Hammond T G, Yusufi A N, Knox F G, Dousa T P
Nephrology Research Unit, Department of Physiology, Mayo Medical School, Rochester, Minnesota, 55905, USA.
J Clin Invest. 1985 Jun;75(6):1983-9. doi: 10.1172/JCI111916.
The newly discovered peptides extracted from cardiac atria, atrial natriuretic factors (ANFs), when administered parenterally cause renal hemodynamic changes and natriuresis. The nephron sites and cellular mechanism accounting for profound increase in Na+ excretion in response to ANFs are not yet clarified. In the present study we investigated whether synthetic ANF peptide alters the reabsorption of Na+ and reabsorption of solutes cotransported with Na+ in the proximal tubules of rats. Synthetic ANF peptide consisting of 26 amino acids, 4 micrograms/kg body wt/h, or vehicle in controls, was infused to surgically thyroparathyroidectomized anesthetized rats. After determination of the fractional excretion (FE) of electrolytes (Na+, K+, Pi, Ca2+, Mg2+, HCO3), the kidneys were removed and luminal brush border membrane vesicles (BBMVs) were prepared from renal cortex. Solute transport was measured in BBMVs by rapid filtration techniques. Infusion of ANF peptide increased FENa, FEPi, and FEHCO3; but FECa, FEK, and FEMg were not changed. The increase in FENa was significantly correlated, on the one hand, with increase of FEPi (r = 0.9, n = 7; P less than 0.01) and with increase of FEHCO3 (r = 0.89, n = 7; P less than 0.01). On the other hand, FENa did not correlate with FEK, FECa, or with FEMg. The Na+ gradient-dependent uptake of Pi by BBMVs prepared from renal cortex of rats receiving ANF infusion was significantly (P less than 0.05) decreased (-25%), whereas the Na+ gradient-dependent uptake of L-[3H]proline and of D-[3H]glucose or the diffusional uptake of 22Na+ were not changed. ANF-elicited change in FEPi showed a close inverse correlation with decrease of Na+-dependent Pi uptake by BBMVs isolated from infused rats (r = 0.99, n = 7; P less than 0.001). Direct addition of ANF to BBMVs in vitro did not change the Na+ gradient-dependent Pi uptake. In rats infused with ANF, the rate of amiloride-sensitive Na+-H+ exchange across the brush border membrane (BBM) was significantly (P less than 0.05) decreased (-40%), whereas the diffusional 22Na+ uptake (0.5 min) and the equilibrium (120 min) uptake of 22Na+ were not changed. The inhibition of Na+-H+ exchange after ANF was likely due to alteration of the BBM antiporter itself, in that the H+ conductance of BBMVs was not increased. We conclude that synthetic ANF (a) decreases tubular Na+ reabsorption linked to reabsorption of HCO3 in proximal tubules, and (b) inhibits proximal tubular reabsorption of Pi coupled to Na+ reabsorption, independent of secretion and/or action of parathyroid hormone or calcitonin. These ANF effects are associated with inhibition of Na+-Pi synport and of Na+-H+ antiport in luminal BBMs. Our findings document that inhibition of Na+-coupled transport processes in proximal tubules is an integral part of the renal response to ANF.
从心脏心房中提取的新发现的肽类,即心钠素(ANFs),经肠道外给药时会引起肾脏血流动力学变化和利钠作用。对心钠素产生反应时,导致Na⁺排泄显著增加的肾单位部位和细胞机制尚未阐明。在本研究中,我们调查了合成的心钠素肽是否会改变大鼠近端小管中Na⁺的重吸收以及与Na⁺协同转运的溶质的重吸收。将由26个氨基酸组成的合成心钠素肽,以4微克/千克体重/小时的剂量,或给对照组注入溶媒,注入经手术切除甲状腺和甲状旁腺的麻醉大鼠体内。在测定电解质(Na⁺、K⁺、Pi、Ca²⁺、Mg²⁺、HCO₃)的排泄分数(FE)后,取出肾脏,从肾皮质制备管腔刷状缘膜囊泡(BBMVs)。通过快速过滤技术在BBMVs中测量溶质转运。注入心钠素肽会增加FENa、FEPi和FEHCO₃;但FECa、FEK和FEMg没有变化。一方面,FENa的增加与FEPi的增加显著相关(r = 0.9,n = 7;P < 0.01)以及与FEHCO₃的增加显著相关(r = 0.89,n = 7;P < 0.01)。另一方面,FENa与FEK、FECa或FEMg均无相关性。从接受心钠素注入的大鼠肾皮质制备的BBMVs中,Pi的Na⁺梯度依赖性摄取显著(P < 0.05)降低(-25%),而L-[³H]脯氨酸和D-[³H]葡萄糖的Na⁺梯度依赖性摄取或²²Na⁺的扩散性摄取没有变化。心钠素引起的FEPi变化与从注入大鼠分离的BBMVs中Na⁺依赖性Pi摄取的降低密切负相关(r = 0.99,n = 7;P < 0.001)。在体外将心钠素直接添加到BBMVs中不会改变Na⁺梯度依赖性Pi摄取。在注入心钠素的大鼠中,跨刷状缘膜(BBM)的氨氯地平敏感的Na⁺-H⁺交换速率显著(P < 0.05)降低(-40%),而²²Na⁺的扩散性摄取(0.5分钟)和²²Na⁺的平衡(120分钟)摄取没有变化。心钠素后对Na⁺-H⁺交换的抑制可能是由于BBM反向转运体本身的改变,因为BBMVs的H⁺传导性没有增加。我们得出结论,合成的心钠素(a)减少近端小管中与HCO₃重吸收相关的肾小管Na⁺重吸收,并且(b)抑制与Na⁺重吸收偶联的近端小管Pi重吸收,独立于甲状旁腺激素或降钙素的分泌和/或作用。这些心钠素效应与管腔BBMs中Na⁺-Pi同向转运和Na⁺-H⁺反向转运的抑制相关。我们的研究结果证明,近端小管中Na⁺偶联转运过程的抑制是肾脏对心钠素反应的一个组成部分。