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Functional analysis of Hsp70 superfamily proteins of rice (Oryza sativa)

机译:水稻Hsp70超家族蛋白的功能分析

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Heat stress results in misfolding and aggregation of cellular proteins. Heat shock proteins (Hsp) enable the cells to maintain proper folding of proteins, both in unstressed as well as stressed conditions. Hsp70 genes encode for a group of highly conserved chaperone proteins across the living systems encompassing bacteria, plants, and animals. In the cellular chaperone network, Hsp70 family proteins interconnect other chaperones and play a dominant role in various cell processes. To assess the functionality of rice Hsp70 genes, rice genome database was analyzed. Rice genome contains 32 Hsp70 genes. Rice Hsp70 superfamily genes are represented by 24 Hsp70 family and 8 Hsp110 family members. Promoter and transcript expression analysis divulges that Hsp70 superfamily genes plays important role in heat stress. Ssc1 (mitochondrial Hsp70 protein in yeast) deleted yeast show compromised growth at 37?°C. Three mitochondrial rice Hsp70 sequences (i.e., mtHsp70-1, mtHsp70-2, and mtHsp70-3) complemented the Ssc1 mutation of yeast to differential extents. The information presented in this study provides detailed understanding of the Hsp70 protein family of rice, the crop species that is the major food for the world population.
机译:热应激导致细胞蛋白错误折叠和聚集。热休克蛋白(Hsp)使细胞在无压力和压力条件下都能保持蛋白质的正确折叠。 Hsp70基因编码整个生命系统中的一组高度保守的伴侣蛋白,包括细菌,植物和动物。在细胞伴侣网络中,Hsp70家族蛋白将其他伴侣相互连接,并在各种细胞过程中起主导作用。为了评估水稻Hsp70基因的功能,分析了水稻基因组数据库。水稻基因组包含32个Hsp70基因。水稻Hsp70超家族基因由24个Hsp70家族和8个Hsp110家族成员代表。启动子和转录表达分析表明,Hsp70超家族基因在热应激中起重要作用。 Ssc1(酵母中的线粒体Hsp70蛋白)缺失的酵母在37°C下生长受到损害。三种线粒体水稻Hsp70序列(即mtHsp70-1,mtHsp70-2和mtHsp70-3)在不同程度上补充了酵母的Ssc1突变。这项研究中提供的信息提供了对水稻Hsp70蛋白家族的详细了解,水稻是世界人口的主要食物。

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