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Calcium homeostasis and signaling in yeast cells and cardiac myocytes

机译:酵母细胞和心肌细胞中的钙稳态和信号传导

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摘要

Calcium ions are the most ubiquitous and versatile signaling molecules in eukaryotic cells. Calcium homeostasis and signaling systems are crucial for both the normal growth of the budding yeast Saccharomyces cerevisiae and the intricate working of the mammalian heart. In this paper, we make a detailed comparison between the calcium homeostasis/signaling networks in yeast cells and those in mammalian cardiac myocytes. This comparison covers not only the components, structure and function of the networks but also includes existing knowledge on the measured and simulated network dynamics using mathematical models. Surprisingly, most of the factors known in the yeast calcium homeostasis/signaling network are conserved and operate similarly in mammalian cells, including cardiac myocytes. Moreover, the budding yeast S. cerevisiae is a simple organism that affords powerful genetic and genomic tools. Thus, exploring and understanding the calcium homeostasis/signaling system in yeast can provide a shortcut to help understand calcium homeostasis/signaling systems in mammalian cardiac myocytes. In turn, this knowledge can be used to help treat relevant human diseases such as pathological cardiac hypertrophy and heart failure.
机译:钙离子是真核细胞中最普遍和最通用的信号分子。钙稳态和信号传递系统对于发芽酵母酿酒酵母的正常生长和哺乳动物心脏的复杂工作都至关重要。在本文中,我们对酵母细胞中的钙稳态/信号网络与哺乳动物心肌细胞中的钙稳态/信号网络进行了比较。这种比较不仅涵盖网络的组件,结构和功能,还包括使用数学模型对已测量和模拟的网络动态进行的现有知识。出人意料的是,酵母钙稳态/信号网络中已知的大多数因素在哺乳动物细胞(包括心肌细胞)中均得到保守并类似地起作用。而且,发芽的酿酒酵母是一种简单的生物,具有强大的遗传和基因组工具。因此,探索和了解酵母中的钙稳态/信号传导系统可以提供捷径,以帮助了解哺乳动物心肌细胞中的钙稳态/信号传导系统。反过来,这些知识可用于帮助治疗相关的人类疾病,例如病理性心脏肥大和心力衰竭。

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