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Small-molecule hydrophobic tagging–induced degradation of HaloTag fusion proteins

机译:小分子疏水标记诱导的嗜碱性融合蛋白降解

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摘要

The ability to regulate any protein of interest in living systems with small molecules remains a challenge. We hypothesized that appending a hydrophobic moiety to the surface of a protein would mimic the partially denatured state of the protein, thus engaging the cellular quality control machinery to induce its proteasomal degradation. We designed and synthesized bifunctional small molecules to bind a bacterial dehalogenase (the HaloTag protein) and present a hydrophobic group on its surface. Hydrophobic tagging of the HaloTag protein with an adamantyl moiety induced the degradation of cytosolic, isoprenylated and transmembrane HaloTag fusion proteins in cell culture. We demonstrated the in vivo utility of hydrophobic tagging by degrading proteins expressed in zebrafish embryos and by inhibiting Hras1G12V-driven tumor progression in mice. Therefore, hydrophobic tagging of HaloTag fusion proteins affords small-molecule control over any protein of interest, making it an ideal system for validating potential drug targets in disease models.
机译:用小分子调节生活系统中任何目标蛋白质的能力仍然是一个挑战。我们假设将疏水性部分附加到蛋白质表面会模仿蛋白质的部分变性状态,从而参与细胞质量控制机制以诱导其蛋白酶体降解。我们设计并合成了双功能小分子,以结合细菌脱卤素酶(HaloTag蛋白)并在其表面上呈现疏水基团。 HaloTag蛋白带有金刚烷基部分的疏水性标记可诱导细胞培养物中胞质,异戊二烯基化和跨膜HaloTag融合蛋白的降解。我们通过降解斑马鱼胚胎中表达的蛋白质并通过抑制小鼠中的Hras1G12V驱动的肿瘤进展证明了疏水标签的体内效用。因此,HaloTag融合蛋白的疏水标记可对任何目标蛋白进行小分子控制,使其成为验证疾病模型中潜在药物靶标的理想系统。

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