Hou Caixia, Rohr Jürgen, Parkin Sean, Tsodikov Oleg V
University of Kentucky , Department of Pharmaceutical Sciences , College of Pharmacy , Lexington , KY 40536-0596 , USA . Email:
University of Kentucky , Department of Chemistry , Lexington , KY 40506-0055 , USA . Email:
Medchemcomm. 2019 Mar 28;10(5):735-741. doi: 10.1039/c9md00100j. eCollection 2019 May 1.
An aureolic acid natural product mithramycin (MTM) has been known for its potent antineoplastic properties. MTM inhibits cell growth by binding in the minor groove of double-stranded DNA as a dimer, in which the two molecules of MTM are coordinated to each other through a divalent metal ion. A crystal structure of an MTM analogue, MTM SA-Phe, in the active metal ion-coordinated dimeric form demonstrates how the stereochemical features of MTM define the helicity of the dimeric scaffold for its binding to a right-handed DNA double helix. We also show crystallographically and biochemically that MTM, but not MTM SA-Phe, can be inactivated by boric acid through formation of a large macrocyclic species, in which two molecules of MTM are crosslinked to each other through 3-side chain-boron-sugar intermolecular bonds. We discuss these structural and biochemical properties in the context of MTM biosynthesis and the design of MTM analogues as anticancer therapeutics.
金霉素(MTM)这种含金耳草酸的天然产物以其强大的抗肿瘤特性而闻名。MTM通过以二聚体形式结合在双链DNA的小沟中来抑制细胞生长,其中两个MTM分子通过二价金属离子相互配位。一种MTM类似物MTM SA - Phe的晶体结构以活性金属离子配位的二聚体形式展示了MTM的立体化学特征如何定义其二聚体支架与右手DNA双螺旋结合的螺旋度。我们还通过晶体学和生物化学方法表明,硼酸可通过形成一种大的大环物质使MTM失活,但MTM SA - Phe不会,在这种大环物质中,两个MTM分子通过3 - 侧链 - 硼 - 糖分子间键相互交联。我们在MTM生物合成以及作为抗癌治疗药物的MTM类似物设计的背景下讨论了这些结构和生化特性。