首页> 外文期刊>American Journal of Physiology >Presence of the nucleic acid channel in renal brush-border membranes: allosteric modulation by extracellular calcium.
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Presence of the nucleic acid channel in renal brush-border membranes: allosteric modulation by extracellular calcium.

机译:肾刷状边界膜中核酸通道的存在:细胞外钙的变构调节。

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摘要

We have previously described a cell surface channel complex that is highly selective for nucleic acid (6, 7). The channel complex was purified to homogeneity by solubilizing renal brush-border membranes (BBM) with CHAPS and separation by liquid chromatography. It was characterized by reconstitution in planar lipid bilayers. The channel consists of a pore-forming subunit that is blocked by heparan sulfate and a regulatory subunit that is blocked by L-malate (7). The current studies were performed to compare the characteristics of the nucleic acid-conducting channel in native BBM with the characteristics that have been determined for the complex reconstituted from purified proteins. BBM were purified by differential centrifugation and reconstituted in lipid bilayers. Current was not observed until oligodeoxynucleotide (ODN) was added. Conductance was 9.1 +/- 0.9 pS; rectification and voltage dependence were not observed. Reversal potential (E(rev)) shifted to +14 +/- 0.1 mV by a 10-fold gradient for ODN but was not altered when gradients were created for any other ion. Open probability increased significantly with an increase in Ca(2+) on the trans chamber of the bilayer apparatus. Changes in cis Ca(2+) were without effect. Addition of L-malate to the cis chamber or heparan sulfate to the trans chamber significantly reduced the open probability of the channel. These data demonstrate that the nucleic acid channel in BBM is electrophysiologically and pharmacologically identical to that previously reported for purified protein and demonstrate that a nucleic acid-conducting channel is a component of renal BBM.
机译:我们先前已经描述了对核酸具有高度选择性的细胞表面通道复合物(6、7)。通过用CHAPS溶解肾刷边界膜(BBM)并通过液相色谱分离,将通道复合物纯化至均质。其特征在于在平面脂质双层中的重构。该通道由被硫酸乙酰肝素阻滞的成孔亚基和被L-苹果酸阻滞的调节亚基组成(7)。进行了当前的研究以比较天然BBM中的核酸传导通道的特征与已经确定的由纯化蛋白重构的复合物的特征。通过差异离心纯化BBM,并在脂质双层中重构。直到加入寡脱氧核苷酸(ODN),才观察到电流。电导为9.1 +/- 0.9 pS;未观察到整流和电压依赖性。 ODN的反向电势(E(rev))以10倍梯度变化至+14 +/- 0.1 mV,但在为任何其他离子创建梯度时则不变。随着双层设备的反式室中Ca(2+)的增加,打开概率显着增加。顺式Ca(2+)的变化没有影响。将L-苹果酸添加至顺式腔室或将硫酸乙酰肝素添加至反式腔室显着降低了通道的打开可能性。这些数据证明,BBM中的核酸通道在电生理和药理学上与先前报道的纯化蛋白相同,并证明核酸传导通道是肾脏BBM的组成部分。

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