Zhou Bing-Rui, Liang Yi, Du Fen, Zhou Zheng, Chen Jie
National Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan 430072, China.
J Biol Chem. 2004 Dec 31;279(53):55109-16. doi: 10.1074/jbc.M409086200. Epub 2004 Oct 19.
The oxidative refolding of reduced, denatured hen egg white lysozyme in the presence of a mixed macromolecular crowding agent containing both bovine serum albumin (BSA) and polysaccharide has been studied from a physiological point of view. When the total concentration of the mixed crowding agent is 100 g/liter, in which the weight ratio of BSA to dextran 70 is 1:9, the refolding yield of lysozyme after refolding for 4 h under this condition increases 24% compared with that in the presence of BSA and 16% compared with dextran 70. A remarkable increase in the refolding yield of lysozyme by a mixed crowding agent containing BSA and Ficoll 70 is also observed. Further folding kinetics analyses show that these two mixed crowding agents accelerate the oxidative refolding of lysozyme remarkably, compared with single crowding agents. These results suggest that the stabilization effects of mixed macromolecular crowding agents are stronger than those of single polysaccharide crowding agents such as dextran 70 and Ficoll 70, whereas the excluded volume effects of mixed macromolecular crowding agents are weaker than those of single protein crowding agents such as BSA. Both the refolding yield and the rate of the oxidative refolding of lysozyme in these two mixed crowded solutions with suitable weight ratios are higher than those in single crowded solutions, indicating that mixed macromolecular crowding agents are more favorable to lysozyme folding and can be used to simulate the intracellular environments more accurately than single crowding agents do.
从生理学角度研究了在含有牛血清白蛋白(BSA)和多糖的混合大分子拥挤剂存在下,还原变性的鸡蛋清溶菌酶的氧化重折叠过程。当混合拥挤剂的总浓度为100 g/升,其中BSA与葡聚糖70的重量比为1:9时,在此条件下重折叠4小时后,溶菌酶的重折叠产率与在BSA存在下相比提高了24%,与葡聚糖70存在下相比提高了16%。还观察到含有BSA和聚蔗糖70的混合拥挤剂使溶菌酶的重折叠产率显著提高。进一步的折叠动力学分析表明,与单一拥挤剂相比,这两种混合拥挤剂显著加速了溶菌酶的氧化重折叠。这些结果表明,混合大分子拥挤剂的稳定作用比单一多糖拥挤剂如葡聚糖70和聚蔗糖70更强,而混合大分子拥挤剂的排阻体积效应比单一蛋白质拥挤剂如BSA更弱。在这两种具有合适重量比的混合拥挤溶液中,溶菌酶的重折叠产率和氧化重折叠速率均高于单一拥挤溶液中的,这表明混合大分子拥挤剂比单一拥挤剂更有利于溶菌酶折叠,并且能够更准确地模拟细胞内环境。