Pebay-Peyroula Eva, Dahout-Gonzalez Cécile, Kahn Richard, Trézéguet Véronique, Lauquin Guy J-M, Brandolin Gérard
Institut de Biologie Structurale, UMR 5075 CEA-CNRS-Université Joseph Fourier, 41 rue Jules Horowitz, F-38027, Grenoble cedex 1, France.
Nature. 2003 Nov 6;426(6962):39-44. doi: 10.1038/nature02056.
ATP, the principal energy currency of the cell, fuels most biosynthetic reactions in the cytoplasm by its hydrolysis into ADP and inorganic phosphate. Because resynthesis of ATP occurs in the mitochondrial matrix, ATP is exported into the cytoplasm while ADP is imported into the matrix. The exchange is accomplished by a single protein, the ADP/ATP carrier. Here we have solved the bovine carrier structure at a resolution of 2.2 A by X-ray crystallography in complex with an inhibitor, carboxyatractyloside. Six alpha-helices form a compact transmembrane domain, which, at the surface towards the space between inner and outer mitochondrial membranes, reveals a deep depression. At its bottom, a hexapeptide carrying the signature of nucleotide carriers (RRRMMM) is located. Our structure, together with earlier biochemical results, suggests that transport substrates bind to the bottom of the cavity and that translocation results from a transient transition from a 'pit' to a 'channel' conformation.
ATP是细胞的主要能量货币,通过水解为ADP和无机磷酸为细胞质中的大多数生物合成反应提供能量。由于ATP的重新合成发生在线粒体基质中,ATP被输出到细胞质中,而ADP则被输入到基质中。这种交换是由一种单一的蛋白质——ADP/ATP载体完成的。在这里,我们通过与抑制剂羧基苍术苷形成复合物的X射线晶体学方法,以2.2埃的分辨率解析了牛ADP/ATP载体的结构。六个α螺旋形成一个紧密的跨膜结构域,在朝向线粒体内外膜之间空间的表面,有一个深深的凹陷。在其底部,有一个携带核苷酸载体特征序列(RRRMMM)的六肽。我们的结构与早期的生化结果表明,运输底物结合在腔的底部,并且转运是由从“坑”到“通道”构象的瞬时转变导致的。