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Structure-function analysis of Arabidopsis thaliana histidine kinase AHK5 bound to its cognate phosphotransfer protein AHP1.

机译:拟南芥组氨酸激酶AHK5与其同源磷酸转移蛋白AHP1结合的结构功能分析。

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摘要

The multi-step phosphorelay (MSP) system defines a key signal transduction pathway in plants and many eukaryotes. In this system, external stimuli first lead to the activation of a histidine kinase, followed by transfer of a phosphoryl group from the receiver domain of the kinase (HKRD) to downstream, cytosolic phosphotransfer proteins (HPs). In order to establish the determinants of specificity for this signaling relay system, we have solved the first crystal structure of a plant HKRD, AHK5RD, in complex with one of its cognate HPs, AHP1. AHP1 binds AHK5RD via a prominent hydrogen bond docking ridge and a hydrophobic patch. These features are conserved among all AHP proteins, but differ significantly from other structurally characterized prokaryotic and eukaryotic HPs. Surface plasmon resonance experiments show that AHK5RD binds to AHP1-3 with similar, micromolar affinity, consistent with the transient nature of this signaling complex. Our correlation of structural and functional data provide the first insight, at the atomic level as well as with quantitative affinity data, into the molecular recognition events governing the MSP in plants.
机译:多步磷酸化(MSP)系统定义了植物和许多真核生物中的关键信号转导途径。在该系统中,外部刺激首先导致组氨酸激酶的激活,然后将磷酸基团从激酶的受体结构域(HK RD )转移至下游的胞质磷酸转移蛋白(HPs) 。为了确定该信号中继系统的特异性决定因素,我们已经解决了植物HK RD ,AHK5 RD 的第一个晶体结构,与其中一个复杂相关HP,AHP1。 AHP1通过一个突出的氢键对接脊和一个疏水性补丁结合AHK5 RD 。这些特征在所有AHP蛋白中都是保守的,但与其他结构特征的原核和真核HP明显不同。表面等离子体共振实验表明,AHK5 RD 以相似的微摩尔亲和力与AHP1-3结合,这与该信号复合物的瞬时性质一致。我们在原子水平以及定量亲和力数据上对结构和功能数据的相关性提供了第一个见识,以了解控制植物中MSP的分子识别事件。

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