Bailly Christian
OncoWitan, Lille (Wasquehal) 59290, France.
Bioorg Med Chem. 2021 Feb 15;32:116001. doi: 10.1016/j.bmc.2021.116001. Epub 2021 Jan 7.
Flavonoids are abundant in nature, structurally very diversified and largely investigated. However, the subgroup of 2'-hydroxyflavonoids is much less known and not frequently studied. The present review identifies the major naturally-occurring and synthetic 2'-hydroxyflavonoid derivatives and discusses their structural characteristics and biological properties, with a focus on anticancer activities. The pharmacological properties of 2'-hydroxyflavone (2'-HF) and 2'-hydroxyflavanone (2'-HFa) are detailed. Upon binding to the Ral-interacting protein Rlip implicated in the transport of glutathione conjugates, 2'-HFa inhibits tumor cell proliferation and restrict tumor growth, in particular in breast cancer models. Among the synthetic derivatives, the characteristics of the anticancer product 2D08 (2',3',4'-trihydroxy flavone) are detailed to shed light on the molecular mechanism of action of this compound, as a regulator of protein SUMOylation. Inhibition of protein SUMOylation by 2D08 blocks cancer cell migration and invasion, and the compound greatly enhances the anticancer effects of conventional cytotoxic drugs like etoposide. The structural role of the 2'-hydroxyl group on the phenyl C-ring of the flavonoid is discussed, notably the capacity to engage intramolecular H-bonding interactions with the O1 atom on the B-ring of the chromone unit (or the oxygen of a 3-OH group when it is presents). The 2'-hydroxyl group of flavonoid appears as a regulator of the conformational freedom between the bicyclic A-B unit and the appended phenyl C-ring, favoring the planarity of the molecule. It is an essential group accounting for the biological properties of 2'-HF, 2'-HFa and structurally related compounds. This review shed light on 2'-hydroxyflavonoids to encourage their use and chemical development.
黄酮类化合物在自然界中含量丰富,结构非常多样且受到广泛研究。然而,2'-羟基黄酮类化合物亚组却鲜为人知且研究较少。本综述确定了主要的天然存在和合成的2'-羟基黄酮衍生物,并讨论了它们的结构特征和生物学特性,重点是抗癌活性。详细阐述了2'-羟基黄酮(2'-HF)和2'-羟基黄烷酮(2'-HFa)的药理特性。与参与谷胱甘肽共轭物转运的Ral相互作用蛋白Rlip结合后,2'-HFa可抑制肿瘤细胞增殖并限制肿瘤生长,尤其是在乳腺癌模型中。在合成衍生物中,详细介绍了抗癌产品2D08(2',3',4'-三羟基黄酮)的特性,以阐明该化合物作为蛋白质SUMO化调节剂的分子作用机制。2D08对蛋白质SUMO化的抑制作用可阻断癌细胞的迁移和侵袭,并且该化合物极大地增强了依托泊苷等传统细胞毒性药物的抗癌效果。讨论了黄酮类化合物苯环C环上2'-羟基的结构作用,特别是其与色酮单元B环上的O1原子(或存在时3-OH基团的氧)形成分子内氢键相互作用的能力。黄酮类化合物的2'-羟基似乎是双环A-B单元与附加的苯环C环之间构象自由度的调节剂,有利于分子的平面性。它是决定2'-HF、2'-HFa及结构相关化合物生物学特性的关键基团。本综述揭示了2'-羟基黄酮类化合物,以促进它们的应用和化学开发。