Lim Krystle Y B, Gödde Nathan J, Humbert Patrick O, Kvansakul Marc
From the Department of Biochemistry and Genetics, La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Victoria 3086.
the Cell Cycle and Cancer Genetics Laboratory, Research Division, Peter MacCallum Cancer Centre, Melbourne, Victoria 3002.
J Biol Chem. 2017 Dec 15;292(50):20425-20436. doi: 10.1074/jbc.M117.799452. Epub 2017 Oct 23.
Scribble is a highly conserved protein regulator of cell polarity that has been demonstrated to function as a tumor suppressor or, conversely, as an oncogene in a context-dependent manner, and it also controls many physiological processes ranging from immunity to memory. Scribble consists of a leucine-rich repeat domain and four PDZ domains, with the latter being responsible for most of Scribble's complex formation with other proteins. Given the similarities of the Scribble PDZ domain sequences in their binding grooves, it is common for these domains to show overlapping preferences for the same ligand. Yet, Scribble PDZ domains can still exhibit unique binding profiles toward other ligands. This raises the fundamental question as to how these PDZ domains discriminate ligands and exert specificities in Scribble complex formation. To better understand how Scribble PDZ domains direct cell polarity signaling, we investigated here their interactions with the well-characterized Scribble binding partner β-PIX, a guanine nucleotide exchange factor. We report the interaction profiles of all isolated Scribble PDZ domains with a β-PIX peptide. We show that Scribble PDZ1 and PDZ3 are the major interactors with β-PIX and reveal a distinct binding hierarchy in the interactions between the individual Scribble PDZ domains and β-PIX. Furthermore, using crystal structures of PDZ1 and PDZ3 bound to β-PIX, we define the structural basis for Scribble's ability to specifically engage β-PIX via its PDZ domains and provide a mechanistic platform for understanding Scribble-β-PIX-coordinated cellular functions such as directional cell migration.
Scribble是一种高度保守的细胞极性蛋白调节剂,已被证明在不同背景下既可以作为肿瘤抑制因子发挥作用,反之也可以作为癌基因发挥作用,并且它还控制着从免疫到记忆等许多生理过程。Scribble由一个富含亮氨酸的重复结构域和四个PDZ结构域组成,后者负责Scribble与其他蛋白质形成大部分复合物。鉴于Scribble PDZ结构域序列在其结合凹槽中的相似性,这些结构域对同一配体表现出重叠偏好是很常见的。然而,Scribble PDZ结构域对其他配体仍可表现出独特的结合模式。这就引发了一个基本问题,即这些PDZ结构域如何区分配体并在Scribble复合物形成中发挥特异性作用。为了更好地理解Scribble PDZ结构域如何指导细胞极性信号传导,我们在此研究了它们与已明确特征的Scribble结合伴侣β-PIX(一种鸟嘌呤核苷酸交换因子)的相互作用。我们报告了所有分离的Scribble PDZ结构域与β-PIX肽的相互作用模式。我们表明,Scribble PDZ1和PDZ3是与β-PIX的主要相互作用者,并揭示了单个Scribble PDZ结构域与β-PIX之间相互作用的独特结合层次结构。此外,利用与β-PIX结合的PDZ1和PDZ3的晶体结构,我们确定了Scribble通过其PDZ结构域特异性结合β-PIX的结构基础,并为理解Scribble-β-PIX协调的细胞功能(如定向细胞迁移)提供了一个机制平台。