Cain Christopher D, Schroeder Frank C, Shankel Stewart W, Mitchnick Mark, Schmertzler Michael, Bricker Neal S
Naturon Pharmaceutical Corporation, New Canaan, CT 06840, USA.
Proc Natl Acad Sci U S A. 2007 Nov 6;104(45):17873-8. doi: 10.1073/pnas.0705553104. Epub 2007 Oct 31.
Hormonal regulation of salt excretion and water balance by the kidneys is well documented. Before 1961, it was widely believed that the glomerular filtration rate and the steroid hormone aldosterone controlled sodium balance in the body. In 1961, deWardener et al. [de Wardener HE, Mills IH, Clapham WF, Hayter CJ (1961) Clin Sci 21:249-258] showed that when these two variables were controlled, the kidney was still able to increase sodium excretion in response to a salt load. Several lines of evidence argued for a small-molecule signal as a definitive modulator of sodium excretion by the kidney. However, the chemical nature of the suspected natriuretic agent remained unknown. Here we report the identification and natriuretic activity of two closely related small molecules isolated from human urine, xanthurenic acid 8-O-beta-d-glucoside and xanthurenic acid 8-O-sulfate. The two compounds were partially purified by activity-guided fractionation and subsequently identified by using NMR spectroscopic analyses of enriched active fractions. Both compounds caused substantial and sustained (1- to 2-h) natriuresis in rats and no or minimal concomitant potassium excretion. We believe these compounds constitute a class of kidney hormones that also could influence sodium transport in nonkidney tissues given that these tryptophan metabolites presumably represent evolutionarily old structures.
肾脏对盐排泄和水平衡的激素调节已有充分记录。1961年之前,人们普遍认为肾小球滤过率和类固醇激素醛固酮控制着体内的钠平衡。1961年,德瓦德纳等人[德瓦德纳HE、米尔斯IH、克拉彭WF、海特CJ(1961年)《临床科学》21:249 - 258]表明,当这两个变量得到控制时,肾脏仍能对盐负荷做出反应,增加钠排泄。几条证据表明存在一种小分子信号作为肾脏钠排泄的决定性调节因子。然而,这种疑似利钠剂的化学性质仍然未知。在此我们报告从人尿中分离出的两种密切相关的小分子——8 - O - β - D - 葡萄糖苷黄尿酸和8 - O - 硫酸黄尿酸的鉴定及其利钠活性。这两种化合物通过活性导向分级分离进行了部分纯化,随后通过对富集的活性级分进行核磁共振光谱分析进行了鉴定。这两种化合物在大鼠中均引起大量且持续(1至2小时)的利钠作用,且钾排泄无或极少。我们认为这些化合物构成了一类肾脏激素,鉴于这些色氨酸代谢产物大概代表了进化上古老的结构,它们也可能影响非肾脏组织中的钠转运。