Wang T, Yang C L, Abbiati T, Schultheis P J, Shull G E, Giebisch G, Aronson P S
Departments of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520-8029, USA.
Am J Physiol. 1999 Aug;277(2):F298-302. doi: 10.1152/ajprenal.1999.277.2.F298.
NHE3 is the predominant isoform responsible for apical membrane Na(+)/H(+) exchange in the proximal tubule. Deletion of NHE3 by gene targeting results in an NHE3(-/-) mouse with greatly reduced proximal tubule HCO(-)(3) absorption compared with NHE3(+/+) animals (P. J. Schultheis, L. L. Clarke, P. Meneton, M. L. Miller, M. Soleimani, L. R. Gawenis, T. M. Riddle, J. J. Duffy, T. Doetschman, T. Wang, G. Giebisch, P. S. Aronson, J. N. Lorenz, and G. E. Shull. Nature Genet. 19: 282-285, 1998). The purpose of the present study was to evaluate the role of other acidification mechanisms in mediating the remaining component of proximal tubule HCO(-)(3) reabsorption in NHE3(-/-) mice. Proximal tubule transport was studied by in situ microperfusion. Net rates of HCO(-)(3) (J(HCO3)) and fluid absorption (J(v)) were reduced by 54 and 63%, respectively, in NHE3 null mice compared with controls. Addition of 100 microM ethylisopropylamiloride (EIPA) to the luminal perfusate caused significant inhibition of J(HCO3) and J(v) in NHE3(+/+) mice but failed to inhibit J(HCO3) or J(v) in NHE3(-/-) mice, indicating lack of activity of NHE2 or other EIPA-sensitive NHE isoforms in the null mice. Addition of 1 microM bafilomycin caused a similar absolute decrement in J(HCO3) in wild-type and NHE3 null mice, indicating equivalent rates of HCO(-)(3) absorption mediated by H(+)-ATPase. Addition of 10 microM Sch-28080 did not reduce J(HCO3) in either wild-type or NHE3 null mice, indicating lack of detectable H(+)-K(+)-ATPase activity in the proximal tubule. We conclude that, in the absence of NHE3, neither NHE2 nor any other EIPA-sensitive NHE isoform contributes to mediating HCO(-)(3) reabsorption in the proximal tubule. A significant component of HCO(-)(3) reabsorption in the proximal tubule is mediated by bafilomycin-sensitive H(+)-ATPase, but its activity is not significantly upregulated in NHE3 null mice.
NHE3是负责近端小管顶端膜Na(+)/H(+)交换的主要亚型。通过基因靶向删除NHE3会产生NHE3(-/-)小鼠,与NHE3(+/+)动物相比,其近端小管HCO(-)(3)重吸收大幅减少(P. J. 舒尔特海斯、L. L. 克拉克、P. 梅内顿、M. L. 米勒、M. 索莱马尼、L. R. 加韦尼斯、T. M. 里德尔、J. J. 达菲、T. 德奇曼、T. 王、G. 吉比施、P. S. 阿隆森、J. N. 洛伦兹和G. E. 舒尔。《自然遗传学》19: 282 - 285, 1998)。本研究的目的是评估其他酸化机制在介导NHE3(-/-)小鼠近端小管HCO(-)(3)重吸收剩余部分中的作用。通过原位微灌注研究近端小管转运。与对照组相比,NHE3基因敲除小鼠的HCO(-)(3)净转运率(J(HCO3))和液体吸收率(J(v))分别降低了54%和63%。向管腔灌注液中添加100微摩尔乙基异丙基氨氯地平(EIPA)可显著抑制NHE3(+/+)小鼠的J(HCO3)和J(v),但未能抑制NHE3(-/-)小鼠的J(HCO3)或J(v),这表明基因敲除小鼠中缺乏NHE2或其他EIPA敏感的NHE亚型的活性。添加1微摩尔巴弗洛霉素会使野生型和NHE3基因敲除小鼠的J(HCO3)出现类似的绝对下降,这表明由H(+)-ATP酶介导的HCO(-)(3)重吸收率相当。添加10微摩尔Sch - 28080在野生型或NHE3基因敲除小鼠中均未降低J(HCO3),这表明近端小管中未检测到H(+)-K(+)-ATP酶活性。我们得出结论,在缺乏NHE3的情况下,NHE2或任何其他EIPA敏感的NHE亚型均不参与介导近端小管中的HCO(-)(3)重吸收。近端小管中HCO(-)(3)重吸收的一个重要部分由对巴弗洛霉素敏感的H(+)-ATP酶介导,但其活性在NHE3基因敲除小鼠中未显著上调。