Department of Pharmaceutical Chemistry, Gokaraju Rangaraju College of Pharmacy, Osmania University, Hyderabad, India.
Department of Chemistry, Osmania University, Hyderabad, India.
Arch Pharm (Weinheim). 2020 Feb;353(2):e1900192. doi: 10.1002/ardp.201900192. Epub 2019 Dec 6.
Hsp90, as a key molecular chaperone, plays an important role in modulating the activity of many cell signaling proteins and is an attractive target for anticancer therapeutics. Herein, we report the discovery of N-pyridoyl-Δ -pyrazoline analogs as novel Hsp90 inhibitors by integrated approaches of drug design, organic synthesis, cell biology, and qualitative proteomic analysis. Novel chemical compounds were designed and optimized in the adenosine triphosphate-binding site of Hsp90; lead optimized compounds were found to have significant interactions with Asp93 and other amino acids crucial for Hsp90 inhibition. The designed compounds were synthesized by a two-step procedure; different aromatic aldehydes were reacted with various acetophenones to form substituted 1,3-diphenyl-prop-2-enones (Ic-Io), which upon reaction with isonicotinic acid hydrazide in the presence of glacial acetic acid form N-pyridoyl-Δ -pyrazoline compounds (PY1-PY13). Compounds PY3, PY2, and PY1 were identified as potential leads amongst the series, with promising anticancer activity against human breast cancer and melanoma cells, and the ability to inhibit Hsp90 similar to radicicol by drug-affinity responsive target stability proteomic analysis in a whole-cell assay.
热休克蛋白 90(Hsp90)作为一种关键的分子伴侣,在调节许多细胞信号蛋白的活性方面发挥着重要作用,是抗癌治疗的一个有吸引力的靶点。在此,我们通过药物设计、有机合成、细胞生物学和定性蛋白质组学分析的综合方法,报告了 N-吡啶甲酰基-Δ-吡唑啉类似物作为新型 Hsp90 抑制剂的发现。在 Hsp90 的三磷酸腺苷结合位点设计和优化了新型化学化合物;优化后的先导化合物被发现与 Asp93 和其他对 Hsp90 抑制至关重要的氨基酸有显著相互作用。设计的化合物通过两步法合成;不同的芳香醛与各种苯乙酮反应形成取代的 1,3-二苯基-2-丙烯酮(Ic-Io),然后在冰醋酸存在下与异烟酰肼反应形成 N-吡啶甲酰基-Δ-吡唑啉化合物(PY1-PY13)。在该系列化合物中,化合物 PY3、PY2 和 PY1 被鉴定为有潜力的先导化合物,对人乳腺癌和黑色素瘤细胞具有有希望的抗癌活性,并且能够通过全细胞测定中的药物亲和反应靶标稳定性蛋白质组学分析抑制 Hsp90,与雷迪昔醇相似。