Voyno-Yasenetskaya T, Conklin B R, Gilbert R L, Hooley R, Bourne H R, Barber D L
Department of Medicine, University of California, San Francisco 94143.
J Biol Chem. 1994 Feb 18;269(7):4721-4.
Activity of the ubiquitous Na-H exchanger (NHE1) is regulated by a number of receptors with tyrosine kinase activity as well as by several classes of receptors coupled to heterotrimeric GTP-binding proteins. We previously demonstrated that the beta 2-adrenergic receptor and other receptors that stimulate adenylyl cyclase by activating Gs stimulate NHE1 by a guanine nucleotide-dependent mechanism that is independent of receptor coupling to Gs. Now we report that a recently identified G alpha subunit, alpha 13, activates the exchanger. Transient expression of mutationally activated alpha 13 constitutively stimulates Na-H exchange; moreover, an alpha 13/alpha z chimera, designed to respond to stimulation by Gi-coupled receptors, mediates stimulation of Na-H exchange by one such receptor, the dopamine2 receptor. Mutationally activated alpha 13, however, does not stimulate adenylyl cyclase activity or phosphoinositide hydrolysis, indicating that its action on NHE1 occurs independently of these two effector pathways. These findings reveal the first known signaling function of alpha 13 and identify a new G protein involved in the regulation of NHE1.
普遍存在的钠氢交换体(NHE1)的活性受多种具有酪氨酸激酶活性的受体以及几类与异三聚体GTP结合蛋白偶联的受体调控。我们先前证明,β2 -肾上腺素能受体和其他通过激活Gs刺激腺苷酸环化酶的受体,通过一种不依赖于受体与Gs偶联的鸟嘌呤核苷酸依赖性机制刺激NHE1。现在我们报告,最近鉴定出的一种Gα亚基α13可激活该交换体。突变激活的α13的瞬时表达持续刺激钠氢交换;此外,设计用于响应与Gi偶联受体刺激的α13/αz嵌合体介导了一种此类受体(多巴胺2受体)对钠氢交换的刺激。然而,突变激活的α13并不刺激腺苷酸环化酶活性或磷酸肌醇水解,表明其对NHE1的作用独立于这两条效应途径发生。这些发现揭示了α13首个已知的信号传导功能,并鉴定出一种参与NHE1调节的新G蛋白。