Raghuram V, Mak D O, Foskett J K
Department of Physiology, University of Pennsylvania, Philadelphia, PA 19104-6100, USA.
Proc Natl Acad Sci U S A. 2001 Jan 30;98(3):1300-5. doi: 10.1073/pnas.98.3.1300. Epub 2001 Jan 23.
The cystic fibrosis transmembrane conductance regulator (CFTR) is a cAMP-dependent protein kinase- and ATP-regulated chloride channel, the activity of which determines the rate of electrolyte and fluid transport in a variety of epithelial tissues. Here we describe a mechanism that regulates CFTR channel activity, which is mediated by PDZ domains, a family of conserved protein-interaction modules. The Na(+)/H(+) exchanger regulatory factor (NHERF) binds to the cytoplasmic tail of CFTR through either of its two PDZ (PDZ1 and PDZ2) domains. A recombinant fragment of NHERF (PDZ1-2) containing the two PDZ domains increases the open probability (P(o)) of single CFTR channels in excised membrane patches from a lung submucosal gland cell line. Both PDZ domains are required for this functional effect, because peptides containing mutations in either domain are unable to increase channel P(o). The concentration dependence of the regulation by the bivalent PDZ1-2 domain is biphasic, i.e., activating at lower concentrations and inhibiting at higher concentrations. Furthermore, either PDZ domain alone or together is without effect on P(o), but either domain can competitively inhibit the PDZ1-2-mediated stimulation of CFTR. Our results support a molecular model in which bivalent NHERF PDZ domains regulate channel gating by crosslinking the C-terminal tails in a single dimeric CFTR channel, and the magnitude of this regulation is coupled to the stoichiometry of these interactions.
囊性纤维化跨膜传导调节因子(CFTR)是一种依赖于环磷酸腺苷(cAMP)的蛋白激酶和三磷酸腺苷(ATP)调节的氯离子通道,其活性决定了多种上皮组织中电解质和液体的转运速率。在此,我们描述了一种由PDZ结构域介导的调节CFTR通道活性的机制,PDZ结构域是一类保守的蛋白质相互作用模块。钠/氢交换调节因子(NHERF)通过其两个PDZ(PDZ1和PDZ2)结构域中的任何一个与CFTR的胞质尾部结合。包含这两个PDZ结构域的NHERF重组片段(PDZ1-2)可增加来自肺黏膜下腺细胞系的膜片钳记录中单个CFTR通道的开放概率(P(o))。两个PDZ结构域对于这种功能效应都是必需的,因为在任何一个结构域中含有突变的肽都无法增加通道的P(o)。二价PDZ1-2结构域调节的浓度依赖性是双相的,即在较低浓度下激活而在较高浓度下抑制。此外,单独的任何一个PDZ结构域或两者一起对P(o)都没有影响,但任何一个结构域都可以竞争性抑制PDZ1-2介导的CFTR刺激。我们的结果支持一种分子模型,即二价NHERF PDZ结构域通过交联单个二聚体CFTR通道中的C末端尾巴来调节通道门控,并且这种调节的幅度与这些相互作用的化学计量学相关。