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水稻热激蛋白101的分子特征:通过蛋白质颗粒解聚互补酵母热激蛋白104突变以及在籼稻和粳稻类型中的差异表达

Molecular characterization of rice hsp101: complementation of yeast hsp104 mutation by disaggregation of protein granules and differential expression in indica and japonica rice types.

作者信息

Agarwal Manu, Sahi Chandan, Katiyar-Agarwal Surekha, Agarwal Sangeeta, Young Todd, Gallie Daniel R, Sharma Vishva Mitra, Ganesan K, Grover Anil

机构信息

Department of Plant Molecular Biology, University of Delhi South Campus, Benito Juarez Road, Dhaula Kuan, New Delhi-110021, India.

出版信息

Plant Mol Biol. 2003 Mar;51(4):543-53. doi: 10.1023/a:1022324920316.

Abstract

HSP100 protein is an important component of the heat-shock response in diverse organisms. Using specific primers based on cDNA sequence, rice hsp101 gene was PCR-amplified and sequenced. Southern analysis revealed that there appears to be a single gene per haploid genome coding for HSP101 protein in rice. Northern analysis showed that expression of hsp101 transcript is strictly heat-inducible and induction is transient in nature. In the temperature regime tested, 45 degrees C treatment to intact rice seedlings for 2 h showed maximal levels of hsp101 mRNA. Rice full-length hsp101 cDNA complemented yeast mutant disrupted for its own hsp104 gene by insertional mutagenesis, with efficacy that was comparable with Arabidopsis hsp101 cDNA. Electron micrographic evidence suggested that rice hsp101 cDNA in yeast is active in re-solubilizing the stress-induced protein granules in the post-stress recovery period. Rice hsp101 cDNA expression in hsp104 deficient yeast also caused recovery in tolerance against arsenite. Western analyses showed that this protein is expressed more rapidly during the stress period and retained for longer duration in the post-stress recovery period in japonica rice as compared to indica rice types. This is the first report wherein plant HSP100 protein expression is correlated to disappearance of protein granules in the yeast cells and distinct rice type-dependent protein expression patterns are reported.

摘要

热激蛋白100(HSP100)是多种生物体热激反应的重要组成部分。基于cDNA序列设计特异性引物,通过PCR扩增并测序了水稻的hsp101基因。Southern分析表明,水稻单倍体基因组中似乎只有一个编码HSP101蛋白的基因。Northern分析显示,hsp101转录本的表达严格受热诱导,且诱导是短暂的。在所测试的温度范围内,对完整水稻幼苗进行45℃处理2小时,hsp101 mRNA水平最高。水稻全长hsp101 cDNA通过插入诱变补充了因自身hsp104基因被破坏的酵母突变体,其功效与拟南芥hsp101 cDNA相当。电子显微镜证据表明,酵母中的水稻hsp101 cDNA在应激后恢复期能够重新溶解应激诱导的蛋白颗粒。hsp104缺陷型酵母中水稻hsp101 cDNA的表达也使酵母对亚砷酸盐的耐受性恢复。Western分析表明,与籼稻类型相比,粳稻中该蛋白在应激期表达更快,在应激后恢复期保留时间更长。这是首次报道植物HSP100蛋白表达与酵母细胞中蛋白颗粒消失相关,并报道了不同水稻类型依赖的蛋白表达模式。

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