Barlet-Bas C, Cheval L, Khadouri C, Marsy S, Doucet A
Laboratoire de Physiologie Cellulaire, Collège de France, Paris.
Am J Physiol. 1990 Aug;259(2 Pt 2):F246-50. doi: 10.1152/ajprenal.1990.259.2.F246.
The sensitivity of Na(+)-K(+)-ATPase to Na was determined in single segments of rabbit nephron isolated by microdissection. In the cortical collecting tubule (CCT), Na(+)-K(+)-ATPase was threefold more sensitive to Na (apparent K0.5 approximately 3 mM) than in proximal convoluted tubule and cortical thick ascending limb (apparent K0.5 approximately 10 mM). Furthermore, increasing K concentration from 5 to greater than 100 mM markedly reduced the affinity of the pump for Na in all three nephron segments. In fact, the main shift in Na affinity occurred when K changed from 100 to 120 mM; in the CCT, increasing K concentration from 100 to 120 mM while maintaining Na concentration at 10 mM reduced Na(+)-K(+)-ATPase activity by greater than 35%. These findings confirm that, in kidney cells as in other cells, intracellular Na limits the rate of Na(+)-K(+)-ATPase. Thus any alteration of intracellular Na concentration modifies the pump activity in a way that contributes to the restoration of intracellular Na homeostasis. This adaptive property is particularly efficient in the collecting tubule in which the apparent K0.5 of the pump for Na is close to normal intracellular Na concentration. Furthermore, changes in intracellular K concentration, which usually accompany those of Na so as to maintain the total cation concentration constant, potentiate the regulatory role of Na through modifications of its affinity for the pump.
通过显微切割分离出兔肾单位的单个节段,测定了钠钾ATP酶对钠的敏感性。在皮质集合管(CCT)中,钠钾ATP酶对钠的敏感性(表观K0.5约为3 mM)是近端曲管和皮质厚升支(表观K0.5约为10 mM)的三倍。此外,将钾浓度从5 mM增加到大于100 mM,显著降低了这三个肾单位节段中该泵对钠的亲和力。事实上,当钾从100 mM变为120 mM时,钠亲和力发生了主要变化;在CCT中,将钾浓度从100 mM增加到120 mM,同时将钠浓度维持在10 mM,钠钾ATP酶活性降低超过35%。这些发现证实,与其他细胞一样,在肾细胞中,细胞内钠限制了钠钾ATP酶的速率。因此,细胞内钠浓度的任何改变都会以有助于恢复细胞内钠稳态的方式改变泵的活性。这种适应性特性在集合管中尤为有效,其中该泵对钠的表观K_{0.5}接近正常细胞内钠浓度。此外,细胞内钾浓度的变化通常与钠的变化相伴,以维持总阳离子浓度恒定,通过改变其对泵的亲和力来增强钠的调节作用。