The phytochemical, corynoline, diminishes Aurora kinase B activity to induce mitotic defect and polyploidy

中心体 极光抑制剂 有丝分裂 极光激酶 极光A激酶 生物 细胞生物学 主轴装置 PLK1 多极纺锤 极光激酶B 表型筛选 细胞周期 细胞分裂 细胞 生物化学 表型 基因
作者
Ziqi Yan,Qiong Shi,Xumei Liu,Jinhua Li,Vidhula Ahire,Shenqiu Zhang,Jing Zhang,Dun Yang,Thaddeus D. Allen
出处
期刊:Biomedicine & Pharmacotherapy [Elsevier]
卷期号:147: 112645-112645 被引量:1
标识
DOI:10.1016/j.biopha.2022.112645
摘要

Plants are a rich source for bioactive compounds. However, plant extracts can harbor a mixture of bioactive molecules that promote divergent phenotypes and potentially have confounding effects in bioassays. Even with further purification and identification, target deconvolution can be challenging. Corynoline and acetylcorynoline, are phytochemicals that were previously isolated through a screen for compounds able to induce mitotic arrest and polyploidy in oncogene expressing retinal pigment epithelial (RPE) cells. Here, we shed light on the mechanism by which these phytochemicals can attack human cancer cells. Mitotic arrest was coincident to the induction of centrosome amplification and declustering, causing multi-polar spindle formation. Corynoline was demonstrated to have true centrosome declustering activity in a model where A549 cells were chemically induced to have more than a regular complement of centrosomes. Corynoline could inhibit the centrosome clustering required for pseudo-bipolar spindle formation in these cells. The activity of AURKB, but not AURKA or polo-like kinase 4, was diminished by corynoline. It only partially inhibited AURKB, so it may be a partial antagonist or corynoline may work upstream on an unknown regulator of AURKB activity or localization. Nonetheless, corynoline and acetylcorynoline inhibited the viability of a variety of human cancer derived cell lines. These phytochemicals could serve as prototypes for a next-generation analog with improved potency, selectivity or in vivo bioavailability. Such an analog could be useful as a non-toxic component of combination therapies where inhibiting the chromosomal passenger protein complex is desired.
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