School of Biomedical Sciences, University of Nottingham, Nottingham, UK.
FEBS J. 2010 Feb;277(3):550-63. doi: 10.1111/j.1742-4658.2009.07486.x. Epub 2009 Dec 3.
One of the Holy Grails of ATP-binding cassette transporter research is a structural understanding of drug binding and transport in a eukaryotic multidrug resistance pump. These transporters are front-line mediators of drug resistance in cancers and represent an important therapeutic target in future chemotherapy. Although there has been intensive biochemical research into the human multidrug pumps, their 3D structure at atomic resolution remains unknown. The recent determination of the structure of a mouse P-glycoprotein at subatomic resolution is complemented by structures for a number of prokaryotic homologues. These structures have provided advances into our knowledge of the ATP-binding cassette exporter structure and mechanism, and have provided the template data for a number of homology modelling studies designed to reconcile biochemical data on these clinically important proteins.
ATP 结合盒转运蛋白研究的圣杯之一是对真核多药耐药泵中药物结合和转运的结构理解。这些转运蛋白是癌症耐药性的一线介质,代表未来化疗中的一个重要治疗靶点。尽管对人类多药泵进行了密集的生化研究,但它们的原子分辨率 3D 结构仍然未知。最近亚原子分辨率下测定的一种小鼠 P-糖蛋白结构,补充了一些原核同源物的结构。这些结构为我们对 ATP 结合盒外排泵结构和机制的认识提供了进展,并为许多同源建模研究提供了模板数据,旨在协调这些临床重要蛋白的生化数据。