Laboratory of Cellular and Molecular Biology, Institute for Biomedical Research, School of Medical Sciences, Pontifical Catholic University of Argentina, and the Pontifical Catholic University of Argentina, Buenos Aires, Argentina.
Biochem Cell Biol. 2021 Aug;99(4):476-487. doi: 10.1139/bcb-2020-0522. Epub 2021 Jan 22.
Cystic fibrosis (CF) is caused by mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene. It has been postulated that reduced HCO transport through CFTR may lead to a decreased airway surface liquid pH. In contrast, others have reported no changes in the extracellular pH (pHe). We have recently reported that in carcinoma Caco-2/pRS26 cells (transfected with short hairpin RNA for CFTR) or CF lung epithelial IB3-1 cells, the mutation in CFTR decreased mitochondrial complex I activity and increased lactic acid production, owing to an autocrine IL-1β loop. The secreted lactate accounted for the reduced pHe, because oxamate fully restored the pHe. These effects were attributed to the IL-1β autocrine loop and the downstream signaling kinases c-Src and JNK. Here we show that the pHe of IB3-1 cells can be restored to normal values (∼7.4) by incubation with the epidermal growth factor receptor (EGFR, HER1, ErbB1) inhibitors AG1478 and PD168393. PD168393 fully restored the pHe values of IB3-1 cells, suggesting that the reduced pHe is mainly due to increased EGFR activity and lactate. Also, in IB3-1 cells, lactate dehydrogenase A mRNA, protein expression, and activity are downregulated when EGFR is inhibited. Thus, a constitutive EGFR activation seems to be responsible for the reduced pHe in IB3-1 cells.
囊性纤维化(CF)是由囊性纤维化跨膜电导调节因子(CFTR)基因突变引起的。有人推测,CFTR 转运 HCO3-减少可能导致气道表面液体 pH 值降低。然而,其他人则报告细胞外 pH 值(pHe)没有变化。我们最近报道,在转染短发夹 RNA 的癌性 Caco-2/pRS26 细胞(CFTR 突变)或 CF 肺上皮细胞 IB3-1 中,CFTR 的突变会降低线粒体复合物 I 的活性并增加乳酸的产生,这是由于自分泌的 IL-1β 循环。分泌的乳酸导致 pHe 降低,因为草氨酸完全恢复了 pHe。这些影响归因于 IL-1β 自分泌循环及其下游信号转导激酶 c-Src 和 JNK。在这里,我们表明,通过用表皮生长因子受体(EGFR,HER1,ErbB1)抑制剂 AG1478 和 PD168393 孵育,IB3-1 细胞的 pHe 可以恢复到正常水平(约 7.4)。PD168393 完全恢复了 IB3-1 细胞的 pHe 值,表明降低的 pHe 主要是由于 EGFR 活性和乳酸增加所致。此外,在 IB3-1 细胞中,当 EGFR 被抑制时,乳酸脱氢酶 A 的 mRNA、蛋白表达和活性下调。因此,持续激活的 EGFR 似乎是导致 IB3-1 细胞 pHe 降低的原因。