Department of Chemistry, University of Wyoming, Laramie, WY 82071, USA.
Molecules. 2013 Aug 2;18(8):9253-77. doi: 10.3390/molecules18089253.
Bleomycins are a family of glycopeptide antibiotics that have the ability to bind and degrade DNA when bound to key metal ions, which is believed to be responsible for their antitumor activity. Knowledge of the structures of metallo-bleomycins is vital to further characterize their mechanism of action. To this end, numerous structural studies on metallo-bleomycins have been conducted. NMR spectroscopy has had a key role in most of these studies, and has led to very important findings involving the coordination chemistry of metallo-bleomycins, and the details of many metallo-bleomycin-DNA spatial correlations for this important drug. This paper reviews the most important contributions of NMR to the bleomycin field.
博来霉素是一类糖肽类抗生素,当与关键金属离子结合时,具有结合和降解 DNA 的能力,这被认为是其抗肿瘤活性的原因。了解金属博来霉素的结构对于进一步阐明其作用机制至关重要。为此,已经进行了许多关于金属博来霉素的结构研究。NMR 光谱在这些研究中起着关键作用,并得出了非常重要的发现,涉及金属博来霉素的配位化学以及该重要药物的许多金属博来霉素-DNA 空间相关性的细节。本文综述了 NMR 对博来霉素领域最重要的贡献。