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BALB/c 3T3细胞内pH的调节。碳酸氢盐通过NaHCO₃/HCl交换提高pH,并减弱血清对Na⁺/H⁺交换的激活作用。

Regulation of intracellular pH in BALB/c 3T3 cells. Bicarbonate raises pH via NaHCO3/HCl exchange and attenuates the activation of Na+/H+ exchange by serum.

作者信息

Gillies R J, Martinez-Zaguilan R

机构信息

Department of Biochemistry, University of Arizona Health Sciences Center, Tucson 85724.

出版信息

J Biol Chem. 1991 Jan 25;266(3):1551-6.

PMID:1846359
Abstract

There is abundant evidence implicating a role for intracellular pH (pHin) in the proliferative response of many cells to mitogenic agents. In mammalian cells, pHin is generally regulated by two systems: Na+/H+ exchange and HCO3- transport. Activation of Na+/H+ exchange is one of the earliest responses of mammalian cells to mitogens. In the absence of HCO3-, this activation raises the pHin. However, in the presence of HCO3-, the effect of mitogens on the pHin is unclear. HCO3- regulates pHin via mechanisms which can either acidify or alkalinize the cytosol, depending on the cell type and tissue of origin. BALB/c 3T3 mouse embryo cells are employed in the present study because they are used extensively in investigations of mammalian cell proliferation. Since these cells are of indefinite origin, there is no way to predict which HCO3- transporting system is operable in these cells and, hence, what effect HCO3- will have on the pHin and the response of pHin to mitogens. In the present article, we examine the mechanism and effect of HCO3(-)-based pHin regulation. Our results indicate that HCO3(-)-dependent pHin regulation in BALB/c 3T3 cells occurs via Na-HCO3/HCl exchange which raises pHin under physiological conditions. This activity can raise the pHin to above the set point of the activated Na+/H+ exchanger, consequently attenuating the mitogen-induced Na+/H+ exchange-mediated increases in pHin.

摘要

有充分证据表明细胞内pH值(pHin)在许多细胞对促有丝分裂剂的增殖反应中发挥作用。在哺乳动物细胞中,pHin通常由两个系统调节:Na+/H+交换和HCO3-转运。Na+/H+交换的激活是哺乳动物细胞对促有丝分裂剂的最早反应之一。在没有HCO3-的情况下,这种激活会提高pHin。然而,在有HCO3-存在时,促有丝分裂剂对pHin的影响尚不清楚。HCO3-通过可使细胞质酸化或碱化的机制调节pHin,这取决于细胞类型和来源组织。本研究采用BALB/c 3T3小鼠胚胎细胞,因为它们在哺乳动物细胞增殖研究中被广泛使用。由于这些细胞来源不确定,无法预测这些细胞中哪种HCO3-转运系统是可操作的,因此也无法预测HCO3-对pHin以及pHin对促有丝分裂剂反应的影响。在本文中,我们研究了基于HCO3-的pHin调节机制及其影响。我们的结果表明,BALB/c 3T3细胞中依赖HCO3-的pHin调节是通过Na-HCO3/HCl交换发生的,在生理条件下会提高pHin。这种活性可将pHin提高到高于激活的Na+/H+交换体的设定点,从而减弱促有丝分裂剂诱导的由Na+/H+交换介导的pHin升高。

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