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Kinetics of active sodium transport in rat proximal tubules and its variation by cardiac glycosides at zero net volume and ion fluxes. Evidence for a multisite sodium transport system.

机译:大鼠近端小管中钠主动转运的动力学及其在零净体积和离子通量下随强心苷的变化。多站点钠转运系统的证据。

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摘要

1. Transepithelial Na concentration difference, deltaCNa, across proximal tubules of rat kidney was measured at varying intraluminal Na concentrations (CNainfinity) under conditions of zero net volume and Na flux. Simultaneous stopped-flow intratubular and artificial peritubular capillary perfusion techniques were used together with intratubular raffinose to achieve zero net fluxes. Under these conditions in rat proximal tubules, deltaCNa represents active transport, JactNa, factored by permeability, PNa, plus an electrical factor depending on transepithelial potential difference. 2. The relationship between CNainfinity and deltaCNa appeared sigmoidal with saturation being reached when intratubular Na was above 80 m-mole/kg. In the presence of ouabain (10(-2)M) and scilliroside (10(-3)M) the relationship remained the same. The maximum deltaCNa was reduced by approximately 50% by cardiac glycoside inhibition whereas the half-saturation constant was essentially unchanged. These changes from the control represent simple non-competitive inhibition by the cardiac glycosides. 3. Absence of potential difference (p.d.) measurements precludes exact description of the relation between true active transport and substrate concentration but much evidence indicates that the apparently sigmoid relation in the presence and absence of cardiac glycoside inhibition, would be retained if correction of deltaCNa values were possible. Such results could then be explained if there are at least three or more sites for Na on the pump system, of which at least two are not cardiac glycoside sensitive. They would also unequivocally exclude the presence of a single-site single-pump system or the simple algebraic addition of two such units since the kinetic curves for both would be hyperbolic rather than sigmoidal.
机译:1.在零净体积和Na通量的条件下,在不同的管腔内Na浓度(CNainfinity)下,测量大鼠肾脏近端小管的跨上皮Na浓度差deltaCNa。同时使用止流管内和人工管周毛细血管灌注技术与管内棉子糖一起使用,以实现零净通量。在大鼠近端小管中的这些条件下,deltaCNa代表主动转运JactNa,受通透性,PNa以及取决于跨上皮电位差的电因子的影响。 2.当管内Na含量高于80 m-mole / kg时,CNainfinity和deltaCNa之间的关系呈S型,并达到饱和。在存在哇巴因(10(-2)M)和芥兰苷(10(-3)M)的关系保持不变。通过强心苷抑制,最大deltaCNa减少了约50%,而半饱和常数基本不变。来自对照的这些变化代表强心苷的简单非竞争性抑制。 3.电位差(pd)的测量无法准确描述真正的主动转运与底物浓度之间的关系,但有大量证据表明,如果校正deltaCNa值,则存在或不存在强心苷抑制作用时,明显的乙状结肠关系将得以保留。有可能。如果在泵系统上存在至少三个或三个以上的Na位点,其中至少两个对强心苷不敏感,则可以解释此类结果。他们还将明确地排除单站点单泵系统的存在或两个这样的单元的简单代数加法,因为两者的动力学曲线都是双曲线的而不是S形的。

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  • 作者

    Györy, A Z; Lingard, J M;

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  • 年度 1976
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  • 正文语种 en
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