Parekh Anant B
Department of Physiology, University of Oxford, Parks Road, Oxford, OX1 3PT, UK.
Pflugers Arch. 2006 Dec;453(3):303-11. doi: 10.1007/s00424-006-0089-y. Epub 2006 Jun 21.
The development of the patch clamp technique has revolutionised our understanding of the life sciences. One area in which it has made an enormous contribution is cellular signalling. In many cell types, calcium influx across the plasma membrane is essential for the regulation of a wide range of critical physiological responses including secretion, gene transcription and cell growth. For many years the calcium influx pathways in non-excitable cells remained unknown, despite their importance in physiological and pathophysiological states. Very careful and insightful work by James Putney led to the formulation of the capacitative calcium entry (store-operated calcium influx) model, in which the process of emptying intracellular calcium stores resulted in the activation of calcium entry channels. Unequivocal evidence for this revolutionary model was provided by patch clamp studies carried out by Markus Hoth and Reinhold Penner, who demonstrated that store depletion activated a novel class of calcium channel called the CRAC channel. This review provides a historical perspective on the development of store-operated calcium influx and how patch clamping resolved a long-standing controversy in cell physiology. The review also discusses current ideas relating to how store emptying opens channels in the plasma membrane.
膜片钳技术的发展彻底改变了我们对生命科学的理解。它做出巨大贡献的一个领域是细胞信号传导。在许多细胞类型中,钙离子跨质膜内流对于调节包括分泌、基因转录和细胞生长在内的一系列关键生理反应至关重要。尽管非兴奋性细胞中的钙内流途径在生理和病理生理状态中很重要,但多年来一直不为人知。詹姆斯·帕特尼非常细致且富有洞察力的工作导致了容量性钙内流(储存-操作性钙内流)模型的形成,在该模型中,排空细胞内钙储存的过程会导致钙内流通道的激活。马库斯·霍斯和莱因霍尔德·彭纳进行的膜片钳研究为这个革命性的模型提供了确凿的证据,他们证明储存耗竭会激活一类名为CRAC通道的新型钙通道。这篇综述提供了关于储存-操作性钙内流发展的历史视角,以及膜片钳技术如何解决细胞生理学中一个长期存在的争议。该综述还讨论了当前关于储存排空如何打开质膜通道的观点。