Prakasam H Sandeep, Gallo Luciana I, Li Hui, Ruiz Wily G, Hallows Kenneth R, Apodaca Gerard
Departments of Medicine and Cell Biology, University of Pittsburgh, Pittsburgh, PA 15261.
Departments of Medicine and Cell Biology, University of Pittsburgh, Pittsburgh, PA 15261
Mol Biol Cell. 2014 Nov 15;25(23):3798-812. doi: 10.1091/mbc.E14-03-0818. Epub 2014 Sep 17.
Despite the importance of ADAM17-dependent cleavage in normal biology and disease, the physiological cues that trigger its activity, the effector pathways that promote its function, and the mechanisms that control its activity, particularly the role of phosphorylation, remain unresolved. Using native bladder epithelium, in some cases transduced with adenoviruses encoding small interfering RNA, we observe that stimulation of apically localized A1 adenosine receptors (A1ARs) triggers a Gi-Gβγ-phospholipase C-protein kinase C (PKC) cascade that promotes ADAM17-dependent HB-EGF cleavage, EGFR transactivation, and apical exocytosis. We further show that the cytoplasmic tail of rat ADAM17 contains a conserved serine residue at position 811, which resides in a canonical PKC phosphorylation site, and is phosphorylated in response to A1AR activation. Preventing this phosphorylation event by expression of a nonphosphorylatable ADAM17(S811A) mutant or expression of a tail-minus construct inhibits A1AR-stimulated, ADAM17-dependent HB-EGF cleavage. Furthermore, expression of ADAM17(S811A) in bladder tissues impairs A1AR-induced apical exocytosis. We conclude that adenosine-stimulated exocytosis requires PKC- and ADAM17-dependent EGFR transactivation and that the function of ADAM17 in this pathway depends on the phosphorylation state of Ser-811 in its cytoplasmic domain.
尽管ADAM17依赖性切割在正常生物学和疾病中具有重要意义,但其活性触发的生理信号、促进其功能的效应途径以及控制其活性的机制,特别是磷酸化的作用,仍未得到解决。利用天然膀胱上皮,在某些情况下用编码小干扰RNA的腺病毒进行转导,我们观察到顶端定位的A1腺苷受体(A1ARs)的刺激会触发Gi-Gβγ-磷脂酶C-蛋白激酶C(PKC)级联反应,促进ADAM17依赖性HB-EGF切割、EGFR反式激活和顶端胞吐作用。我们进一步表明,大鼠ADAM17的胞质尾部在811位含有一个保守的丝氨酸残基,该残基位于一个典型的PKC磷酸化位点,并在A1AR激活时被磷酸化。通过表达不可磷酸化的ADAM17(S811A)突变体或表达截尾构建体来阻止这种磷酸化事件,可抑制A1AR刺激的、ADAM17依赖性的HB-EGF切割。此外,在膀胱组织中表达ADAM17(S811A)会损害A1AR诱导的顶端胞吐作用。我们得出结论,腺苷刺激的胞吐作用需要PKC和ADAM17依赖性的EGFR反式激活,并且ADAM17在该途径中的功能取决于其胞质结构域中Ser-811的磷酸化状态。