Zavialov A V, Gaestel M, Korpela T, Zav'yalov V P
Institute of Immunological Engineering, 142380 Lyubuchany, Moscow Region, Russian Federation.
Biochim Biophys Acta. 1998 Oct 14;1388(1):123-32. doi: 10.1016/s0167-4838(98)00172-1.
Murine small heat shock protein 25 (Hsp25) carries a single Cys-residue at position 141 of its amino acid sequence. In glutathione redox buffers, Hsp25 equilibrates between reduced protein (PSH), mixed disulfide (PSSG) and protein dimer (PSSP) forms. At highly oxidative conditions, native Hsp25 predominantly forms PSSP while denatured Hsp25 forms PSSG. Conversion of PSSP to PSSG correlates with urea and temperature denaturation of tertiary and/or quaternary structure of Hsp25. At pH 7.5, 25 degreesC, the second-order rate constant for the formation of PSSP in the reaction of native PSH with GSSG is 20.1+/-1.4 M-1 min-1. This is approximately 3-fold lower than the reaction velocity of GSSG with a typical, unhindered thiol of pKa 8.6. At redox equilibrium, the fractions of PSSP, PSSG, and PSH depend on the concentration of GSH and less on the ratio [GSH]/[GSSG] (R). At a constant R, the fractions of PSSG and PSH species depend similarly on GSH concentration, being approximately equal in glutathione redox buffers with low R. It is concluded that in oligomeric complexes, Hsp25 subunits in vitro form stable dimers, in which the reacting -SH groups are in a proximity to form intersubunit disulfide bonds. Within a reaction of one of these -SH groups with GSSG, steric hindrances and electrostatic repulsion complicate penetration of another reduced or oxidized glutathione molecule to the reaction site.
小鼠小分子热休克蛋白25(Hsp25)在其氨基酸序列的第141位带有一个半胱氨酸残基。在谷胱甘肽氧化还原缓冲液中,Hsp25在还原型蛋白(PSH)、混合二硫键(PSSG)和蛋白二聚体(PSSP)形式之间达到平衡。在高度氧化条件下,天然Hsp25主要形成PSSP,而变性的Hsp25形成PSSG。PSSP向PSSG的转化与Hsp25三级和/或四级结构的尿素和温度变性相关。在pH 7.5、25℃时,天然PSH与GSSG反应形成PSSP的二级速率常数为20.1±1.4 M-1 min-1。这大约比GSSG与典型的、pKa为8.6的无阻碍硫醇的反应速度低3倍。在氧化还原平衡时,PSSP、PSSG和PSH的比例取决于谷胱甘肽(GSH)的浓度,而较少取决于[GSH]/[GSSG](R)的比例。在恒定的R下,PSSG和PSH种类的比例同样取决于GSH浓度,在低R的谷胱甘肽氧化还原缓冲液中大致相等。得出结论:在寡聚复合物中,体外的Hsp25亚基形成稳定的二聚体,其中反应性的-SH基团接近形成亚基间二硫键。在这些-SH基团之一与GSSG的反应中,空间位阻和静电排斥使另一个还原或氧化的谷胱甘肽分子渗透到反应位点变得复杂。