Berardi Andrea, Ghitti Michela, Quilici Giacomo, Musco Giovanna
Biomolecular NMR Group, Division of Genetics and Cell Biology, IRCCS Ospedale San Raffaele, Via Olgettina 58, 20132 Milano, Italy.
Comput Struct Biotechnol J. 2020 Dec 3;18:4082-4092. doi: 10.1016/j.csbj.2020.11.044. eCollection 2020.
PHD fingers are small chromatin binding domains, that alone or in tandem work as versatile interaction platforms for diversified activities, ranging from the decoding of the modification status of histone tails to the specific recognition of non-histone proteins. They play a crucial role in their host protein as mutations thereof cause several human malignancies. Thus, PHD fingers are starting to be considered as valuable pharmacological targets. While inhibitors or chemical probes of the histone binding activity of PHD fingers are emerging, their druggability as non-histone interaction platform is still unexplored. In the current study, using a computational and experimental pipeline, we provide proof of concept that the tandem PHD finger of Nuclear receptor-binding SET (Su(var)3-9, Enhancer of zeste, Trithorax) domain protein 1 (PHDC5HCH) is ligandable. Combining virtual screening of a small subset of the ZINC database (Zinc Drug Database, ZDD, 2924 molecules) to NMR binding assays and ITC measurements, we have identified Mitoxantrone dihydrochloride, Quinacrine dihydrochloride and Chloroquine diphosphate as the first molecules able to bind to PHDC5HCH and to reduce its documented interaction with the Zinc finger domain (C2HR) of the transcriptional repressor Nizp1 (NSD1-interacting Zn-finger protein). These results pave the way for the design of small molecules with improved effectiveness in inhibiting this finger-finger interaction.
植物同源结构域(PHD)指是小的染色质结合结构域,单独或串联发挥作用,作为多功能的相互作用平台参与多种活动,从解码组蛋白尾巴的修饰状态到特异性识别非组蛋白蛋白质。它们在其宿主蛋白中发挥关键作用,因为其突变会导致多种人类恶性肿瘤。因此,PHD指开始被视为有价值的药理学靶点。虽然针对PHD指组蛋白结合活性的抑制剂或化学探针不断涌现,但它们作为非组蛋白相互作用平台的可成药性仍未得到探索。在当前的研究中,我们使用计算和实验流程,提供了核受体结合SET(Su(var)3-9、增强子zeste、三体胸苷)结构域蛋白1(PHDC5HCH)的串联PHD指可被配体结合的概念验证。通过将ZINC数据库(锌药物数据库,ZDD,2924个分子)的一个小子集进行虚拟筛选,结合核磁共振结合测定和等温滴定量热法测量,我们确定了盐酸米托蒽醌、盐酸喹吖因和二磷酸氯喹是首批能够与PHDC5HCH结合并减少其与转录抑制因子Nizp1(NSD1相互作用锌指蛋白)的锌指结构域(C2HR)已记录的相互作用的分子。这些结果为设计在抑制这种指-指相互作用方面具有更高效力的小分子铺平了道路。