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多胺:生长和存活的必需因子。

Polyamines: essential factors for growth and survival.

作者信息

Kusano T, Berberich T, Tateda C, Takahashi Y

机构信息

Graduate School of Life Sciences, Tohoku University, 2-1-1 Karahira, Aoba, Sendai, Miyagi, 980-8577, Japan.

出版信息

Planta. 2008 Aug;228(3):367-81. doi: 10.1007/s00425-008-0772-7. Epub 2008 Jul 2.

Abstract

Polyamines are low molecular weight, aliphatic polycations found in the cells of all living organisms. Due to their positive charges, polyamines bind to macromolecules such as DNA, RNA, and proteins. They are involved in diverse processes, including regulation of gene expression, translation, cell proliferation, modulation of cell signalling, and membrane stabilization. They also modulate the activities of certain sets of ion channels. Because of these multifaceted functions, the homeostasis of polyamines is crucial and is ensured through regulation of biosynthesis, catabolism, and transport. Through isolation of the genes involved in plant polyamine biosynthesis and loss-of-function experiments on the corresponding genes, their essentiality for growth is reconfirmed. Polyamines are also involved in stress responses and diseases in plants, indicating their importance for plant survival. This review summarizes the recent advances in polyamine research in the field of plant science compared with the knowledge obtained in microorganisms and animal systems.

摘要

多胺是存在于所有生物体细胞中的低分子量脂肪族聚阳离子。由于其带正电荷,多胺可与DNA、RNA和蛋白质等大分子结合。它们参与多种过程,包括基因表达调控、翻译、细胞增殖、细胞信号传导调节和膜稳定。它们还调节某些离子通道的活性。由于这些多方面的功能,多胺的稳态至关重要,并通过生物合成、分解代谢和转运的调节来确保。通过分离参与植物多胺生物合成的基因并对相应基因进行功能缺失实验,再次证实了它们对生长的必要性。多胺还参与植物的应激反应和疾病,表明它们对植物生存的重要性。与在微生物和动物系统中获得的知识相比,本综述总结了植物科学领域多胺研究的最新进展。

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