Zhao Chunmei, Shono Mariko, Sun Aiqing, Yi Shuying, Li Minghui, Liu Jian
College of Life Science, Shandong Normal University, Jinan, Shandong, PR China.
J Plant Physiol. 2007 Jul;164(7):835-41. doi: 10.1016/j.jplph.2006.06.004. Epub 2006 Aug 10.
To explore the function of endoplasmic reticulum-located small heat-shock proteins (ER-sHSPs) in ER stress, a putative ER-sHSP cDNA (the driven protein was named as LeHSP21.5 with GenBank accession No. AB026983) was isolated from tomato (Lycopersicon esculentum). Fractionation of the crude microsomes by isopycnic sucrose-gradient centrifugation revealed that LeHSP21.5 was distributed on a density corresponding to the fractions with a higher activity of ER marker enzyme, suggesting the localization of LeHSP21.5 in the ER. Overexpressing LeHSP21.5 in transgenic tomato plants (L. esculentum var. Zhongshu 4) greatly attenuated the lethal effect of tunicamycin on tomato seedlings. Moreover, under the tunicamycin treatment, transcripts of BiP, PDI and calnexin in transgenic tomato plants accumulated to a less level than those in non-transgenic tomato plants. These results suggest that LeHSP21.5 can function to alleviate the tunicamycin-induced ER stress.
为了探究内质网定位的小热休克蛋白(ER-sHSPs)在内质网应激中的功能,从番茄(Lycopersicon esculentum)中分离出一个假定的ER-sHSP cDNA(其编码的蛋白命名为LeHSP21.5,GenBank登录号为AB026983)。通过等密度蔗糖梯度离心对粗微粒体进行分级分离,结果显示LeHSP21.5分布在与内质网标记酶活性较高的组分相对应的密度处,这表明LeHSP21.5定位于内质网。在转基因番茄植株(L. esculentum var. Zhongshu 4)中过表达LeHSP21.5,极大地减弱了衣霉素对番茄幼苗的致死作用。此外,在衣霉素处理下,转基因番茄植株中BiP、PDI和钙连蛋白的转录本积累水平低于非转基因番茄植株。这些结果表明LeHSP21.5能够发挥作用减轻衣霉素诱导的内质网应激。