首页> 外文期刊>The Plant Cell >Molecular interactions of a soluble gibberellin receptor, GID1, with a rice DELLA protein, SLR1, and gibberellin
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Molecular interactions of a soluble gibberellin receptor, GID1, with a rice DELLA protein, SLR1, and gibberellin

机译:可溶性赤霉素受体GID1与水稻DELLA蛋白SLR1和赤霉素的分子相互作用

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GIBBERELLIN INSENSITIVE DWARF1 ( GID1) encodes a soluble gibberellin ( GA) receptor that shares sequence similarity with a hormone- sensitive lipase (HSL). Previously, a yeast two-hybrid (Y2H) assay revealed that the GID1-GA complex directly interacts with SLENDER RICE1 (SLR1), a DELLA repressor protein in GA signaling. Here, we demonstrated, by pulldown and bimolecular fluorescence complementation (BiFC) experiments, that the GA-dependent GID1-SLR1 interaction also occurs in planta. GA4 was found to have the highest affinity to GID1 in Y2H assays and is the most effective form of GA in planta. Domain analyses of SLR1 using Y2H, gel filtration, and BiFC methods revealed that the DELLA and TVHYNP domains of SLR1 are required for the GID1-SLR1 interaction. To identify the important regions of GID1 for GA and SLR1 interactions, we used many different mutant versions of GID1, such as the spontaneous mutant GID1s, N- and C-terminal truncated GID1s, and mutagenized GID1 proteins with conserved amino acids replaced with Ala. The amino acid residues important for SLR1 interaction completely overlapped the residues required for GA binding that were scattered throughout the GID1 molecule. When we plotted these residues on the GID1 structure predicted by analogy with HSL tertiary structure, many residues were located at regions corresponding to the substrate binding pocket and lid. Furthermore, the GA-GID1 interaction was stabilized by SLR1. Based on these observations, we proposed a molecular model for interaction between GA, GID1, and SLR1.
机译:赤霉素敏感型DWARF1(GID1)编码与激素敏感性脂肪酶(HSL)具有序列相似性的可溶性赤霉素(GA)受体。以前,酵母双杂交(Y2H)分析表明,GID1-GA复合物直接与SLENDER RICE1(SLR1)(GA信号中的DELLA阻遏蛋白)相互作用。在这里,我们通过下拉和双分子荧光互补(BiFC)实验证明,依赖GA的GID1-SLR1相互作用也发生在植物中。在Y2H分析中发现GA4对GID1的亲和力最高,并且是植物中GA最有效的形式。使用Y2H,凝胶过滤和BiFC方法对SLR1进行结构域分析,发现SID1的DELLA和TVHYNP结构域是GID1-SLR1相互作用所必需的。为了确定GA和SLR1相互作用的GID1重要区域,我们使用了GID1的许多不同突变版本,例如自发突变GID1,N和C端截短的GID1和诱变的GID1蛋白,其中保守氨基酸被Ala取代。对于SLR1相互作用重要的氨基酸残基与GA结合所需的残基完全重叠,这些残基分散在整个GID1分子中。当我们将这些残基在类似于HSL三级结构预测的GID1结构上作图时,许多残基位于对应于底物结合口袋和盖子的区域。此外,SLR1稳定了GA-GID1的相互作用。基于这些观察,我们提出了GA,GID1和SLR1之间相互作用的分子模型。

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