Structural Genomics Consortium, University of Toronto, Toronto, ON M5G 1L7, Canada; POINT Biopharma, 22 St Clair Avenue E Suite 1201, Toronto, ON M4T 2S3, Canada.
Center for Structural Biology, Center for Cancer Research, National Cancer Institute, Frederick, MD 21702, USA.
Structure. 2023 Sep 7;31(9):1121-1131.e6. doi: 10.1016/j.str.2023.06.002. Epub 2023 Jun 29.
The huntingtin (HTT) protein plays critical roles in numerous cellular pathways by functioning as a scaffold for its many interaction partners and HTT knock out is embryonic lethal. Interrogation of HTT function is complicated by the large size of this protein so we studied a suite of structure-rationalized subdomains to investigate the structure-function relationships within the HTT-HAP40 complex. Protein samples derived from the subdomain constructs were validated using biophysical methods and cryo-electron microscopy, revealing they are natively folded and can complex with validated binding partner, HAP40. Derivatized versions of these constructs enable protein-protein interaction assays in vitro, with biotin tags, and in cells, with luciferase two-hybrid assay-based tags, which we use in proof-of-principle analyses to further interrogate the HTT-HAP40 interaction. These open-source biochemical tools enable studies of fundamental HTT biochemistry and biology, will aid the discovery of macromolecular or small-molecule binding partners and help map interaction sites across this large protein.
亨廷顿蛋白(HTT)作为其众多相互作用伙伴的支架,在许多细胞途径中发挥关键作用,HTT 敲除是胚胎致死的。由于该蛋白体积庞大,对 HTT 功能的研究变得复杂,因此我们研究了一系列结构合理化的亚结构域,以研究 HTT-HAP40 复合物内的结构-功能关系。使用生物物理方法和冷冻电镜对来自亚结构域构建体的蛋白样品进行验证,结果表明它们具有天然折叠,并能与经过验证的结合伴侣 HAP40 复合。这些构建体的衍生版本可用于体外的蛋白-蛋白相互作用测定,带有生物素标签,并可用于细胞中的 luciferase two-hybrid 测定法标签,我们在原理验证分析中使用这些标签来进一步探究 HTT-HAP40 相互作用。这些开源生物化学工具可用于研究 HTT 的基本生物化学和生物学,将有助于发现大分子或小分子结合伴侣,并有助于在这个大型蛋白上绘制相互作用位点。