Simat B M, Morley J E, From A H, Briggs J E, Kaiser F E, Levine A S, Ahmed K
Am J Clin Nutr. 1984 Aug;40(2):339-45. doi: 10.1093/ajcn/40.2.339.
Because it has been suggested that decreased activity at the erythrocyte sodium pump might be the cause of age-related decreases in basal oxygen consumption, we have examined age-associated changes in Na+,K+-ATPase activity in red cell membranes. The initial portion of this study was directed toward elucidating possible methodological pitfalls in membrane preparation which might account for some of the variable results reported in prior erythrocyte Na+,K+-ATPase studies. We found that two of four red cell membrane fractions have substantial Mg2+-ATPase activity and contribute a significant portion of total membrane protein. As these two fractions contain little Na+,K+-ATPase activity their contamination of the other two fractions could cause significant variation in measured Na+,K+-ATPase activity. Additionally, we found that meal feeding raised Na+,K+-ATPase activity necessitating that measurements be made in the fasting state. With these methodological variables controlled, we found only a 10.8% coefficient of variation between fasting samples obtained on separate days in eight subjects. Using this methodology, we observed no correlation of Na+,K+-ATPase specific activity with age in males, and only a weak correlation in females who showed decreasing Na+,K+-ATPase specific activity occurring with advancing age. These observations suggest that changes in erythrocyte Na+,K+-ATPase activity do not cause the age-related fall in basal oxygen consumption.
由于有人提出红细胞钠泵活性降低可能是基础氧消耗随年龄下降的原因,我们研究了红细胞膜中Na +,K + -ATP酶活性与年龄相关的变化。本研究的初始部分旨在阐明膜制备过程中可能存在的方法学缺陷,这些缺陷可能是先前红细胞Na +,K + -ATP酶研究中报道的一些可变结果的原因。我们发现四个红细胞膜组分中的两个具有大量的Mg2 + -ATP酶活性,并占总膜蛋白的很大一部分。由于这两个组分几乎不含有Na +,K + -ATP酶活性,它们对其他两个组分的污染可能会导致测量的Na +,K + -ATP酶活性发生显著变化。此外,我们发现进食会提高Na +,K + -ATP酶活性,因此需要在禁食状态下进行测量。在控制了这些方法学变量后,我们发现在八名受试者中,不同日期采集的禁食样本之间的变异系数仅为10.8%。使用这种方法,我们观察到男性的Na +,K + -ATP酶比活性与年龄没有相关性,而在女性中只有微弱的相关性,女性的Na +,K + -ATP酶比活性随着年龄的增长而降低。这些观察结果表明,红细胞Na +,K + -ATP酶活性的变化不会导致基础氧消耗随年龄下降。