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Unfolding and Refolding of Bovine Serum Albumin at Acid pH: Ultrasound and Structural Studies

机译:酸性pH下牛血清白蛋白的折叠和重新折叠:超声和结构研究

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摘要

Serum albumin is the most abundant protein in the circulatory system. The ability of albumins to undergo a reversible conformational transition, observed with changes in pH, is conserved in distantly related species, suggesting for it a major physiological role possibly related to the transport of small molecules including drugs. We have followed changes of bovine serum albumin (BSA) in volume by densimetry and in adiabatic compressibility during its conformational transition from pH 7–2, using ultrasound measurements. In parallel, circular dichroism was measured. The volume and adiabatic compressibility decrease from pH 4 to 2. The change in ellipticity shows a decrease over the same pH range from 70% to 40% of its α-helix content. Sorbitol, at concentrations from 0 to 2 M, led to the progressive restoration of BSA volume and compressibility values, as well as a substantial recovery of its original α-helix content. This finding implies that the compressibility variation observed reflects the conformational changes during the transition. The mutual interactions of the mechanical properties and structural features of BSA reported here are important in biotechnology for research in material sciences and for the design and the development of new, tailor-made drug carriers.
机译:血清白蛋白是循环系统中最丰富的蛋白质。观察到随着pH的变化,白蛋白经历可逆构象转变的能力在远缘物种中得以保留,这表明它的主要生理作用可能与包括药物在内的小分子的运输有关。通过超声测量,我们观察了密度测定法测定牛血清白蛋白(BSA)的体积变化以及从pH 7–2构象转变期间的绝热压缩率。平行地,测量圆二色性。体积和绝热可压缩性从pH值4降低到2。椭圆率的变化表明,在相同pH范围内,从其α-螺旋含量的70%到40%降低。浓度为0至2 M的山梨糖醇可导致BSA体积和可压缩性值逐渐恢复,以及其原始α-螺旋含量的大幅恢复。该发现暗示观察到的可压缩性变化反映了过渡期间的构象变化。此处报道的BSA的机械性能和结构特征之间的相互影响在生物技术中对材料科学的研究以及新型定制药物载体的设计和开发都很重要。

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