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植物识别细胞外 ATP 的分子机制。

Molecular Mechanism of Plant Recognition of Extracellular ATP.

机构信息

Divisions of Plant Science and Biochemistry, Christopher S. Bond Life Sciences Center, University of Missouri, Columbia, MO, 65211, USA.

Department of Plant Sciences, University of Cambridge, Downing street, Cambridge, CB2 3EA, UK.

出版信息

Adv Exp Med Biol. 2017;1051:233-253. doi: 10.1007/5584_2017_110.

Abstract

Adenosine 5'-triphosphate (ATP), a ubiquitously dispersed biomolecule, is not only a major source of biochemical energy for living cells, but also acts as a critical signaling molecule through inter-cellular communication. Recent studies have clearly shown that extracellular ATP is involved in various physiological processes in plants, including root growth, stomata movement, pollen tube development, gravitropism, and abiotic/biotic stress responses. The first plant purinergic receptor for extracellular ATP, DORN1 (the founding member of the P2K family of purinergic receptors), was identified in Arabidopsis thaliana by a forward genetic screen. DORN1 consists of an extracellular lectin domain, transmembrane domain, and serine/threonine kinase, intracellular domain. The predicted structure of the DORN1 extracellular domain revealed putative key ATP binding residues but an apparent lack of sugar binding. In this chapter, we summarize recent studies on the molecular mechanism of plant recognition of extracellular ATP with specific reference to the role of DORN1.

摘要

三磷酸腺苷(ATP)是一种广泛分布的生物分子,不仅是活细胞生化能量的主要来源,还作为一种关键的信号分子通过细胞间通讯发挥作用。最近的研究清楚地表明,细胞外 ATP 参与植物的各种生理过程,包括根生长、气孔运动、花粉管发育、向重力性和非生物/生物胁迫反应。通过正向遗传学筛选,在拟南芥中鉴定出第一个细胞外 ATP 的植物嘌呤能受体 DORN1(嘌呤能受体 P2K 家族的创始成员)。DORN1 由细胞外凝集素结构域、跨膜结构域和丝氨酸/苏氨酸激酶、细胞内结构域组成。DORN1 细胞外结构域的预测结构揭示了潜在的关键 ATP 结合残基,但明显缺乏糖结合。在本章中,我们总结了近年来关于植物识别细胞外 ATP 的分子机制的研究,特别提到了 DORN1 的作用。

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