首页> 美国卫生研究院文献>The Plant Cell >A Rice gid1 Suppressor Mutant Reveals That Gibberellin Is Not Always Required for Interaction between Its Receptor GID1 and DELLA Proteins
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A Rice gid1 Suppressor Mutant Reveals That Gibberellin Is Not Always Required for Interaction between Its Receptor GID1 and DELLA Proteins

机译:水稻gid1抑制剂突变体表明其受体GID1和DELLA蛋白之间的相互作用并非始终需要赤霉素

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摘要

To investigate gibberellin (GA) signaling using the rice (Oryza sativa) GA receptor GIBBERELLIN-INSENSITIVE DWARF1 (GID1) mutant gid1-8, we isolated a suppressor mutant, Suppressor of gid1-1 (Sgd-1). Sgd-1 is an intragenic mutant containing the original gid1-8 mutation (L45F) and an additional amino acid substitution (P99S) in the loop region. GID1P99S interacts with the rice DELLA protein SLENDER RICE1 (SLR1), even in the absence of GA. Substitution of the 99th Pro with other amino acids revealed that substitution with Ala (P99A) caused the highest level of GA-independent interaction. Physicochemical analysis using surface plasmon resonance revealed that GID1P99A has smaller Ka (association) and Kd (dissociation) values for GA4 than does wild-type GID1. This suggests that the GID1P99A lid is at least partially closed, resulting in both GA-independent and GA-hypersensitive interactions with SLR1. One of the three Arabidopsis thaliana GID1s, At GID1b, can also interact with DELLA proteins in the absence of GA, so we investigated whether GA-independent interaction of At GID1b depends on a mechanism similar to that of rice GID1P99A. Substitution of the loop region or a few amino acids of At GID1b with those of At GID1a diminished its GA-independent interaction with GAI while maintaining the GA-dependent interaction. Soybean (Glycine max) and Brassica napus also have GID1s similar to At GID1b, indicating that these unique GID1s occur in various dicots and may have important functions in these plants.
机译:要调查使用水稻(水稻)GA受体GIBBERELLIN-INSENSITIVE DWARF1(GID1)突变体gid1-8的赤霉素(GA)信号,我们分离了一个抑制突变体,即gid1-1(Sgd-1)的抑制子。 Sgd-1是一种基因内突变体,在环区中包含原始的gid1-8突变(L45F)和其他氨基酸取代(P99S)。即使没有GA,GID1 P99S 也能与水稻DELLA蛋白SLENDER RICE1(SLR1)相互作用。用其他氨基酸取代99th Pro,表明用Ala(P99A)取代引起了最高水平的GA独立相互作用。利用表面等离子体激元共振进行的理化分析表明,与野生型GID1相比,GID1 P99A 对GA4的Ka(缔合)和Kd(解离)值更小。这表明GID1 P99A 盖至少部分关闭,从而导致与SLR1的GA无关和GA过敏反应。在没有GA的情况下,三个拟南芥GID1s之一也可以与DELLA蛋白相互作用,因此我们研究了At GID1b与GA无关的相互作用是否取决于与水稻GID1 P99A相似的机制。 At GID1b的环区或一些氨基酸被At GID1a的氨基酸取代,可减少其与GAI的GA独立相互作用,同时保持GA独立相互作用。大豆(甘蓝型油菜)和甘蓝型油菜也具有类似于At GID1b的GID1,这表明这些独特的GID1存在于各种双子叶植物中,并且在这些植物中可能具有重要的功能。

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