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喹唑啉衍生物作为选择性 CYP1B1 抑制剂。

Quinazoline derivatives as selective CYP1B1 inhibitors.

机构信息

Department of Pharmaceutical Sciences & Technology, Birla Institute of Technology, Mesra, Ranchi, 835215, India.

Leicester School of Pharmacy, De Montfort University, Leicester, LE1 9BH, UK.

出版信息

Eur J Med Chem. 2017 Apr 21;130:320-327. doi: 10.1016/j.ejmech.2017.02.032. Epub 2017 Feb 16.

DOI:10.1016/j.ejmech.2017.02.032
PMID:28259840
Abstract

CYP1B1 is implicated to have a role in the development of breast, ovarian, renal, skin and lung carcinomas. It has been suggested that identification of potent and specific CYP1B1 inhibitors can lead to a novel treatment of cancer. Flavonoids have a compact rigid skeleton which fit precisely within the binding cavity of CYP1B1. Systematic isosteric replacement of flavonoid 'O' atom with 'N' atom led to the prediction that a 'quinazoline' scaffold could be the basis for designing potential CYP1B1 inhibitors. A total of 20 quinazoline analogs were synthesized and screened for CYP1B1 and CYP1A1 inhibition in Sacchrosomes™. IC determinations of six compounds with capability of inhibiting CYP1B1 identified quinazolines 5c and 5h as the best candidates for CYP1B1 inhibition, with IC values in the nM range. Further selectivity studies with homologous CYPs, belonging to the CYP1, CYP2 and CYP3 family of enzymes, showed that the compounds are likely to be free from critical drug-drug interaction liability. Molecular modelling studies were performed to rationalize the observed enzymatic inhibitions. Further biological studies in live yeast and human cells, harboring CYP1A1 and CYP1B1 enzymes, have illustrated the most potent compounds' cellular permeability and capability of potently inhibiting CYP1B1 enzyme expressed within live cells.

摘要

CYP1B1 被认为在乳腺癌、卵巢癌、肾癌、皮肤癌和肺癌的发展中起作用。有人提出,鉴定有效的、特异性的 CYP1B1 抑制剂可能为癌症的治疗提供新的方法。黄酮类化合物具有刚性的紧凑骨架,可精确地与 CYP1B1 的结合腔结合。黄酮类化合物的“O”原子被“N”原子系统地等排替换,这使得人们预测“喹唑啉”支架可以作为设计潜在 CYP1B1 抑制剂的基础。共合成了 20 种喹唑啉类似物,并在 Sacchrosomes™中筛选其对 CYP1B1 和 CYP1A1 的抑制作用。对具有抑制 CYP1B1 能力的 6 种化合物的 IC 值测定表明,喹唑啉 5c 和 5h 是抑制 CYP1B1 的最佳候选物,IC 值在纳摩尔范围内。进一步对同源 CYP(属于 CYP1、CYP2 和 CYP3 酶家族)的选择性研究表明,这些化合物可能没有关键的药物相互作用的风险。进行了分子建模研究以合理化观察到的酶抑制作用。在含有 CYP1A1 和 CYP1B1 酶的活酵母和人细胞中的进一步生物学研究表明,最有效的化合物具有细胞通透性和在活细胞中有效抑制 CYP1B1 酶的能力。

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