Brunette M G, Mailloux J, Lajeunesse D
Maisonneuve-Rosemont Hospital, Montreal, Quebec, Canada.
Kidney Int. 1992 Feb;41(2):281-8. doi: 10.1038/ki.1992.40.
Calcium (Ca2+) transport by isolated luminal membranes from rabbit renal distal tubule has been characterized. Ca2+ uptake by these membrane vesicles exhibited saturation kinetics. In the absence of sodium (Na+) in the incubation medium, a low affinity system was observed with a KmCa2+ of 2.83 +/- 0.64 mM and Vmax of 3.03 +/- 0.48 pmol/microgram/10 sec. A second type of kinetics was also detected with a high affinity and a low velocity (KmCa2+ 0.04 +/- 0.01 mM, Vmax 1.18 +/- 0.22 pmol/micrograms/10 sec). The luminal membranes from proximal tubules showed a single system with a KmCa2+ of 0.49 +/- 0.20 mM and Vmax of 1.26 +/- 0.17 pmol/micrograms/10 sec. The presence of Na+ sharply decreased Ca2+ uptake by the high affinity system of the membranes from distal tubules, increasing the KmCa2+ to 0.07 mM +/- 0.01 (P less than 0.01) and decreasing the Vmax to 0.27 pmol/microgram/10 sec (P less than 0.005). This effect of Na+ was concentration-dependent, with a half-maximal effect at 38 mM Na+ and a Hill coefficient of 0.9. In contrast, Na+ had no effect on Ca2+ transport through the luminal membranes of proximal tubules nor on the low affinity system of the distal tubule. The composition of the intravascular medium also influenced Ca2+ uptake by the membranes from distal tubules. Compared to mannitol, trans-Na+ or K+ significantly reduced Ca2+ transport. Finally, cis-K+ induced an increase in this transport. As found with Na+, the effect of K+ was concentration-dependent, with a Hill coefficient of 0.42.(ABSTRACT TRUNCATED AT 250 WORDS)
已对兔肾远端小管分离的管腔膜的钙(Ca2+)转运特性进行了研究。这些膜囊泡对Ca2+的摄取呈现饱和动力学。在孵育介质中无钠(Na+)时,观察到一个低亲和力系统,其Ca2+的米氏常数(KmCa2+)为2.83±0.64 mM,最大反应速度(Vmax)为3.03±0.48 pmol/μg/10秒。还检测到另一种动力学类型,具有高亲和力和低速度(KmCa2+ 0.04±0.01 mM,Vmax 1.18±0.22 pmol/μg/10秒)。近端小管的管腔膜显示出一个单一系统,其KmCa2+为0.49±0.20 mM,Vmax为1.26±0.17 pmol/μg/10秒。Na+的存在显著降低了远端小管膜高亲和力系统对Ca2+的摄取,使KmCa2+增加至0.07 mM±0.01(P<0.01),并使Vmax降低至0.27 pmol/μg/10秒(P<0.005)。Na+的这种作用具有浓度依赖性,在38 mM Na+时达到半数最大效应,希尔系数为0.9。相比之下,Na+对通过近端小管管腔膜的Ca2+转运以及远端小管的低亲和力系统均无影响。血管内介质的成分也影响远端小管膜对Ca2+的摄取。与甘露醇相比,反式Na+或K+显著降低Ca2+转运。最后,顺式K+诱导该转运增加。与Na+的情况一样,K+的作用具有浓度依赖性,希尔系数为0.42。(摘要截短于250字)