Mishra Prashant, Socolich Michael, Wall Mark A, Graves Jennifer, Wang ZiFen, Ranganathan Rama
Howard Hughes Medical Institute, University of Texas Southwestern Medical Center, Dallas, TX 75390-9050, USA.
Cell. 2007 Oct 5;131(1):80-92. doi: 10.1016/j.cell.2007.07.037.
The INAD scaffold organizes a multiprotein complex that is essential for proper visual signaling in Drosophila photoreceptor cells. Here we show that one of the INAD PDZ domains (PDZ5) exists in a redox-dependent equilibrium between two conformations--a reduced form that is similar to the structure of other PDZ domains, and an oxidized form in which the ligand-binding site is distorted through formation of a strong intramolecular disulfide bond. We demonstrate transient light-dependent formation of this disulfide bond in vivo and find that transgenic flies expressing a mutant INAD in which PDZ5 is locked in the reduced state display severe defects in termination of visual responses and visually mediated reflex behavior. These studies demonstrate a conformational switch mechanism for PDZ domain function and suggest that INAD behaves more like a dynamic machine rather than a passive scaffold, regulating signal transduction at the millisecond timescale through cycles of conformational change.
INAD支架组织了一个多蛋白复合体,该复合体对于果蝇光感受器细胞中正常的视觉信号传导至关重要。我们在此表明,INAD的一个PDZ结构域(PDZ5)存在于两种构象之间的氧化还原依赖性平衡中——一种还原形式,其与其他PDZ结构域的结构相似;以及一种氧化形式,其中配体结合位点通过形成强分子内二硫键而扭曲。我们证明了这种二硫键在体内的瞬时光依赖性形成,并发现表达突变型INAD(其中PDZ5被锁定在还原状态)的转基因果蝇在视觉反应终止和视觉介导的反射行为方面表现出严重缺陷。这些研究证明了PDZ结构域功能的构象转换机制,并表明INAD的行为更像是一台动态机器,而不是一个被动支架,通过构象变化循环在毫秒时间尺度上调节信号转导。