Butt Ghazala, Attar Rukset, Tabassum Sobia, Aras Aliye, Qadir Muhammad Imran, Ozbey Ulku, Alaaeddine Nada, Ozcelik Beraat, Farooqi Ammad Ahmad
Department of Botany, Government College University, Lahore, Katchery Road, Lahore 54000, Pakistan.
Department of Obstetrics and Gynecology, Yeditepe University Hospital Istanbul, Turkey.
Cell Mol Biol (Noisy-le-grand). 2017 Dec 15;63(12):5-10. doi: 10.14715/cmb/2017.63.12.3.
Interdisciplinary research has revolutionized the field of medicine and we have witnessed exponential increase in the high-impact research in past few decades. However, the road to this burgeoning research field is obstacle-ridden because of intratumor heterogeneity, loss of apoptosis and dysregulation of spatio-temporally controlled signaling pathways. Ground-breaking findings obtained through genetic, genomic and proteomic studies have considerably improved our concepts related to the complexity of protein network and excitingly, discovery of miRNAs has added another layer of intricacy to quantitatively regulated gene networks. In this review, we chronicle the milestone achievements and discuss how Pterostilbenes effectively regulated different cellular pathways. We have provided detailed mechanistic insights related to regulation of JAK-STAT signaling, Notch pathway, Wnt mediated intracellular signaling by pterostilbene. Underlying mechanisms about regulation of PI3K/AKT and MAPK pathways by pterostilbene in different cancers. Regulation of Metastasis-associated protein 1 (MTA1) proteins and Human telomerase reverse transcriptase (hTERT) in cancer cells by pterostilbene. Pterostilbene has also been reported to modulate the expression of various oncogenic and tumor suppressor microRNAs in cancer cells. Better and sharper comprehension of the concepts associated with the modes of action of pterostilbene in different cancers will be useful in identification of cancers which can be efficiently targeted by pterostilbene.
跨学科研究彻底改变了医学领域,在过去几十年里,我们见证了高影响力研究呈指数级增长。然而,由于肿瘤内异质性、细胞凋亡缺失以及时空控制信号通路的失调,通往这个新兴研究领域的道路充满障碍。通过基因、基因组和蛋白质组学研究获得的开创性发现极大地改善了我们对蛋白质网络复杂性的认识,令人兴奋的是,微小RNA(miRNA)的发现为定量调控基因网络增添了另一层复杂性。在这篇综述中,我们记录了里程碑式的成就,并讨论了紫檀芪如何有效地调节不同的细胞通路。我们提供了与紫檀芪调节JAK-STAT信号通路、Notch通路、Wnt介导的细胞内信号传导相关的详细机制见解。紫檀芪在不同癌症中调节PI3K/AKT和MAPK通路的潜在机制。紫檀芪对癌细胞中转移相关蛋白1(MTA1)和人端粒酶逆转录酶(hTERT)的调节。据报道,紫檀芪还可调节癌细胞中各种致癌和抑癌微小RNA的表达。更好、更深入地理解紫檀芪在不同癌症中的作用模式相关概念,将有助于识别可被紫檀芪有效靶向的癌症。