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细胞pH对乌龟膀胱中主动质子转运的控制。

Control of active proton transport in turtle urinary bladder by cell pH.

作者信息

Cohen L H, Steinmetz P R

出版信息

J Gen Physiol. 1980 Sep;76(3):381-93. doi: 10.1085/jgp.76.3.381.

Abstract

The rate of active H+ secretion (JH) across the luminal cell membrane of the turtle bladder decreases linearly with the chemical (delta pH) or electrical potential gradient (delta psi) against which secretion occurs. To examine the control of JH from the cell side of the pump, acid-base changes were imposed on the cellular compartment by increasing serosal[HCO3-] at constant PCO2 or by varying PCO2 at constant [HCO3-]. When serosal [HCO3-] was increased from 0 to 60 mM, cell [H+] decreased, as estimated by the 5,5-dimethyloxazoladine-2,4-dione method. JH was a saturable function of cell [H+], with an apparent Km of 25 nM. When PCO2 was varied between 1 and 20% at various serosal Km of 25 nM. When PCO2 was varied between 1 and 20% at various serosal [HCO3-], the PCO2 required to reach a maximal JH increased with [HCO3-] so that JH was a function of cell [H+] rather than of cell [HCO3-] or CO2. The proton pump was controlled asymmetrically with respect to the pH component of the electrochemical potential for protons, microH. On the cell side of the pump, a delta pH of < 1 U was required to vary JH between maximal and zero values, whereas on the luminal side a delta pH of 3 U was required. Cell [H+] regulates JH by determining the availability of H+ to the pump in a relationship resembling Michaelis-Menten kinetics. Increasing luminal [H+] generates an energy barrier at a luminal pH near 4.4 that equals the free energy (per H+ translocated) of the metabolic driving reaction.

摘要

龟膀胱管腔细胞膜上的活性H⁺分泌速率(JH)随分泌所对抗的化学(ΔpH)或电势梯度(Δψ)呈线性下降。为了从泵的细胞侧研究JH的调控,通过在恒定PCO₂下增加浆膜[HCO₃⁻]或在恒定[HCO₃⁻]下改变PCO₂,对细胞内环境进行酸碱变化处理。当浆膜[HCO₃⁻]从0增加到60 mM时,用5,5 - 二甲基恶唑烷 - 2,4 - 二酮法估计细胞[H⁺]降低。JH是细胞[H⁺]的饱和函数,表观Km为25 nM。当在不同浆膜[HCO₃⁻]下PCO₂在1%至20%之间变化时,达到最大JH所需的PCO₂随[HCO₃⁻]增加,因此JH是细胞[H⁺]的函数,而非细胞[HCO₃⁻]或CO₂的函数。质子泵相对于质子电化学势的pH组分(微H)受到不对称调控。在泵的细胞侧,需要<1 U的ΔpH才能使JH在最大值和零值之间变化,而在管腔侧则需要3 U的ΔpH。细胞[H⁺]通过确定H⁺对泵的可用性来调节JH,其关系类似于米氏动力学。增加管腔[H⁺]会在管腔pH接近4.4时产生一个能量屏障,该屏障等于代谢驱动反应的自由能(每转运一个H⁺)。

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