Carattino Marcelo D, Liu Wen, Hill Warren G, Satlin Lisa M, Kleyman Thomas R
Renal-Electrolyte Div., University of Pittsburgh, PA 15261, USA.
Am J Physiol Renal Physiol. 2007 Jul;293(1):F316-24. doi: 10.1152/ajprenal.00455.2006. Epub 2007 Apr 25.
Rates of Na(+) absorption in the distal nephron increase proportionally with the rates of tubular flow. We tested the hypothesis that the deformation or tension generated in the plasma membrane in response to flow activates the epithelial sodium channel (ENaC). We modified the physical properties of the membrane by changing the temperature and the content of cholesterol. Rates of net Na(+) absorption measured in cortical collecting ducts (CCDs) perfused at room temperature at slow (approximately 1) and fast (approximately 5 nl.min(-1).mm(-1)) flow rates were less than those measured at 37 degrees C at the same flow rates, although increases in tubular fluid flow rates led to comparable relative increases in net Na(+) absorption at both temperatures. Xenopus laevis oocytes expressing ENaC responded to an increase in shear stress at 22-25 degrees C with a discrete delay followed by a monoexponential increase in whole-cell Na(+) currents. We observed that temperature affected 1) basal currents, 2) delay times, 3) kinetics of activation, and 4) fold-increase in macroscopic currents in response to flow. The magnitude of the response to flow displayed biphasic behavior as a function of temperature, with a minimal value at 25 degrees C. Steady-state fluorescence anisotropic measurements of purified plasma membranes did not show any obvious phase transition behavior over a temperature range from 8.3 degrees C to 36.5 degrees C. Modification of the content of membrane cholesterol did not affect the response to flow. Our results suggest that the flow-dependent activation of ENaC is not influenced by modifications in the intrinsic properties of the plasma membrane.
远端肾单位中Na(+)的重吸收率与肾小管流速成比例增加。我们检验了这样一个假说,即响应流速在质膜中产生的变形或张力会激活上皮钠通道(ENaC)。我们通过改变温度和胆固醇含量来改变膜的物理性质。在室温下以慢流速(约1 nl·min(-1)·mm(-1))和快流速(约5 nl·min(-1)·mm(-1))灌注的皮质集合管(CCD)中测得的净Na(+)重吸收率低于在相同流速下37℃时测得的数值,尽管在两个温度下肾小管液流速的增加都会导致净Na(+)重吸收有相当的相对增加。表达ENaC的非洲爪蟾卵母细胞在22 - 25℃下对剪切应力增加有离散延迟反应,随后全细胞Na(+)电流呈单指数增加。我们观察到温度影响:1)基础电流,2)延迟时间,3)激活动力学,以及4)响应流速时宏观电流的增加倍数。对流速的响应幅度随温度呈双相变化,在25℃时有最小值。在8.3℃至36.5℃的温度范围内,纯化质膜的稳态荧光各向异性测量未显示任何明显的相变行为。改变膜胆固醇含量并不影响对流速的响应。我们的结果表明,ENaC的流速依赖性激活不受质膜固有性质改变的影响。