Department of Biochemistry and Genetics, La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Victoria 3086, Australia.
Research Centre for Molecular Cancer Prevention, La Trobe University, Melbourne, Victoria 3086, Australia.
Biochem J. 2021 Apr 16;478(7):1321-1332. doi: 10.1042/BCJ20200816.
Scribble is a critical cell polarity regulator that has been shown to work as either an oncogene or tumor suppressor in a context dependent manner, and also impacts cell migration, tissue architecture and immunity. Mutations in Scribble lead to neural tube defects in mice and humans, which has been attributed to a loss of interaction with the planar cell polarity regulator Vangl2. We show that the Scribble PDZ domains 1, 2 and 3 are able to interact with the C-terminal PDZ binding motif of Vangl2 and have now determined crystal structures of these Scribble PDZ domains bound to the Vangl2 peptide. Mapping of mammalian neural tube defect mutations reveal that mutations located distal to the canonical PDZ domain ligand binding groove can not only ablate binding to Vangl2 but also disrupt binding to multiple other signaling regulators. Our findings suggest that PDZ-associated neural tube defect mutations in Scribble may not simply act in a Vangl2 dependent manner but as broad-spectrum loss of function mutants by disrupting the global Scribble-mediated interaction network.
Scribble 是一个关键的细胞极性调节因子,它在依赖于上下文的情况下可以作为癌基因或肿瘤抑制因子发挥作用,还会影响细胞迁移、组织架构和免疫。Scribble 中的突变会导致小鼠和人类的神经管缺陷,这归因于与平面细胞极性调节因子 Vangl2 的相互作用丧失。我们表明,Scribble 的 PDZ 结构域 1、2 和 3 能够与 Vangl2 的 C 末端 PDZ 结合基序相互作用,现在已经确定了这些 Scribble PDZ 结构域与 Vangl2 肽结合的晶体结构。哺乳动物神经管缺陷突变的映射表明,位于经典 PDZ 结构域配体结合槽远端的突变不仅可以消除与 Vangl2 的结合,还可以破坏与其他多种信号转导调节剂的结合。我们的研究结果表明,Scribble 中与 PDZ 相关的神经管缺陷突变可能不仅仅是通过依赖于 Vangl2 的方式发挥作用,而是通过破坏全局 Scribble 介导的相互作用网络作为广谱失活功能突变体发挥作用。