Shrimp Jonathan H, Sorum Alexander W, Garlick Julie M, Guasch Laura, Nicklaus Marc C, Meier Jordan L
Chemical Biology Laboratory, National Cancer Institute , Frederick, Maryland 21702, United States.
ACS Med Chem Lett. 2015 Oct 31;7(2):151-5. doi: 10.1021/acsmedchemlett.5b00385. eCollection 2016 Feb 11.
C646 inhibits the lysine acetyltransferases (KATs) p300 and CBP and represents the most potent and selective small molecule KAT inhibitor identified to date. To gain insights into the cellular activity of this epigenetic probe, we applied chemoproteomics to identify covalent targets of the C646 chemotype. Modeling and synthetic derivatization was used to develop a clickable analogue (C646-yne) that inhibits p300 similarly to the parent compound and enables enrichment of bound proteins. LC-MS/MS identified the major covalent targets of C646-yne as highly abundant cysteine-containing proteins, and follow-up studies found that C646 can inhibit tubulin polymerization in vitro. Finally, we provide evidence that thiol reactivity of C646 may limit its ability to antagonize acetylation in cells. These findings should enable a more precise interpretation of studies utilizing C646 as a chemical probe of KAT activity and suggest that an underappreciated liability of electrophile-containing inhibitors is a reduction in their cellular potency due to consumption by abundant protein and metabolite thiol sinks.
C646可抑制赖氨酸乙酰转移酶(KATs)p300和CBP,是迄今为止已鉴定出的最有效且最具选择性的小分子KAT抑制剂。为深入了解这种表观遗传探针的细胞活性,我们应用化学蛋白质组学来鉴定C646化学型的共价靶点。通过建模和合成衍生化,开发出一种可点击类似物(C646-炔烃),它与母体化合物类似,能抑制p300,并可富集结合蛋白。液相色谱-串联质谱(LC-MS/MS)鉴定出C646-炔烃的主要共价靶点为高度丰富的含半胱氨酸蛋白,后续研究发现C646在体外可抑制微管蛋白聚合。最后,我们提供证据表明,C646的硫醇反应性可能会限制其在细胞中拮抗乙酰化的能力。这些发现应能更精确地解读利用C646作为KAT活性化学探针的研究,并表明含亲电试剂抑制剂一个未被充分认识的问题是,由于大量蛋白质和代谢物硫醇库的消耗,其细胞活性会降低。