Department of Chemistry, Government College University Faisalabad, Faisalabad, Pakistan.
Department of Pharmaceutics, Government College University Faisalabad, Faisalabad, Pakistan.
Chem Biol Drug Des. 2021 Dec;98(6):1025-1037. doi: 10.1111/cbdd.13960. Epub 2021 Oct 3.
The Hippo signaling pathway extorts several signals that concomitantly target the activity of transcriptional cofactor yes associated protein (YAP). YAP is a key regulator that elicits signature gene expression by coupling with transcriptional enhanced associate domain (TEAD) family of transcriptional factors. The YAP-TEAD complex via target gene expression gets associated with the development, proliferation, and progression of cancerous cells. Moreover, YAP adorns cells with several oncogenic traits such as inhibition of apoptosis, enhanced proliferation, drug resistance, and immune response suppression, which later became associated with various diseases, particularly cancer. Therefore, inhibition of the YAP activity is an appealing and viable therapeutic target for cancer treatment. This review highlights the recent advances in existing and novel synthetic therapeutics targeting YAP inhibition and regulation. The synthetically produced YAP belonging to cyclic peptides and DC-TEADin02 and vinyl sulfonamide class of compounds are the most potent compounds to inhibit the YAP-TEAD expression by targeting protein-protein interaction (IC = 25 nM) and palmitate binding central pocket of TEAD (IC = 197 nM), respectively. On the other hand, Chlorpromazine belonging to phenothiazines class has the least potential to suppress YAP via proteasomal degradation (cell viability value of <20% at 40 µM).
Hippo 信号通路提取出几种信号,这些信号同时靶向转录共激活因子 yes 相关蛋白 (YAP) 的活性。YAP 是一种关键的调节因子,通过与转录增强相关域 (TEAD) 家族的转录因子结合,引发特征基因表达。YAP-TEAD 复合物通过靶基因表达与癌细胞的发育、增殖和进展相关。此外,YAP 通过抑制细胞凋亡、增强增殖、耐药性和免疫反应抑制等多种致癌特征来装饰细胞,这些特征后来与各种疾病,特别是癌症有关。因此,抑制 YAP 活性是癌症治疗中一种有吸引力和可行的治疗靶点。本综述重点介绍了针对 YAP 抑制和调节的现有和新型合成治疗的最新进展。合成的 YAP 属于环状肽和 DC-TEADin02 以及乙烯砜酰胺类化合物,是最有效的抑制 YAP-TEAD 表达的化合物,通过靶向蛋白质-蛋白质相互作用(IC 50 = 25 nM)和 TEAD 的棕榈酸结合中央口袋(IC 50 = 197 nM)。另一方面,属于苯并二氮䓬类的氯丙嗪通过蛋白酶体降解抑制 YAP 的潜力最小(在 40 µM 时细胞活力值 <20%)。