de Sa C M, Rollet E, de Sa M F, Tanguay R M, Best-Belpomme M, Scherrer K
Institut Jacques Monod, Paris, France.
Mol Cell Biol. 1989 Jun;9(6):2672-81. doi: 10.1128/mcb.9.6.2672-2681.1989.
Prosomes and heat shock protein (HSP) complexes isolated from the cytoplasm of Drosophila cells in culture were biochemically and immunologically characterized. The two complexes were found to separate on sucrose gradients, allowing the analysis of their protein constituents by two-dimensional polyacrylamide gel electrophoresis and by reaction with anti-HSP sera and prosome-specific monoclonal antibodies. All of the prosomal proteins were found to be clearly distinct from the HSP; none of the prosomal proteins was synthesized de novo in heat shock. However, an antiprosome (anti-p27K) monoclonal antibody (mouse anti-duck) recognizing the Drosophila p29K prosomal protein allowed immunoprecipitation from a heat-shocked postmitochondrial supernatant of the crude HSP complex, including the low- and the high-molecular-weight components, in particular the 70 x 10(3)-molecular weight HSP. The highly purified small 16S HSP complex still contained this preexistent p29K prosomal protein, which thus also seems to be a metabolically stable constituent of the HSP complex. The significance of this structural and possibly functional relationship between prosomes and HSP, involving the highly ubiquitous and evolutionarily conserved prosomal protein p27/29K, remains to be elucidated.
对从培养的果蝇细胞胞质中分离出的前体小体和热休克蛋白(HSP)复合物进行了生化和免疫学特性分析。发现这两种复合物在蔗糖梯度上分离,从而能够通过二维聚丙烯酰胺凝胶电泳以及与抗HSP血清和前体小体特异性单克隆抗体反应来分析其蛋白质成分。结果发现,所有前体小体蛋白都与HSP明显不同;在热休克过程中,没有一种前体小体蛋白是重新合成的。然而,一种识别果蝇p29K前体小体蛋白的抗前体小体(抗p27K)单克隆抗体(小鼠抗鸭)能够从热休克后的粗HSP复合物线粒体后上清液中进行免疫沉淀,包括低分子量和高分子量成分,特别是70×10³分子量的HSP。高度纯化的小16S HSP复合物仍然含有这种预先存在的p29K前体小体蛋白,因此它似乎也是HSP复合物的一种代谢稳定成分。前体小体与HSP之间这种结构上以及可能功能上的关系,涉及高度普遍存在且在进化上保守的前体小体蛋白p27/29K,其意义仍有待阐明。