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Development of p97 AAA ATPase inhibitors

机译:p97 AAA ATPase抑制剂的开发

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摘要

Specific p97 inhibitors are valuable research tools to carry out mechanistic and cellular investigations of p97 biology. p97 is an abundant, ubiquitin-selective chaperone that has multiple functions and is essential for life. Therefore, genetic methods that require long incubations like siRNA or expression of dominant-negative p97 mutants are likely to generate complicated outcomes due to secondary consequences that arise upon slow depletion of p97 activity. We recently identified a small molecule p97 inhibitor, N2,N4-dibenzylquinazoline-2,4-diamine (DBeQ), and documented its effects on blocking autophagic degradation of LC3-II and proteasomal degradation of a p97-dependent ubiquitin-proteasome system (UPS) substrate. What distinguishes DBeQ from conventional proteasome inhibitors is that DBeQ affects both the UPS and autophagic protein degradation pathways and rapidly activates cell death. Whether DBeQ activates autophagic and/or apoptotic cell death will require further work to evaluate its detailed mechanism of action. An exciting goal for the future will be to generate p97 inhibitors that affect one or the other pathway. We propose that generation of ‘separation of function’ inhibitors will be a challenging adventure for chemical biologists but will yield extremely powerful tools to study p97 and enable evaluation of the therapeutic potential of targeting distinct p97 complexes.
机译:特定的p97抑制剂是进行p97生物学机制和细胞研究的有价值的研究工具。 p97是一种丰富的泛素选择性伴侣蛋白,具有多种功能,对生命至关重要。因此,由于p97活性缓慢耗竭会产生次要后果,需要长时间孵育的遗传方法(如siRNA或显性阴性p97突变体的表达)可能会产生复杂的结果。我们最近鉴定了一种小分子p97抑制剂N 2 ,N 4 -二苄基喹唑啉-2,4-二胺(DBeQ),并记录了其对阻断LC3自噬降解的作用。 -II和p97依赖性泛素-蛋白酶体系统(UPS)底物的蛋白酶体降解。 DBeQ与常规蛋白酶体抑制剂的区别在于DBeQ影响UPS和自噬蛋白降解途径,并迅速激活细胞死亡。 DBeQ是否激活自噬和/或凋亡细胞死亡将需要进一步的工作来评估其详细的作用机制。未来的一个激动人心的目标将是产生影响一种或另一种途径的p97抑制剂。我们认为,“功能分离”抑制剂的产生对于化学生物学家而言将是一项艰巨的冒险,但它将产生极为强大的工具来研究p97,并能够评估靶向不同p97复合物的治疗潜力。

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