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NDPK2作为光敏色素介导的光信号传导中的信号转导分子。

NDPK2 as a signal transducer in the phytochrome-mediated light signaling.

作者信息

Shen Yu, Kim Jeong-Il, Song Pill-Soon

机构信息

Department of Chemistry, University of Nebraska, Lincoln, NE 68588-0304, USA.

出版信息

J Biol Chem. 2005 Feb 18;280(7):5740-9. doi: 10.1074/jbc.M408965200. Epub 2004 Nov 23.

Abstract

Nucleoside-diphosphate kinase (NDPK) 2 in Arabidopsis has been identified as a phytochrome-interacting protein by using the C-terminal domain of phytochrome A (PhyA) as the bait in yeast two-hybrid screening. The far-red light-absorbing form of phytochrome (Pfr) A stimulates NDPK2 gamma-phosphate exchange activity in vitro. To better understand the multiple functions of NDPK and its role in phytochrome-mediated signaling, we characterized the interaction between phytochrome and NDPK2. Domain studies revealed that PER-ARNT-SIM domain A in the C-terminal domain of phytochrome is the binding site for NDPK2. Additionally, phytochrome recognizes both the NDPK2 C-terminal fragment and the NDPK2 hexameric structure to fulfill its binding. To illustrate the mechanism of how the Pfr form of phytochrome stimulates NDPK2, His-197-surrounding residue mutants were made and tested. Results suggested that the H-bonding with His-197 inside the nucleotide-binding pocket is critical for NDPK2 functioning. The pH dependence profiles of NDPK2 indicated that mutants with different activities from the wild type have different pK(a) values of His-197 and that NDPK2 hyperactive mutants possess lower pK(a) values. Because a lower pK(a) value of His-197 accelerates NDPK2 autophosphorylation and the phospho-transfer between the phosphorylated NDPK2 and its kinase substrate, we concluded that the Pfr form of phytochrome stimulates NDPK2 by lowering the pK(a) value of His-197.

摘要

通过在酵母双杂交筛选中使用光敏色素A(PhyA)的C末端结构域作为诱饵,已鉴定拟南芥中的核苷二磷酸激酶(NDPK)2为一种光敏色素相互作用蛋白。光敏色素(Pfr)A的远红光吸收形式在体外刺激NDPK2的γ-磷酸交换活性。为了更好地理解NDPK的多种功能及其在光敏色素介导的信号传导中的作用,我们对光敏色素与NDPK2之间的相互作用进行了表征。结构域研究表明,光敏色素C末端结构域中的PER-ARNT-SIM结构域A是NDPK2的结合位点。此外,光敏色素识别NDPK2的C末端片段和NDPK2六聚体结构以实现其结合。为了阐明光敏色素的Pfr形式刺激NDPK2的机制,制备并测试了His-197周围残基突变体。结果表明,核苷酸结合口袋内与His-197的氢键对于NDPK2的功能至关重要。NDPK2的pH依赖性图谱表明,与野生型具有不同活性的突变体具有不同的His-197 pK(a)值,并且NDPK2高活性突变体具有较低的pK(a)值。由于His-197较低的pK(a)值加速了NDPK2的自磷酸化以及磷酸化的NDPK2与其激酶底物之间的磷酸转移,我们得出结论,光敏色素的Pfr形式通过降低His-197的pK(a)值来刺激NDPK2。

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