcumin-HSA complex is formed in the unfolded and refolded states as observed for native state.
机译:姜黄素作为抗氧化剂,抗炎药和抗癌药具有药物应用,因此有必要研究该分子与人血清白蛋白(HSA),血液中载体蛋白的天然,未折叠和再折叠状态的相互作用。我们提出了在HSA和姜黄素之间的复杂形成中同时发生的静态和动态荧光猝灭机制。姜黄素相对于酪氨酸在色氨酸附近的位置进一步从在SFS光谱中HSA中色氨酸相对于酪氨酸的SFS强度耗竭速率增加了两倍的观察中更加明显。 SFS谱峰位置,电子吸光度,荧光强度和寿命的变化表明,在不存在和存在姜黄素的情况下,尿素的化学变性有望使蛋白质分子展开。在极性环境中,变性的HSA的荧光峰位置和寿命与l-色氨酸相似。在HSA展开过程中,在不存在和存在姜黄素的情况下,通过同步荧光光谱在两个不同的Δλ上分辨酪氨酸和色氨酸的光谱变化。发现姜黄素保持结合至HSA的未折叠状态,并且通过将色氨酸部分推向处于未折叠状态的更极性环境而促进了该过程。通过磷酸缓冲液稀释变性蛋白可逆,通过恢复荧光寿命损失可逆地折叠了亚结构域IIA,但在姜黄素存在下反应缓慢。 k_q值表明姜黄素-HSA复合物以未折叠和重新折叠状态形成,如天然状态所观察到的。

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