Levi M, Baird B M, Wilson P V
Department of Internal Medicine, Dallas Veterans Administration Medical Center, Texas 75216.
J Clin Invest. 1990 Jan;85(1):231-7. doi: 10.1172/JCI114417.
In dietary phosphate (Pi) deprivation and in aging there is an inverse correlation between renal proximal tubular brush border membrane (BBM) cholesterol (Chol) content, BBM fluidity, and BBM sodium gradient-dependent Pi transport activity (Na-Pi cotransport). The purpose of this study was to determine whether in vitro enrichment of renal BBM with Chol has a direct modulating effect on Na-Pi cotransport. 12 and 24 mol % increases in Chol content caused dose-dependent decreases in Na-Pi cotransport activity, 2,000 in control, vs. 1,450 in Chol (+12%), vs. 900 pmol/5 s/mg BBM protein in Chol (+24%), all P less than 0.01, which was paralleled by dose-dependent increases in the fluorescence anisotropy of diphenylhexatriene, rDPH, i.e., decrease in BBM fluidity, 0.203 in control, vs. 0.210 in Chol (+12%), vs. 0.219 in Chol (+24%), all P less than 0.01. We found that increasing ambient temperature, which increases BBM fluidity independent of changes in Chol content, increased Na-Pi cotransport. When Na-Pi cotransport was analyzed as a function of BBM fluidity, 1/rDPH, we found that at an equivalent BBM fluidity BBM Chol enrichment still resulted in a dose-dependent decrease in Na-Pi cotransport. Finally, in BBM isolated from rats fed a low Pi diet in vitro enrichment with Chol completely reversed the adaptive increases in Na-Pi cotransport and fluidity. Our study therefore, indicates that Chol is a direct modulator of renal BBM Na-Pi cotransport activity, and that in vivo alterations in BBM Chol content most likely plays an important role in the regulation of renal tubular Pi transport.
在饮食中磷(Pi)缺乏和衰老过程中,肾近端小管刷状缘膜(BBM)胆固醇(Chol)含量、BBM流动性与BBM钠梯度依赖性Pi转运活性(钠-磷共转运)之间呈负相关。本研究的目的是确定体外向肾BBM中富集Chol是否对钠-磷共转运有直接调节作用。Chol含量增加12%和24%导致钠-磷共转运活性呈剂量依赖性降低,对照组为2000,Chol(+12%)组为1450,Chol(+24%)组为900 pmol/5 s/mg BBM蛋白,所有P均小于0.01,同时二苯基己三烯荧光 anisotropy(rDPH)呈剂量依赖性增加,即BBM流动性降低,对照组为0.203,Chol(+12%)组为0.210,Chol(+24%)组为0.219,所有P均小于0.01。我们发现,升高环境温度可增加BBM流动性,且与Chol含量变化无关,同时增加钠-磷共转运。当将钠-磷共转运作为BBM流动性(1/rDPH)的函数进行分析时,我们发现,在同等BBM流动性下,BBM Chol富集仍导致钠-磷共转运呈剂量依赖性降低。最后,在体外从喂食低磷饮食的大鼠分离的BBM中富集Chol完全逆转了钠-磷共转运和流动性的适应性增加。因此,我们的研究表明,Chol是肾BBM钠-磷共转运活性的直接调节因子,且BBM Chol含量的体内改变很可能在肾小管Pi转运的调节中起重要作用。