首页> 外文期刊>Journal of proteomics >Protein sHSP26 improves chloroplast performance under heat stress by interacting with specific chloroplast proteins in maize (Zea mays)
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Protein sHSP26 improves chloroplast performance under heat stress by interacting with specific chloroplast proteins in maize (Zea mays)

机译:sHSP26蛋白通过与玉米中的特定叶绿体蛋白相互作用来改善热胁迫下的叶绿体性能

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We recently demonstrated that chloroplast small HSP26 (sHSP26) is abundant in maize leaves under heat stress and potentially involved in maize heat tolerance. However, it largely remains unclear how sHSP26 functions in maize under heat stress. Here, 2-DE-based proteomics, RNA interference (RNAi), co-immunoprecipitation (Co-IP) and yeast two-hybrid (Y2H) were used to reveal chloroplast proteins interacting with sHSP26 and how sHSP26 functions under heat stress. After the silencing of sHSP26, a total of 45 protein spots from isolated protoplasts were greatly changed in abundance, of which 33 spots are chloroplastic. Co-IP revealed that nine proteins possibly associated with 5HSP26. Y2H demonstrated that six chloroplast proteins interact with 5HSP26 under heat stress. In particular, four proteins, including ATP synthase subunit beta, chlorophyll a b binding protein, oxygen-evolving enhancer protein 1 and photosystem I reaction center subunit IV, strongly interacted with sHSP26 and their abundance greatly declined after RNAi of 5HSP26 under heat stress. In addition, H2O2 accumulation in the chloroplasts significantly increased the expression of sHSP26, and the suppression of sHSP26 expression significantly reduced the O-2 evolution rate of photosystem II under heat stress. Overall, these findings demonstrate the relevance of sHSP26 in protecting maize chloroplasts under heat stress.
机译:我们最近证明,叶绿体小HSP26(sHSP26)在热胁迫下的玉米叶片中含量丰富,并且可能参与了玉米的耐热性。但是,在热胁迫下,sHSP26在玉米中的功能尚不清楚。在这里,基于2-DE的蛋白质组学,RNA干扰(RNAi),免疫共沉淀(Co-IP)和酵母双杂交(Y2H)被用来揭示叶绿体蛋白与sHSP26相互作​​用以及sHSP26在热应激下如何发挥作用。 sHSP26沉默后,来自分离的原生质体的总共45个蛋白斑点的丰度发生了很大变化,其中33个斑点是叶绿体的。 Co-IP显示9种蛋白质可能与5HSP26相关。 Y2H证明了6种叶绿体蛋白在热胁迫下与5HSP26相互作​​用。特别是,ATP合酶亚基β,叶绿素ab结合蛋白,放氧增强蛋白1和光系统I反应中心亚基IV等四种蛋白与sHSP26强烈相互作用,并且在热胁迫下5HSP26的RNAi后其丰度大大降低。此外,H2O2在叶绿体中的积累显着增加了sHSP26的表达,并且抑制sHSP26的表达显着降低了热胁迫下光系统II的O-2演化速率。总体而言,这些发现证明了sHSP26在热胁迫下保护玉米叶绿体的相关性。

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