Fernando P, Heikkila J J
Department of Biology, University of Waterloo, Ontario, Canada.
Cell Stress Chaperones. 2000 Apr;5(2):148-59. doi: 10.1379/1466-1268(2000)005<0148:fcoxsh>2.0.co;2.
Small heat shock proteins protect cells from stress presumably by acting as molecular chaperones. Here we report on the functional characterization of a developmentally regulated, heat-inducible member of the Xenopus small heat shock protein family, Hsp30C. An expression vector containing the open reading frame of the Hsp30C gene was expressed in Escherichia coli. These bacterial cells displayed greater thermoresistance than wild type or plasmid-containing cells. Purified recombinant protein, 30C, was recovered as multimeric complexes which inhibited heat-induced aggregation of either citrate synthase or luciferase as determined by light scattering assays. Additionally, 30C attenuated but did not reverse heat-induced inactivation of enzyme activity. In contrast to an N-terminal deletion mutant, removal of the last 25 amino acids from the C-terminal end of 30C severely impaired its chaperone activity. Furthermore, heat-treated concentrated solutions of the C-terminal mutant formed nonfunctional complexes and precipitated from solution. Immunoblot and gel filtration analysis indicated that 30C binds with and maintains the solubility of luciferase preventing it from forming heat-induced aggregates. Coimmunoprecipitation experiments suggested that the carboxyl region is necessary for 30C to interact with target proteins. These results clearly indicate a molecular chaperone role for Xenopus Hsp30C and provide evidence that its activity requires the carboxyl terminal region.
小热休克蛋白可能通过充当分子伴侣来保护细胞免受应激。在此,我们报告了非洲爪蟾小热休克蛋白家族中一个受发育调控、热诱导的成员Hsp30C的功能特性。一个含有Hsp30C基因开放阅读框的表达载体在大肠杆菌中表达。这些细菌细胞比野生型或含质粒的细胞表现出更强的耐热性。纯化的重组蛋白30C以多聚体复合物形式回收,通过光散射分析测定,其抑制了柠檬酸合酶或荧光素酶的热诱导聚集。此外,30C减弱但并未逆转热诱导的酶活性失活。与N端缺失突变体相反,从30C的C端去除最后25个氨基酸严重损害了其伴侣活性。此外,热处理的C端突变体浓缩溶液形成无功能的复合物并从溶液中沉淀出来。免疫印迹和凝胶过滤分析表明,30C与荧光素酶结合并维持其溶解性,防止其形成热诱导的聚集体。免疫共沉淀实验表明,羧基区域是30C与靶蛋白相互作用所必需的。这些结果清楚地表明非洲爪蟾Hsp30C具有分子伴侣作用,并提供了其活性需要羧基末端区域的证据。