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ABI2对过氧化氢的敏感性将脱落酸反应调节因子与氧化还原信号联系起来。

The sensitivity of ABI2 to hydrogen peroxide links the abscisic acid-response regulator to redox signalling.

作者信息

Meinhard Michael, Rodriguez Pedro L, Grill Erwin

机构信息

Lehrstuhl für Botanik, Technische Universität München, Biologikum Weihenstephan, Am Hochanger 4, 85354 Freising, Germany.

出版信息

Planta. 2002 Mar;214(5):775-82. doi: 10.1007/s00425-001-0675-3. Epub 2001 Nov 21.

Abstract

ABI1 and ABI2 are two protein serine/threonine phosphatases of type 2C (EC 3.1.3.16) that act as key regulators in the responses of Arabidopsis thaliana (L.) Heynh. to abscisic acid (ABA). They are involved in the control of ABA-mediated seed dormancy, stomatal closure and vegetative growth inhibition. Analysis of the enzymatic properties of ABI2 revealed high sensitivities towards protons and unsaturated fatty acids. Furthermore, the protein phosphatase activity of ABI2 is very sensitive to H2O2, which has recently emerged as a secondary messenger of ABA signalling. Upon H2O2 challenge, ABI2 is rapidly inactivated with an IC50 value of 50 microM in the presence of reduced glutathione. Inhibitor studies with phenylarsine oxide and manipulation of the redox status of ABI2 in vitro indicate that oxidation of critical cysteine residue(s) is responsible for inactivation. The levels of the major cellular thiol compounds cysteine and glutathione in leaves and seedlings of A. thaliana are compatible with a physiological role of H2O2 in regulating ABI2 activity. ABI2 is considered to exert negative regulation on ABA action. Thus, transient inactivation of this protein phosphatase by H2O2 would allow or enhance the ABA-dependent signalling process. In conclusion, ABI2 represents a likely target for redox-regulation of a hormonal signalling pathway in higher plants.

摘要

ABI1和ABI2是两种2C型蛋白丝氨酸/苏氨酸磷酸酶(EC 3.1.3.16),它们在拟南芥对脱落酸(ABA)的响应中作为关键调节因子发挥作用。它们参与ABA介导的种子休眠、气孔关闭和营养生长抑制的调控。对ABI2酶学性质的分析表明,它对质子和不饱和脂肪酸高度敏感。此外,ABI2的蛋白磷酸酶活性对H2O2非常敏感,H2O2最近已成为ABA信号传导的第二信使。在H2O2刺激下,在还原型谷胱甘肽存在的情况下,ABI2会迅速失活,IC50值为50微摩尔。用氧化苯胂进行的抑制剂研究以及在体外对ABI2氧化还原状态的操纵表明,关键半胱氨酸残基的氧化是失活的原因。拟南芥叶片和幼苗中主要细胞硫醇化合物半胱氨酸和谷胱甘肽的水平与H2O2在调节ABI2活性中的生理作用相符。ABI2被认为对ABA作用发挥负调控。因此,H2O2对这种蛋白磷酸酶的瞬时失活将允许或增强ABA依赖的信号传导过程。总之,ABI2代表了高等植物激素信号通路氧化还原调节的一个可能靶点。

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