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牛γIV晶状体蛋白溶液中相分离的抑制:带电与不带电极性基团修饰的影响

Suppression of phase separation in bovine gamma IV crystallin solutions: effect of modification by charged versus uncharged polar groups.

作者信息

Pande J, Ogun O, Nath C, Benedek G

机构信息

Center for Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Exp Eye Res. 1993 Sep;57(3):257-64. doi: 10.1006/exer.1993.1123.

Abstract

gamma IVa Crystallin, the ocular lens protein with the highest critical temperature (Tc) for phase separation, has been chemically modified with N-ethylmaleimide (NEM) at neutral pH. NEM, a polar but uncharged modifier reacts with the cysteine residues of the protein. A maximum of 80-85% of the thiol groups are modified and the phase separation temperature is lowered by about 10 degrees C at a protein concentration of 30 mg ml-1. The coexistence curve of the NEM-modified protein with nearly four out of the six cysteines modified was determined and compared with that obtained by modifying the protein with a charged reagent, N-bromoacetylethanolamine phosphate (NBAEP). NBAEP modifies both cysteine and methionine residues of gamma IVa crystallin. The results of these two modification studies indicate that for the same total degree of modification of the sulfur-containing residues, the suppression in Tc due to the charged NBAEP is at least twice as large as that due to the polar but uncharged NEM. In order to obtain some measure of the relative hydrophilicities of the two modifiers, we have estimated the free energies of hydration of the nonionic segments of NEM and NBAEP, using structural additivity schemes. We find that the intrinsic hydrophilicities of the nonionic segments of these two modifiers are nearly equal. Hence the much larger suppression of Tc resulting from NBAEP modification is most probably due to the strongly polar, doubly charged phosphate group.

摘要

γ-IVa 晶状体蛋白是眼晶状体中相分离临界温度(Tc)最高的蛋白质,已在中性pH条件下用N-乙基马来酰亚胺(NEM)进行了化学修饰。NEM是一种极性但不带电荷的修饰剂,可与蛋白质的半胱氨酸残基反应。在蛋白质浓度为30 mg/ml时,最多80-85%的巯基被修饰,相分离温度降低约10℃。测定了六个半胱氨酸中近四个被修饰的NEM修饰蛋白的共存曲线,并与用带电荷试剂N-溴乙酰乙醇胺磷酸酯(NBAEP)修饰该蛋白得到的共存曲线进行了比较。NBAEP可修饰γ-IVa晶状体蛋白的半胱氨酸和甲硫氨酸残基。这两项修饰研究的结果表明,对于含硫残基相同的总修饰程度,带电荷的NBAEP导致的Tc抑制至少是极性但不带电荷的NEM的两倍。为了获得这两种修饰剂相对亲水性的某种度量,我们使用结构加和方案估算了NEM和NBAEP非离子部分的水合自由能。我们发现这两种修饰剂非离子部分的固有亲水性几乎相等。因此,NBAEP修饰导致的Tc抑制作用大得多很可能是由于强极性的双电荷磷酸基团。

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