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首页> 外文期刊>The Journal of biological chemistry >Role of Binding and Nucleoside Diphosphate Kinase A in the Regulation of the Cystic Fibrosis Transmembrane Conductance Regulator by AMP-activated Protein Kinase
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Role of Binding and Nucleoside Diphosphate Kinase A in the Regulation of the Cystic Fibrosis Transmembrane Conductance Regulator by AMP-activated Protein Kinase

机译:结合和核苷二磷酸激酶A的作用在AMP活化蛋白激酶调节囊性纤维化跨膜电导调节剂

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摘要

Cystic fibrosis transmembrane conductance regulator (CFTR) Cl? channel mutations cause cystic fibrosis lung disease. A better understanding of CFTR regulatory mechanisms could suggest new therapeutic strategies. AMP-activated protein kinase (AMPK) binds to and phosphorylates CFTR, attenuating PKA-activated CFTR gating. However, the requirement for AMPK binding to CFTR and the potential role of other proteins in this regulation are unclear. We report that nucleoside diphosphate kinase A (NDPK-A) interacts with both AMPK and CFTR in overlay blots of airway epithelial cell lysates. Binding studies in Xenopus oocytes and transfected HEK-293 cells revealed that a CFTR peptide fragment that binds AMPK (CFTR-1420-57) disrupted the AMPK-CFTR interaction. Introduction of CFTR-1420-57 into human bronchial Calu-3 cells enhanced forskolin-stimulated whole cell conductance in patch clamp measurements. Similarly, injection of CFTR-1420-57 into Xenopus oocytes blocked the inhibition of cAMP-stimulated CFTR conductance by AMPK in two-electrode voltage clamp studies. AMPK also inhibited CFTR conductance with co-expression of WT NDPK-A in two-electrode voltage clamp studies, but co-expression of a catalytically inactive H118F mutant or various Ser-120 NDPK-A mutants prevented this inhibition. In vitro phosphorylation of WT NDPK-A was enhanced by purified active AMPK, but phosphorylation was prevented in H118F and phosphomimic Ser-120 NDPK-A mutants. AMPK does not appear to phosphorylate NDPK-A directly but rather promotes an NDPK-A autophosphorylation event that involves His-118 and Ser-120. Taken together, these results suggest that NDPK-A exists in a functional cellular complex with AMPK and CFTR in airway epithelia, and NDPK-A catalytic function is required for the AMPK-dependent regulation of CFTR.
机译:囊性纤维化跨膜电导调节器(CFTR)CL?通道突变引起囊性纤维化肺病。更好地了解CFTR监管机制可以提出新的治疗策略。 AMP-活化的蛋白激酶(AMPK)与CFTR结合和磷酸化,衰减PKA活化的CFTR门控。然而,对CFTR的AMPK结合的要求和该调节中其他蛋白质的潜在作用尚不清楚。我们认为核苷二磷酸激酶A(NDPK-A)与AMPK和CFTR的覆盖墨水覆盖墨水裂解物相互作用。卵宫卵胞细胞的结合研究和转染的HEK-293细胞显示结合AMPK(CFTR-1420-57)的CFTR肽片段破坏了AMPK-CFTR相互作用。 CFTR-1420-57引入人支气管钙钙细胞,增强了膜片钳位测量中的刺激刺激的整个细胞电导。类似地,将CFTR-1420-57注入到外爪卵卵籽中,阻碍了通过在双电极电压钳位研究中通过AMPK抑制CAMP刺激的CFTR电导。 AMPK还抑制了双电极电压钳位研究中的WT NDPK-A的CFTR电导,但催化惰性H118F突变体或各种SER-120 NDPK-A突变体的共表达阻止了这种抑制。通过纯化的活性AMPK增强WT NDPK-A的体外磷酸化,但在H118F和磷酸氨基SER-120 NDPK-A突变体中预防磷酸化。 AMPK不会直接磷酸化NDPK-A,而是促进NDPK-A涉及他-118和Ser-120的自动磷酸化事件。总之,这些结果表明,NDPK-A存在于AMPK和CFTR中的功能性细胞复合物中,在气道上皮,并且NDPK-A催化功能需要依赖于CFTR的AMPK依赖性调节。

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