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14-3-3 Proteins in Guard Cell Signaling

机译:保卫细胞信号传导中的14-3-3蛋白

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摘要

Guard cells are specialized cells located at the leaf surface delimiting pores which control gas exchanges between the plant and the atmosphere. To optimize the CO2 uptake necessary for photosynthesis while minimizing water loss, guard cells integrate environmental signals to adjust stomatal aperture. The size of the stomatal pore is regulated by movements of the guard cells driven by variations in their volume and turgor. As guard cells perceive and transduce a wide array of environmental cues, they provide an ideal system to elucidate early events of plant signaling. Reversible protein phosphorylation events are known to play a crucial role in the regulation of stomatal movements. However, in some cases, phosphorylation alone is not sufficient to achieve complete protein regulation, but is necessary to mediate the binding of interactors that modulate protein function. Among the phosphopeptide-binding proteins, the 14-3-3 proteins are the best characterized in plants. The 14-3-3s are found as multiple isoforms in eukaryotes and have been shown to be involved in the regulation of stomatal movements. In this review, we describe the current knowledge about 14-3-3 roles in the regulation of their binding partners in guard cells: receptors, ion pumps, channels, protein kinases, and some of their substrates. Regulation of these targets by 14-3-3 proteins is discussed and related to their function in guard cells during stomatal movements in response to abiotic or biotic stresses.
机译:保卫细胞是位于叶片表面的专门细胞,限定了孔,这些孔控制植物与大气之间的气体交换。为了优化光合作用所需的CO2吸收量,同时最大程度地减少水分流失,保卫细胞整合了环境信号来调节气孔孔径。气孔的大小由保卫细胞的运动调节,保卫细胞的运动由其体积和膨胀的变化驱动。当保卫细胞感知并转导各种各样的环境线索时,它们为阐明植物信号的早期事件提供了理想的系统。已知可逆的蛋白质磷酸化事件在气孔运动的调节中起关键作用。但是,在某些情况下,仅磷酸化不足以实现完整的蛋白质调节,但是介导调节蛋白质功能的相互作用因子的结合是必需的。在磷酸肽结合蛋白中,14-3-3蛋白是植物中特征最好的蛋白。 14-3-3在真核生物中被发现为多种同工型,并已被证明参与气孔运动的调控。在这篇综述中,我们描述了有关14-3-3在调节保卫细胞中的结合伴侣中的作用的当前知识:受体,离子泵,通道,蛋白激酶及其某些底物。讨论了14-3-3蛋白对这些靶标的调节作用,并涉及它们在响应非生物或生物胁迫的气孔运动过程中在保卫细胞中的功能。

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