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评估光调节重力感应中钙作用的潜在靶点。

Assessing potential targets of calcium action in light-modulated gravitropism.

作者信息

Roux S J

机构信息

Department of Botany, The University of Texas at Austin 78713, USA.

出版信息

ASGSB Bull. 1995 Oct;8(2):83-92.

Abstract

Light, through the mediation of the pigment phytochrome, modulates the gravitropic response of the shoots and roots of many plants. The transduction of both light and gravity stimuli appears to involve Ca(2+)-regulated steps, one or more of which may represent points of intersection between the two transduction chains. To be confident that Ca2+ plays a critical role in stimulus-response coupling for gravitropism, it will be important to identify specific targets of Ca2+ action whose function can be clearly linked to the regulation of growth. Calcium typically exerts its influence on cell metabolism through binding to and activating key regulatory proteins. The three best characterized of these proteins in plants are the calmodulins, calcium-dependent protein kinases, and annexins. In this review we summarize what is known about the structure and function of these proteins and speculate on how their activation by Ca2+ could influence the differential growth response of gravitropism.

摘要

光通过色素光敏色素的介导,调节许多植物地上部分和根的向重力性反应。光刺激和重力刺激的转导似乎都涉及Ca(2+)调节步骤,其中一个或多个步骤可能代表两条转导链的交汇点。为了确定Ca2+在向重力性的刺激-反应偶联中起关键作用,识别Ca2+作用的特定靶点很重要,其功能可与生长调节明确相关。钙通常通过与关键调节蛋白结合并激活它们来对细胞代谢施加影响。植物中这些蛋白中研究得最清楚的三种是钙调蛋白、钙依赖蛋白激酶和膜联蛋白。在这篇综述中,我们总结了关于这些蛋白的结构和功能的已知信息,并推测它们被Ca2+激活如何影响向重力性的差异生长反应。

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