首页> 外文期刊>Phytochemistry >Structural features important for the RNA chaperone activity of zinc finger-containing glycine-rich RNA-binding proteins from wheat (Triticum avestivum) and rice (Oryza sativa).
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Structural features important for the RNA chaperone activity of zinc finger-containing glycine-rich RNA-binding proteins from wheat (Triticum avestivum) and rice (Oryza sativa).

机译:结构特征对于小麦(Triticum avestivum)和水稻(Oryza sativa)含锌指的富含甘氨酸的RNA结合蛋白的RNA伴侣活性很重要。

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Despite the increase in understanding of RNA chaperone activity of zinc finger-containing glycine-rich RNA-binding proteins (RZs) during the cold adaptation process, the structural features relevant to the RNA chaperone activity of RZs still largely remain to be established. To investigate the structural determinants important for the RNA chaperone activity of RZs, domain-swapping and deletion analyses was carried out to assess the contribution of the N-terminal zinc finger RNA-recognition motif (RRM) domain and the C-terminal glycine-rich region of wheat (Triticum avestivum) and rice (Oryza sativa) RZs to RNA chaperone activity. Although the amino acid sequence similarity among wheat TaRZ2, wheat TaRZ3, and rice OsRZ1 was high, only TaRZ2 had RNA chaperone activity as evidenced by complementation ability in cold-sensitive Escherichia coli mutant cell under cold stress and in vivo and in vitro nucleic acid-melting activity. Domain-swapping and deletion analysis demonstrated that the overall folding of RZs governed by the N-terminal RRM domain and the C-terminal glycine-rich region, as well as the size of the disordered C-terminal glycine-rich region, are crucial for the RNA chaperone activity of RZs. Collectively, these results indicate that a specific modular arrangement of RRM domain and the disordered C-terminal region determines the RNA chaperone activity of RZs in cells
机译:尽管在冷适应过程中对含锌指的富含甘氨酸的RNA结合蛋白(RZs)的RNA伴侣活性的了解有所增加,但与RZs的RNA伴侣活性相关的结构特征仍然有待建立。为了研究对于RZ的RNA伴侣活性重要的结构决定因素,进行了域交换和缺失分析以评估N末端锌指RNA识别基序(RRM)域和C末端富含甘氨酸的贡献小麦(Triticum avestivum)和水稻(Oryza sativa)区域对RNA伴侣活性的影响。尽管小麦TaRZ2,小麦TaRZ3和水稻OsRZ1之间的氨基酸序列相似性很高,但只有TaRZ2具有RNA伴侣活性,这是冷胁迫下冷敏大肠杆菌突变体细胞的互补能力以及体内和体外核酸-熔化活性。域交换和缺失分析表明,由N端RRM域和C端富含甘氨酸的区域控制的RZ的整体折叠对于无序的C端富含甘氨酸的区域的大小对于RZs的RNA伴侣活性。总的来说,这些结果表明RRM结构域和无序的C末端区域的特定模块排列决定了细胞中RZ的RNA伴侣活性。

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