Borrelli Michael J, Bernock Laura J, Landry Jacques, Spitz Douglas R, Weber Lee A, Hickey Eileen, Freeman Michael L, Corry Peter M
Department of Radiation Oncology, William Beaumont Hospital, 3601 West Thirteen Mile Road, Royal Oak, MI 48073, USA.
Cell Stress Chaperones. 2002 Jul;7(3):281-96. doi: 10.1379/1466-1268(2002)007<0281:spbafh>2.0.co;2.
A chimeric protein consisting of enhanced green fluorescent protein (EGFP) fused to the N-terminus of human Hsp27 conferred stress protection in human A549 lung carcinoma and murine L929 cells that were stably transfected to express the chimera constitutively. The resultant protection was comparable with that in the same cell lines when they were transfected to express corresponding levels of Hsp27. Unlike L929 cells, A549 cells exhibit endogenous Hsp27 expression, whose expression was inhibited in proportion to the amount of fluorescent chimera expressed, suggesting that the A549 cells recognized the latter as Hsp27. Upregulation of Hsp27 or chimeric Hsp27 in all transfected cell lines (stable or transient transfection) caused no measurable change in cellular glutathione levels, indicating that glutathione played no role in the stress protection associated with either protein. Chimeric Hsp27 had a monomeric molecular weight of 55 kDa (that of Hsp27 plus EGFP) in both cell types and formed a 16-mer complex twice as massive as that formed by Hsp27. Heat shock or sodium arsenite induced phosphorylation of both chimeric Hsp27 and Hsp27, which resulted in the disaggregation of Hsp27 multimers in both cell types and disaggregation of 20% of the chimeric multimers in L929 cells. But chimeric Hsp27 multimers did not disaggregate after stress in A549 cells. Epifluorescence and confocal microscopy demonstrated that chimeric Hsp27 was restricted to the cytoplasm under normal growth conditions and after heat shock in all cells. This study supports the conclusions that Hsp27 stress protection requires neither its translocation into the nucleus nor the dissociation of its multimeric complex. Furthermore, it demonstrates that fluorescent chimeras of heat shock proteins can be functional and used to observe the protein's distribution within living cells.
一种由增强型绿色荧光蛋白(EGFP)与人Hsp27的N端融合而成的嵌合蛋白,在稳定转染以组成性表达该嵌合体的人A549肺癌细胞和鼠L929细胞中赋予了应激保护作用。所产生的保护作用与相同细胞系转染以表达相应水平的Hsp27时相当。与L929细胞不同,A549细胞表现出内源性Hsp27表达,其表达与荧光嵌合体的表达量成比例受到抑制,这表明A549细胞将后者识别为Hsp27。在所有转染细胞系(稳定或瞬时转染)中Hsp27或嵌合Hsp27的上调均未导致细胞内谷胱甘肽水平发生可测量的变化,这表明谷胱甘肽在与这两种蛋白相关的应激保护中不起作用。在两种细胞类型中,嵌合Hsp27的单体分子量均为55 kDa(Hsp27加上EGFP的分子量),并形成了一个比Hsp27形成的复合物质量大一倍的16聚体复合物。热休克或亚砷酸钠诱导嵌合Hsp27和Hsp27均发生磷酸化,这导致两种细胞类型中Hsp27多聚体解聚,以及L929细胞中20%的嵌合多聚体解聚。但在A549细胞中,应激后嵌合Hsp27多聚体并未解聚。落射荧光显微镜和共聚焦显微镜显示,在正常生长条件下以及热休克后,嵌合Hsp27在所有细胞中均局限于细胞质中。本研究支持以下结论:Hsp27的应激保护既不需要其转运到细胞核中,也不需要其多聚体复合物解离。此外,它还表明热休克蛋白的荧光嵌合体可以发挥功能,并用于观察蛋白质在活细胞内的分布。