Kelley Patrick B, Abraham Edathara C
Department of Biochemistry and Molecular Biology, Medical College of Georgia, Augusta, GA, USA.
Mol Cell Biochem. 2003 Oct;252(1-2):273-8. doi: 10.1023/a:1025568417000.
alphaB-crystallin, a member of the small heat-shock protein (hsp) family of proteins, is able to function as a molecular chaperone by protecting other proteins from stress-induced aggregation by recognizing and binding to partially unfolded species of damaged proteins. The present work has investigated the role of phenylalanine-28 (F28) of the 22RLFDQFF28 region of alphaB-crystallin in maintaining chaperone function and oligomeric structure under physiological condition and under thermal stress. Bovine alphaB-crystallin was cloned for the first time and the cDNA sequence revealed greater than 90% homology to that of human, rat and mouse alphaB-crystallins. F28 was mutated to a serine followed by expression of the mutant F28S and the wild-type alphaB (alphaB-wt) in E. coli and subsequent purification of the protein by size-exclusion chromatography. Secondary and tertiary structure analyses showed some structural changes in the mutant. Chaperone activity and oligomeric size of the mutant was unchanged at 37 degrees C whereas at 58 degrees C the chaperone activity was significantly decreased and the oligomeric size ranged from low molecular weight to high molecular weight showing disintegration of the oligomeric structure. The data support the idea that the participation of large oligomeric structure rather than smaller units is required to have optimal chaperone activity and the hydrophobic F28 residue is needed for maintaining the native oligomeric structure under thermal stress.
αB-晶状体蛋白是小热休克蛋白(hsp)家族的成员之一,它能够通过识别并结合受损蛋白质的部分未折叠形式,保护其他蛋白质免受应激诱导的聚集,从而发挥分子伴侣的功能。目前的研究探讨了αB-晶状体蛋白22RLFDQFF28区域中的苯丙氨酸-28(F28)在生理条件和热应激下维持伴侣功能和寡聚结构中的作用。首次克隆了牛αB-晶状体蛋白,其cDNA序列与人类、大鼠和小鼠的αB-晶状体蛋白具有超过90%的同源性。将F28突变为丝氨酸,随后在大肠杆菌中表达突变体F28S和野生型αB(αB-wt),并通过尺寸排阻色谱法对蛋白质进行后续纯化。二级和三级结构分析显示突变体存在一些结构变化。突变体在37℃时的伴侣活性和寡聚体大小未发生变化,而在58℃时,伴侣活性显著降低,寡聚体大小从低分子量到高分子量不等,表明寡聚结构解体。这些数据支持了这样一种观点,即需要大的寡聚结构而非较小的单元参与才能具有最佳的伴侣活性,并且疏水性的F28残基对于在热应激下维持天然寡聚结构是必需的。