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Calcium and ATP control multiple vital functions

机译:钙和ATP控制多种生命机能

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摘要

Life on Planet Earth, as we know it, revolves around adenosine triphosphate (ATP) as a universal energy storing molecule. The metabolism of ATP requires a low cytosolic Ca2+ concentration, and hence tethers these two molecules together. The exceedingly low cytosolic Ca2+ concentration (which in all life forms is kept around 50-100 nM) forms the basis for a universal intracellular signalling system in which Ca2+ acts as a second messenger. Maintenance of transmembrane Ca2+ gradients, in turn, requires ATP-dependent Ca2+ transport, thus further emphasizing the inseparable links between these two substances. Ca2+ signalling controls the most fundamental processes in the living organism, from heartbeat and neurotransmission to cell energetics and secretion. The versatility and plasticity of Ca2+ signalling relies on cell specific Ca2+ signalling toolkits, remodelling of which underlies adaptive cellular responses. Alterations of these Ca2+ signalling toolkits lead to aberrant Ca2+ signalling which is fundamental for the pathophysiology of numerous diseases from acute pancreatitis to neurodegeneration. This paper introduces a theme issue on this topic, which arose from a Royal Society Theo Murphy scientific meeting held in March 2016.
机译:众所周知,地球上的生命围绕三磷酸腺苷(ATP)作为一种通用的储能分子而旋转。 ATP的代谢需要低的胞质Ca2 +浓度,因此将这两个分子束缚在一起。极低的胞质Ca2 +浓度(在所有生命形式中均保持在50-100 nM左右)构成了通用细胞内信号系统的基础,其中Ca2 +充当第二信使。维持跨膜Ca2 +梯度又需要依赖ATP的Ca2 +转运,因此进一步强调了这两种物质之间不可分割的联系。 Ca2 +信号传导控制着生物体内最基本的过程,从心跳和神经传递到细胞能量和分泌。 Ca2 +信号传导的多功能性和可塑性取决于细胞特有的Ca2 +信号传导工具包,其重塑是适应性细胞反应的基础。这些Ca2 +信号传递工具包的更改会导致异常的Ca2 +信号传递,这对于从急性胰腺炎到神经退行性疾病等多种疾病的病理生理至关重要。本文介绍了有关此主题的主题问题,该主题问题源于2016年3月举行的皇家学会Theo Murphy科学会议。

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