磷脂酸
磷脂酶D
基因亚型
化学
同工酶
药物发现
计算生物学
同源建模
生物化学
基因
生物
酶
膜
磷脂
作者
Claire M. Metrick,Emily A. Peterson,Joseph C. Santoro,Istvan Enyedy,Paramasivam Murugan,TeYu Chen,Klaus Michelsen,Michael L. Cullivan,Kerri Spilker,P. Rajesh Kumar,Tricia L. May‐Dracka,Jayanth V. Chodaparambil
标识
DOI:10.1038/s41589-019-0458-4
摘要
Phospholipase D enzymes (PLDs) are ubiquitous phosphodiesterases that produce phosphatidic acid (PA), a key second messenger and biosynthetic building block. Although an orthologous bacterial Streptomyces sp. strain PMF PLD structure was solved two decades ago, the molecular basis underlying the functions of the human PLD enzymes (hPLD) remained unclear based on this structure due to the low homology between these sequences. Here, we describe the first crystal structures of hPLD1 and hPLD2 catalytic domains and identify novel structural elements and functional differences between the prokaryotic and eukaryotic enzymes. Furthermore, structure-based mutation studies and structures of inhibitor-hPLD complexes allowed us to elucidate the binding modes of dual and isoform-selective inhibitors, highlight key determinants of isoenzyme selectivity and provide a basis for further structure-based drug discovery and functional characterization of this therapeutically important superfamily of enzymes.
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