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Potassium ATPases, channels, and transporters: an overview.

机译:钾ATP酶,通道和转运蛋白:概述。

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摘要

The identification of multigene families encoding K-ATPases, K channels, and K transporters is a major step in understanding the molecular mechanisms engaged in K homeostasis. These membrane proteins, which also transport Na, H, or Cl ions, have been shown to play fundamental roles in cellular housekeeping functions (volume regulation, uptake of nutrients) and in specialized tissue functions (transepithelial transport of solutes and water, uptake of neurotransmitters, control of vascular tone). The association of mutations (especially in the K channels) with human diseases and disorders as well as the creation of animal models harboring specific gene inactivation should allow investigators to reach nonambiguous conclusions about the roles of these genes. These approaches should be complemented by techniques such as DNA array and chip hybridization and computer-based simulation in order to form an integrated view of the functional interactions between the genes underlying physiological and pathological processes.
机译:识别编码K-ATPase,K通道和K转运蛋白的多基因家族是理解参与K稳态的分子机制的重要一步。这些膜蛋白还可以转运Na,H或Cl离子,已被证明在细胞管家功能(调节体积,吸收营养)和特殊组织功能(溶质和水的上皮转运,神经递质的吸收)中起基本作用。 ,控制血管张力)。突变(特别是在K通道中)与人类疾病和失调的关联,以及带有特定基因失活的动物模型的建立,应使研究人员能够就这些基因的作用得出明确的结论。这些方法应辅之以DNA阵列和芯片杂交以及基于计算机的模拟等技术,以形成生理和病理过程基础基因之间功能相互作用的综合视图。

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