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蛋白质磷酸酶活性和酸碱平衡作为调节植物细胞中光敏色素 A 及其两种天然库状态的因素。

Protein phosphatase activity and acidic/alkaline balance as factors regulating the state of phytochrome A and its two native pools in the plant cell.

机构信息

Biology Department, MV Lomonosov Moscow State University, Moscow, Russia.

出版信息

Photochem Photobiol. 2013 Jan-Feb;89(1):83-96. doi: 10.1111/j.1751-1097.2012.01226.x. Epub 2012 Sep 26.

DOI:10.1111/j.1751-1097.2012.01226.x
PMID:22913784
Abstract

Phytochrome A (phyA), the most versatile plant phytochrome, exists in the two isoforms, phyA' and phyA'', differing by the character of its posttranslational modification, possibly, by phosphorylation at the N-terminal extension [Sineshchekov, V. (2010) J. Botany 2010, Article ID 358372]. This heterogeneity may explain the diverse modes of phyA action. We investigated possible roles of protein phosphatases activity and pH in regulation of the phyA pools' content in etiolated seedlings of maize and their extracts using fluorescence spectroscopy and photochemistry of the pigment. The phyA'/phyA'' ratio varied depending on the state of development of seedlings and the plant tissue/organ used. This ratio qualitatively correlated with the pH in maize root tips. In extracts, it reached a maximum at pH ≈ 7.5 characteristic for the cell cytoplasm. Inhibition of phosphatases of the PP1 and PP2A types with okadaic and cantharidic acids brought about phyA' decline and/or concomitant increase of phyA'' in coleoptiles and mesocotyls, but had no effect in roots, revealing a tissue/organ specificity. Thus, pH and phosphorylation status regulate the phyA'/phyA'' equilibrium and content in the etiolated (maize) cells and this regulation is connected with alteration of the processes of phyA' destruction and/or its transformation into the more stable phyA''.

摘要

光敏色素 A(phyA)是最通用的植物光敏色素,存在两种同工型,phyA'和 phyA'',其区别在于翻译后修饰的特征,可能是在 N 端延伸处发生磷酸化[ Sineshchekov, V. (2010) J. Botany 2010, Article ID 358372]。这种异质性可能解释了 phyA 作用的不同模式。我们使用荧光光谱法和色素光化学法研究了蛋白磷酸酶活性和 pH 值在调节玉米黄化幼苗及其提取物中 phyA 库含量方面的可能作用。phyA'/phyA''的比值取决于幼苗的发育状态和所用植物组织/器官而变化。该比值与玉米根尖的 pH 值定性相关。在提取物中,它在 pH ≈ 7.5 时达到最大值,这是细胞质的特征 pH 值。用渥曼青霉素和斑蝥素抑制 PP1 和 PP2A 类型的磷酸酶,导致 coleoptiles 和 mesocotyls 中的 phyA'下降和/或 phyA''的同时增加,但在根中没有效果,显示出组织/器官特异性。因此,pH 值和磷酸化状态调节黄化(玉米)细胞中 phyA'/phyA''的平衡和含量,这种调节与 phyA'破坏和/或其转化为更稳定的 phyA''的过程改变有关。

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