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蒺藜苜蓿组氨酸含有磷酸转移蛋白:植物细胞分裂素信号转导途径的结构和生化见解。

Medicago truncatula histidine-containing phosphotransfer protein: structural and biochemical insights into the cytokinin transduction pathway in plants.

机构信息

Center for Biocrystallographic Research, Institute of Bioorganic Chemistry, Polish Academy of Sciences, Poznan, Poland.

出版信息

FEBS J. 2013 Aug;280(15):3709-20. doi: 10.1111/febs.12363. Epub 2013 Jun 24.

Abstract

Histidine-containing phosphotransfer proteins (HPts) take part in hormone signal transduction in higher plants. The overall pathway of this process is reminiscent of the two-component system initially identified in prokaryotes. HPts function in histidine-aspartate phosphorelays in which they mediate the signal from sensory kinases (usually membrane proteins) to RRs in the nucleus. Here, we report the crystal structure of an HPt protein from Medicago truncatula (MtHPt1) determined at 1.45 Å resolution and refined to an R-factor of 16.7% using low-temperature synchrotron-radiation X-ray diffraction data. There is one MtHPt1 molecule in the asymmetric unit of the crystal lattice with P2(1)2(1)2(1) symmetry. The protein fold consists of six α helices, four of which form a C-terminal helix bundle. The coiled-coil structure of the bundle is stabilized by a network of S-aromatic interactions involving highly conserved sulfur-containing residues. The structure reveals a solvent-exposed side chain of His79, which is the phosphorylation site, as demonstrated by autoradiography combined with site-directed mutation. It is surrounded by highly conserved residues present in all plant HPts. These residues form a putative docking interface for either the receiver domain of the sensory kinase, or for the RR. The biological activity of MtHPt1 was tested by autoradiography. It demonstrated phosphorylation by the intracellular kinase domain of the cytokinin receptor MtCRE1. Complex formation between MtHPt1 and the intracellular fragment of MtCRE1 was confirmed by thermophoresis, with a dissociation constant K(d) of 14 μM.

摘要

组氨酸残基含有磷酸转移蛋白 (HPt) 在高等植物激素信号转导中发挥作用。这一过程的总体途径类似于最初在原核生物中发现的双组分系统。HPt 在组氨酸-天冬氨酸磷酸传递中发挥作用,在该过程中,它们将信号从感应激酶(通常是膜蛋白)传递到核中的 RR。在这里,我们报告了来自紫花苜蓿(MtHPt1)的 HPt 蛋白的晶体结构,该结构在 1.45 Å 分辨率下确定,并使用低温同步辐射 X 射线衍射数据进行了 16.7%的 R 因子细化。在晶体晶格的不对称单元中,有一个 MtHPt1 分子,其具有 P2(1)2(1)2(1) 对称性。该蛋白折叠由六个α螺旋组成,其中四个形成 C 末端螺旋束。该束的卷曲螺旋结构通过涉及高度保守含硫残基的 S-芳环相互作用网络稳定。结构揭示了 His79 的暴露在溶剂中的侧链,如放射性自显影结合定点突变所证明的那样,该残基是磷酸化位点。它被所有植物 HPt 中存在的高度保守残基所包围。这些残基形成了一个假定的 docking 界面,用于感应激酶的受体结构域,或 RR。通过放射性自显影测试了 MtHPt1 的生物学活性。它证明了细胞内细胞分裂素受体 MtCRE1 的激酶结构域的磷酸化。通过热泳证实了 MtHPt1 与 MtCRE1 的细胞内片段之间的复合物形成,解离常数 K(d)为 14 μM。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/950f/3716865/309a4683a439/nihms486846f1.jpg

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