Design, synthesis, and antitumor evaluation of triazolopyridine derivatives as novel inhibitors for BRD4

IF 6 2区 医学 Q1 CHEMISTRY, MEDICINAL
Jing-Ying Liu, Hong-En Zhang, Cheng Wang, Ping-Fan Zhang, Yun-Gen Xu, Lei Shi, Li-Ping Sun
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引用次数: 0

Abstract

The bromodomain-containing protein 4 (BRD4) is an epigenetic regulatory 'reader' belonging to the bromodomain and extra-terminal domain (BET) family. Several studies have demonstrated that the high expression of BRD4 is closely related to the occurrence and development of various cancers, so BRD4 has become a promising target for cancer treatment. However, there are no drugs targeting BRD4 available on the market, the development of novel BRD4 inhibitors is of great significance. This paper describes a series of triazolopyridine derivatives exhibiting favorable BRD4 inhibitory activity, which have not been reported before. Among them, the representative compound 12m showed potent BRD4 BD1 inhibitory activity, of which the inhibition rate is better than the other compounds. In MV4-11 cell line, compound 12m also showed excellent anti-cancer activity (IC50 = 0.02 μM), which is superior to (+)-JQ1 (IC50 = 0.03 μM). Through molecular docking, it was discovered that compound 12m could combine with the acetyl-lysine binding site of BRD4 BD1 and form a hydrogen bond with a crucial amino acid residue Asn140. Additionally, compound 12m was found to have good metabolic stability with a clearance rate of only 0.3 μL/min/nm in mouse liver microsomes. Apoptosis experiments demonstrated that compound 12m induced apoptosis better than (+)-JQ1 at the same concentration, and the apoptosis rate of compound 12m increased from 43.2% to 83.2%. Subsequent in vivo pharmacokinetic testing of compound 12m in ICR mice yielded a good oral absorption and utilization of compound 12m (F = 44.8%). The results indicate that triazolopyridine is an outstanding skeleton for developing novel BRD4 inhibitors, and compound 12m is a promising lead compound for further optimization and extensive clinical development.

Abstract Image

新型BRD4抑制剂三唑吡啶衍生物的设计、合成及抗肿瘤评价
含溴结构域蛋白4 (BRD4)是一种表观遗传调控“读取器”,属于溴结构域和外末端结构域(BET)家族。多项研究表明,BRD4的高表达与多种癌症的发生发展密切相关,因此BRD4已成为癌症治疗的一个有希望的靶点。然而,目前市场上还没有针对BRD4的药物,因此开发新型BRD4抑制剂具有重要意义。本文介绍了一系列未见报道的具有良好BRD4抑制活性的三唑吡啶衍生物。其中,具有代表性的化合物12m表现出较强的BRD4 BD1抑制活性,抑制率优于其他化合物。在MV4-11细胞系中,化合物12m也表现出良好的抗癌活性(IC50 = 0.02 μM),优于(+)-JQ1 (IC50 = 0.03 μM)。通过分子对接,发现化合物12m可以与BRD4 BD1的乙酰赖氨酸结合位点结合,并与关键氨基酸残基Asn140形成氢键。此外,化合物12m在小鼠肝微粒体中具有良好的代谢稳定性,清除率仅为0.3 μL/min/nm。细胞凋亡实验表明,在相同浓度下,化合物12m诱导细胞凋亡的效果优于(+)-JQ1,化合物12m的细胞凋亡率从43.2%提高到83.2%。随后对化合物12m在ICR小鼠体内进行药代动力学试验,结果表明化合物12m具有良好的口服吸收利用效果(F = 44.8%)。结果表明,三唑吡啶是开发新型BRD4抑制剂的良好骨架,化合物12m是一个有前景的先导化合物,可以进一步优化和广泛的临床开发。
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来源期刊
CiteScore
11.70
自引率
9.00%
发文量
863
审稿时长
29 days
期刊介绍: The European Journal of Medicinal Chemistry is a global journal that publishes studies on all aspects of medicinal chemistry. It provides a medium for publication of original papers and also welcomes critical review papers. A typical paper would report on the organic synthesis, characterization and pharmacological evaluation of compounds. Other topics of interest are drug design, QSAR, molecular modeling, drug-receptor interactions, molecular aspects of drug metabolism, prodrug synthesis and drug targeting. The journal expects manuscripts to present the rational for a study, provide insight into the design of compounds or understanding of mechanism, or clarify the targets.
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