首页> 美国卫生研究院文献>The Journal of Physiology >Secretion control for active and inactive renin: effect of ouabain on release from rabbit kidney cortex slices.
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Secretion control for active and inactive renin: effect of ouabain on release from rabbit kidney cortex slices.

机译:活性和非活性肾素的分泌控制:哇巴因对兔肾皮质切片释放的影响。

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摘要

Release of active and inactive renin by rabbit kidney cortex slices was investigated. Inactive renin was estimated as the increase in renin activity after acidification (pH 2.8) of slice supernatant solutions. For kidney slices incubated in complete Krebs bicarbonate buffer, the Na-K-ATPase inhibitor ouabain (100 microM) reduced the secretion of both active (-19.2%) and inactive (-78.9%) forms of renin. In low Na buffers ([Na+] = 23 mM) active renin release was increased and inactive renin was suppressed. Both of these changes were abolished by addition of ouabain (100 microM). The reduction in inactive renin secretion produced by ouabain in complete Krebs buffer did not occur in low [Na+] buffers. In zero Ca2+ buffers containing EGTA (5 mM), secretion of both active and inactive renin was increased but these changes were abolished by addition of ouabain (100 microM). Incubating kidney slices in low Na+, zero Ca2+ media revealed differences between the secretion control mechanisms for the two forms of renin. The separate stimulatory effects of low Na+ and low Ca2+ were not additive for the release of active renin and inclusion of ouabain resulted in similar secretion rates to those under control conditions. For inactive renin secretion, in the absence of Ca2+ release mechanisms still respond to reduction in Na+ with decreased secretion. Conversely, in low Na+ buffers, removal of Ca2+ still promotes inactive renin secretion. These changes were abolished by the addition of ouabain (100 microM). Slices did not change in weight during incubation in media which did not contain ouabain. Addition of this inhibitor to control buffers and low Na buffers did result in an increase in weight. This correlated with the presence of Ca2+ in the buffer and did not appear to be related to [Na+]. These studies again show that the mechanisms regulating the secretion of active and inactive renin are not identical and support the hypothesis that Na+ have differing roles to play in the regulation of these two forms of renin.
机译:研究了兔肾皮质切片释放活性和非活性肾素的情况。切片中上清液酸化(pH 2.8)后,肾素活性的增加被估计为无活性。对于在完全Krebs碳酸氢盐缓冲液中孵育的肾脏切片,Na-K-ATPase抑制剂哇巴因(100 microM)减少了活性形式(-19.2%)和非活性形式(-78.9%)的肾素的分泌。在低钠缓冲液([Na +] = 23 mM)中,活性肾素释放增加,非活性肾素被抑制。通过添加哇巴因(100 microM)消除了这两个更改。哇巴因在完整的Krebs缓冲液中产生的无活性肾素分泌减少在低[Na +]缓冲液中没有发生。在含有EGTA(5 mM)的零Ca2 +缓冲液中,活性和非活性肾素的分泌都增加了,但是通过加入哇巴因(100 microM)消除了这些变化。在低Na +,零Ca2 +培养基中孵育肾脏切片后,发现两种形式的肾素的分泌控制机制之间存在差异。低Na +和低Ca 2+的单独刺激作用不会增加活性肾素的释放,而包含哇巴因的分泌率则与对照条件下的分泌率相似。对于非活性的肾素分泌,在缺乏Ca2 +的情况下,释放机制仍会以减少的分泌物响应Na +的减少。相反,在低Na +缓冲液中,去除Ca2 +仍会促进肾素的非活性分泌。通过添加哇巴因(100 microM)取消了这些更改。在不含哇巴因的培养基中温育期间,切片的重量没有变化。将这种抑制剂添加到对照缓冲液和低钠缓冲液中确实导致重量增加。这与缓冲液中Ca2 +的存在有关,似乎与[Na +]没有关系。这些研究再次表明,调节活性和非活性肾素分泌的机制并不相同,并支持了Na +在调节这两种形式的肾素中发挥不同作用的假设。

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