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首页> 外文期刊>Frontiers in Cell and Developmental Biology >TGF-β1 Augments the Apical Membrane Abundance of Lemur Tyrosine Kinase 2 to Inhibit CFTR-Mediated Chloride Transport in Human Bronchial Epithelia
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TGF-β1 Augments the Apical Membrane Abundance of Lemur Tyrosine Kinase 2 to Inhibit CFTR-Mediated Chloride Transport in Human Bronchial Epithelia

机译:TGF-β1增强了狐猴酪氨酸激酶2的顶端膜丰度,以抑制人支气管上皮内的CFTR介导的氯化物转运

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The most common disease-causing mutation in the Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) gene, F508del, leads to cystic fibrosis (CF), by arresting CFTR processing and trafficking to the plasma membrane. The FDA-approved modulators partially restore CFTR function and slow down the progression of CF lung disease by increasing processing and delivery to the plasma membrane and improving activity of F508del-CFTR Cl- channels. However, the modulators do not correct compromised membrane stability of rescued F508del-CFTR. Transforming Growth Factor (TGF)-β1 is a well-established gene modifier of CF associated with worse lung disease in F508del-homozygous patients, by inhibiting CFTR biogenesis and blocking the functional rescue of F508del-CFTR. Lemur Tyrosine Kinase 2 (LMTK2) is a transmembrane protein localized at the apical and basolateral membrane domain of human bronchial epithelial cells. Phosphorylation of the apical membrane CFTR by LMTK2 triggers its endocytosis and reduces the abundance of membrane-associated CFTR, impairing the CFTR-mediated Cl- transport. We have previously shown that LMTK2 knockdown improves the pharmacologically-rescued F508del-CFTR abundance and function. Thus, reducing the LMTK2 recruitment to the plasma membrane may provide a useful strategy to potentiate the pharmacological rescue of F508del-CFTR. Here, we elucidate the mechanism of LMTK2 recruitment to the apical plasma membrane in polarized CFBE41o- cells. TGF-β1 increased LMTK2 abundance selectively at the apical membrane by accelerating its recycling in Rab11-positive vesicles without affecting LMTK2 mRNA levels, protein biosynthesis, or endocytosis. Our data suggest that controlling TGF-β1 signaling may attenuate recruitment of LMTK2 to the apical membrane thereby improving stability of pharmacologically rescued F508del-CFTR.
机译:囊性纤维化跨膜电导调节剂(CFTR)基因,F508DEL中最常见的疾病突变导致囊性纤维化(CF),通过逮捕CFTR加工和贩运血浆膜。 FDA批准的调节剂部分恢复CFTR功能并通过增加加工和输送到血浆膜和改善F508DEL-CFTR CL-通道的活性来减慢CF肺病的进展。然而,调制器不纠正救援F508DEL-CFTR的受损膜稳定性。转化生长因子(TGF)-β1是F508del-纯合患者中与肺病患者的良好CF的良好基因改性剂,通过抑制CFTR生物发生并阻断F508DEL-CFTR的功能救援。狐猴酪氨酸激酶2(LMTK2)是在人支气管上皮细胞的顶端和基底外膜结构域定位的跨膜蛋白。通过LMTK2通过LMTK2磷酸化触发其内吞作用并降低了膜相关的CFTR的丰度,损害CFTR介导的CL-传输。我们之前已经表明,LMTK2敲低改善了药理学上救出的F508DEL-CFTR丰度和功能。因此,将LMTK2降低到血浆膜可以提供有用的策略,以提高F508DEL-CFTR的药理学救助。在这里,我们阐明LMTK2募集到极化CFBE41O-细胞中的顶端血浆膜的机制。 TGF-β1通过在Rab11阳性囊泡中加速其再循环,在外壳膜中选择性地增加LMTK2丰度,而不影响LMTK2 mRNA水平,蛋白质生物合成或内吞作用。我们的数据表明,控制TGF-β1信号传导可以衰减LMTK2至顶端膜的募集,从而提高了药理学救出的F508DEL-CFTR的稳定性。

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