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Titlebook: Coding and Decoding of Calcium Signals in Plants; Sheng Luan Book 2011 Springer-Verlag Berlin Heidelberg 2011 calcium.calcium sensors.ion

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Decoding of Calcium Signal Through Calmodulin: Calmodulin-Binding Proteins in Plants,ble calmodulin to bind and regulate a broad spectrum of target proteins which are involved in diverse cellular/physiological functions in plants. Hence, calmodulin is considered to be a multifunctional regulatory protein although calmodulin itself usually has no enzymatic or biochemical functions. P
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,The CBL–CIPK Network for Decoding Calcium Signals in Plants,cularly important for triggering physiological responses to environmental perturbations or stresses. Calcineurin B-Like proteins (CBLs) are prominent examples of plant calcium-sensor proteins involved in environmental responses. CBLs regulate the activities of a family of SNF1-related kinases, known
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Innovation and Data in Smart Citiesransitions in the cytoplasmic gel structure. In addition, investigations into the complex language structure that underpins the Ca.-dependent kinase/phosphatase network should advance understanding enormously.
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The Sacred Hush: Death, Elegy, and ,,e ion diffusion potential in an aqueous solution. At the same time, channels are .; permeation through their pore can only occur when factors that regulate this conductance lead to physical changes in the protein structure that allow for ion movement through the conduction pathway of the protein.
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Cyclic Nucleotide Gated Channels (CNGCs) and the Generation of Ca2+ Signals,e ion diffusion potential in an aqueous solution. At the same time, channels are .; permeation through their pore can only occur when factors that regulate this conductance lead to physical changes in the protein structure that allow for ion movement through the conduction pathway of the protein.
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Annexins, of plant annexins, suggesting that they could act as intersections between calcium and reactive oxygen-signalling pathways. The ability of plant annexins to bind actin, hydrolyse ATP/GTP and act as peroxidases sets them apart from conventional calcium transporters. Here, their structure and functions are reviewed.
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