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首页> 外文期刊>The Journal of Physiology >Carbachol regulation of rabbit ileal brush border Na+-H+ exchanger 3 (NHE3) occurs through changes in NHE3 trafficking and complex formation and is Src dependent.
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Carbachol regulation of rabbit ileal brush border Na+-H+ exchanger 3 (NHE3) occurs through changes in NHE3 trafficking and complex formation and is Src dependent.

机译:卡巴胆碱对兔回肠刷状缘Na + -H +交换子3(NHE3)的调节通过NHE3转运和复合物形成的变化发生,并且是Src依赖性的。

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The epithelial brush border membrane (BBM) Na(+)-H(+) exchanger 3 (NHE3) is the major transport protein responsible for ileal electroneutral Na(+) absorption. We have previously shown that ileal BBM NHE3 activity is rapidly inhibited by carbachol, an agonist that mimics cholinergic activation in digestion. In this study, we investigated the mechanisms involved in this NHE3 inhibition. Carbachol decreased the amount of ileal Na(+) absorptive cell BBM NHE3 within 10 min of exposure. Based on OptiPrep gradient centrifugation, carbachol increased the amount of NHE3 in early endosomes and decreased the amount of NHE3 in BBM, consistent with effects on NHE3 trafficking. The decrease in BBM NHE3 occurred in the detergent-soluble BBM fraction with no change in the amount of NHE3 in the BBM detergent-resistant membranes. The size of BBM NHE3 complexes increased in carbachol-exposed ileum, as studied with sucrose gradient centrifugation. The NHE3 complex size increased in the total BBM, but did not change in thedetergent-soluble fraction. This suggests that carbachol treatment enhanced the association of proteins with NHE3 complexes specifically in the detergent-resistant fraction of ileal BBM. NHERF2, alpha-actinin-4 and protein kinase C were among those NHE3-associated proteins because they were more efficiently coimmunoprecipitated from total BBM after carbachol treatment. Moreover, Src was involved in the carbachol-mediated inhibition since: (1) c-Src was rapidly activated in the detergent-resistant membranes by carbachol; and (2) carbachol inhibition of ileal Na(+) absorption was completely abolished by the Src family inhibitor 4-amino-5-(4-chlorophenyl)-7-(t-butyl)pyrazolo[3,4-d]pyrimidine (PP2). Moreover, the carbachol-induced increase in the size of NHE3-containing complexes was reversed by PP2. These data demonstrate that regulation of NHE3 activity by carbachol can be achieved at several interrelated levels: (1) the subcellular level, at which NHE3 is rapidly endocytosed from BBM to endocytic vesicles upontreatment with carbachol; (2) multiple BBM pools, in which carbachol selectively decreases the amount of NHE3 in the BBM detergent-soluble fraction but not the detergent-resistant membrane; and (3) the molecular level, at which NHE3 complex-associated proteins can be changed upon carbachol treatment, with carbachol leading to larger BBM NHE3 complexes and increased co-IP of NHERF2 with alpha-actinin-4 and activated PKC. The study further describes NHE3 presence simultaneously in multiple dynamic BBM pools in which NHE3 distribution and associated proteins are altered as part of carbachol-induced and Src-mediated rapid signal transduction, which decreases the amount of BBM NHE3 and thus inhibits NHE3 activity.
机译:上皮刷缘膜(BBM)Na(+)-H(+)交换子3(NHE3)是负责回肠电子中性Na(+)吸收的主要转运蛋白。先前我们已经表明,回肠BBM NHE3活性被卡巴胆碱(一种在消化过程中模拟胆碱能激活的激动剂)迅速抑制。在这项研究中,我们研究了这种NHE3抑制的机制。卡巴胆碱在暴露后10分钟内减少了回肠Na(+)吸收细胞BBM NHE3的量。基于OptiPrep梯度离心,卡巴胆碱可增加早期内体中NHE3的含量,并减少BBM中NHE3的含量,与对NHE3转运的影响一致。 BBM NHE3的减少发生在可溶于洗涤剂的BBM馏分中,而耐BBM洗涤剂的膜中NHE3的量没有变化。如蔗糖梯度离心研究,在暴露于卡巴胆碱的回肠中,BBM NHE3复合物的大小增加。 NHE3复合物的大小在总BBM中增加,但在洗涤剂可溶部分中没有变化。这表明卡巴胆碱处理增强了蛋白质与NHE3复合物的结合,特别是在回肠BBM的耐去污剂组分中。 NHERF2,α-肌动蛋白-4和蛋白激酶C属于NHE3相关蛋白,因为它们在卡巴胆碱处理后能更有效地从总BBM中共免疫沉淀。此外,Src参与了卡巴胆碱介导的抑制作用,因为:(1)c-Src在耐去污剂的膜中被卡巴胆碱快速活化; (2)Src家族抑制剂4-氨基-5-(4-氯苯基)-7-(叔丁基)吡唑并[3,4-d]嘧啶(完全消除了卡巴胆碱对回肠Na(+)吸收的抑制作用( PP2)。此外,PP2逆转了卡巴胆碱诱导的NHE3配合物尺寸的增加。这些数据表明,在几个相互关联的水平上可以实现卡巴胆碱对NHE3活性的调节:(1)亚细胞水平,在用卡巴胆碱处理后,NHE3从BBM迅速内吞到内吞囊泡; (2)多个BBM库,其中卡巴胆碱选择性降低BBM洗涤剂可溶级分中的NHE3含量,但不降低洗涤剂抗性膜的含量; (3)在分子水平上,可在卡巴胆碱处理后改变NHE3复合物相关蛋白,而卡巴胆碱可导致更大的BBM NHE3复合物,以及NHERF2与α-actinin-4和活化的PKC的共IP增加。该研究进一步描述了NHE3在多个动态BBM池中同时存在,其中NHE3分布和相关蛋白作为卡巴胆碱诱导和Src介导的快速信号转导的一部分而改变,这减少了BBM NHE3的量并因此抑制NHE3活性。

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