Département de Biochimie et de Génomique Fonctionnelle, Faculté de Médecine et des Sciences de la Santé, Institut de Pharmacologie de Sherbrooke et PROTÉO, Université de Sherbrooke, Sherbrooke, QC, Canada.
Methods Mol Biol. 2021;2318:13-19. doi: 10.1007/978-1-0716-1476-1_2.
The b-HLH-LZ domain of c-Myc is a key target for the development of cancer therapies by blunting its binding to DNA with cell penetrant b-HLH-LZs and/or by stabilizing it into a state that cannot recognize Max to activate and amplify transcription of oncogenic genes. Although recent milestones have been reached with DNA binding blunting of c-Myc with the cell penetrant b-HLH-LZ Omomyc, the targeting of its b-HLH-LZ with small molecules, peptides, or proteins is lagging. As reviewed recently, the main problem relies in the intrinsically disordered nature of the b-HLH-LZ of c-Myc. This greatly complicates the classical approach of targeting a docking site with inhibitors. The solution state methods such as NMR are progressing towards the characterization of the ensembles of structures or states the b-HLH-LZ can adopt. However, the delicate balance that dictates the population of these dynamically interchanging states relies on its primary structure and the weak polar, electrostatic and hydrophobic interactions allowed. In this context, it is of the utmost importance to study the b-HLH-LZ of c-Myc in its WT background and avoid the use of tags such as His-tags. These tags could disrupt the balance of forces which could alter the conformational and physical transitions and states it can undergo and adopt. Here, we describe a robust protocol to express the WT b-HLH-LZ in E. coli and purify it, without the need of tags, to obtain the required quantities for solution state biophysical characterization such as NMR.
c-Myc 的 b-HLH-LZ 结构域是开发癌症疗法的关键靶点,可以通过使细胞穿透性 b-HLH-LZ 钝化其与 DNA 的结合,或通过将其稳定到无法识别 Max 以激活和放大致癌基因转录的状态来实现。尽管最近在使用细胞穿透性 b-HLH-LZ Omomyc 使 c-Myc 的 DNA 结合变钝方面取得了里程碑式的进展,但针对其 b-HLH-LZ 的小分子、肽或蛋白质靶向仍存在滞后。正如最近综述所述,主要问题在于 c-Myc 的 b-HLH-LZ 固有无序的性质。这极大地增加了使用抑制剂靶向对接位点的经典方法的复杂性。NMR 等溶液状态方法正在朝着表征 b-HLH-LZ 可以采用的结构或状态的集合方向发展。然而,决定这些动态相互转换状态的种群的微妙平衡依赖于其一级结构和允许的弱极性、静电和疏水力相互作用。在这种情况下,研究 c-Myc 的 b-HLH-LZ 在其 WT 背景下并避免使用 His 标签等标签至关重要。这些标签可能会破坏力量平衡,从而改变它可以经历和采用的构象和物理转变以及状态。在这里,我们描述了一种在大肠杆菌中表达 WT b-HLH-LZ 并进行纯化的稳健方案,无需标签即可获得用于溶液状态生物物理特性分析(如 NMR)所需的数量。