Chemistry Institute, UNICAMP, P.O. Box 6154, Campinas, 13083-970, SP, Brazil.
Chemistry Institute, UNICAMP, P.O. Box 6154, Campinas, 13083-970, SP, Brazil.
Plant Physiol Biochem. 2018 Aug;129:285-294. doi: 10.1016/j.plaphy.2018.06.002. Epub 2018 Jun 4.
Chaperones belonging to the small heat shock protein (sHSP) family are ubiquitous and exhibit elevated expression under stresses conditions to protect proteins against aggregation, thereby contributing to the stress tolerance of the organism. Tropical plants are constantly exposed to high temperatures, and the mechanisms by which these plants tolerate heat stress are of foremost importance to basic science as well as applied agrobiotechnology. Therefore, this study aims to characterize sHSPs from different organelles from sugarcane, an important crop that is associated with sugar and bioenergy production. An expression sequence tag database of sugarcane was searched, and sHsp genes of mitochondrial and chloroplast organelles were selected and cloned. The proteins were expressed in Escherichia coli and isolated and purified by two chromatographic steps with high purity as single species. Circular dichroism and fluorescence spectroscopy showed that both proteins were purified in their folded states with a predominant β-sheet secondary structure. Determination of the molecular weight, diffusion coefficient and Stokes radius parameters showed that both chaperones form large spherical-like oligomers in solution. The two sHSPs had different oligomeric states and substrate specificities. The mitochondrial sHSP was a 20-mer with ability to protect model substrates that differ from that of the 16-meric sHSP from chloroplasts. These results indicate that both sHSPs are key agents to protect against stress confirming the importance of the great diversity of sHSP chaperones in plants for homeostasis maintenance. Moreover, to our knowledge, this is the first report about small HSPs from sugarcane organelles.
伴侣蛋白属于小热休克蛋白 (sHSP) 家族,普遍存在,在应激条件下表达水平升高,以保护蛋白质不聚集,从而有助于生物体的应激耐受。热带植物经常暴露在高温下,这些植物耐受热应激的机制对基础科学和应用农业生物技术都至关重要。因此,本研究旨在从甘蔗不同细胞器中鉴定 sHSPs,甘蔗是一种与糖和生物能源生产相关的重要作物。搜索了甘蔗的表达序列标签数据库,选择并克隆了线粒体和叶绿体细胞器的 sHsp 基因。将蛋白质在大肠杆菌中表达,并通过两步色谱法进行分离和纯化,得到高纯度的单一物种。圆二色性和荧光光谱表明,两种蛋白质均以折叠状态存在,具有主要的β-折叠二级结构。分子量、扩散系数和斯托克斯半径参数的测定表明,两种伴侣蛋白在溶液中均形成大的类似球形寡聚物。两种 sHSPs 的寡聚状态和底物特异性不同。线粒体 sHSP 是 20 聚体,能够保护与叶绿体 16 聚体 sHSP 不同的模型底物。这些结果表明,两种 sHSPs 都是应激保护的关键因子,证实了 sHSP 伴侣在植物中维持内稳态的重要多样性。此外,据我们所知,这是关于甘蔗细胞器中小热休克蛋白的首次报道。