Department of Applied Plant Sciences, Kangwon National University, Chuncheon 200-713, Korea.
J Exp Bot. 2013 Jul;64(10):2899-914. doi: 10.1093/jxb/ert143. Epub 2013 May 22.
Thermotolerance is very important for plant survival when plants are subjected to lethally high temperature. However, thus far little is known about the functions of RING E3 ligase in response to heat shock in plants. This study found that one rice gene encoding the RING finger protein was specifically induced by heat and cold stress treatments but not by salinity or dehydration and named it OsHCI1 (Oryza sativa heat and cold induced 1). Subcellular localization results showed that OsHCI1 was mainly associated with the Golgi apparatus and moved rapidly and extensively along the cytoskeleton. In contrast, OsHCI1 may have accumulated in the nucleus under high temperatures. OsHCI1 physically interacted with nuclear substrate proteins including a basic helix-loop-helix transcription factor. Transient co-overexpression of OsHCI1 and each of three nuclear proteins showed that their fluorescent signals moved into the cytoplasm as punctuate formations. Heterogeneous overexpression of OsHCI1 in Arabidopsis highly increased survival rate through acquired thermotolerance. It is proposed that OsHCI1 mediates nuclear-cytoplasmic trafficking of nuclear substrate proteins via monoubiquitination and drives an inactivation device for the nuclear proteins under heat shock.
热耐受性对于植物在遭受致死高温时的生存非常重要。然而,迄今为止,人们对 RING E3 连接酶在植物对热激的反应中的功能知之甚少。本研究发现,一个编码 RING 指蛋白的水稻基因被热和冷胁迫处理特异性诱导,但不受盐度或干旱诱导,并将其命名为 OsHCI1(水稻热和冷诱导 1)。亚细胞定位结果表明,OsHCI1主要与高尔基体相关,并沿着细胞骨架快速而广泛地移动。相比之下,OsHCI1 在高温下可能在核内积累。OsHCI1 与包括碱性螺旋-环-螺旋转录因子在内的核基质蛋白发生物理相互作用。瞬时共表达 OsHCI1 和三种核蛋白中的每一种都表明它们的荧光信号作为点状结构进入细胞质。在拟南芥中异源过表达 OsHCI1 通过获得耐热性显著提高了存活率。据推测,OsHCI1 通过单泛素化介导核基质蛋白的核质转运,并在热激下驱动核蛋白的失活装置。