Taskinen Jukka P, van Aalten Daan M, Knudsen Jens, Wierenga Rik K
Biocenter Oulu and Department of Biochemistry, University of Oulu, FIN-90014, Finland.
Proteins. 2007 Jan 1;66(1):229-38. doi: 10.1002/prot.21124.
The acyl-CoA binding protein (ACBP) is essential for the fatty acid metabolism, membrane structure, membrane fusion, and ceramide synthesis. Here high resolution crystal structures of human cytosolic liver ACBP, unliganded and liganded with a physiological ligand, myristoyl-CoA are described. The binding of the acyl-CoA molecule induces only few structural differences near the binding pocket. The crystal form of the liganded ACBP, which has two ACBP molecules in the asymmetric unit, shows that in human ACBP the same acyl-CoA binding pocket is present as previously described for the bovine and Plasmodium falciparum ACBP and the mode of binding of the 3'-phosphate-AMP moiety is conserved. Unexpectedly, in one of the acyl-CoA binding pockets the acyl moiety is bound in a reversed mode as compared with the bovine and P. falciparum structures. In this binding mode, the myristoyl-CoA molecule is fully ordered and bound across the two ACBP molecules of the crystallographic asymmetric unit: the 3'-phosphate-AMP moiety is bound in the binding pocket of one ACBP molecule and the acyl chain is bound in the pocket of the other ACBP molecule. The remaining binding pocket cavities of these two ACBP molecules are filled by other ligand fragments. This novel binding mode shows that the acyl moiety can flip out of its classical binding pocket and bind elsewhere, suggesting a mechanism for the acyl-CoA transfer between ACBP and the active site of a target enzyme. This mechanism is of possible relevance for the in vivo function of ACBP.
酰基辅酶A结合蛋白(ACBP)对于脂肪酸代谢、膜结构、膜融合以及神经酰胺合成至关重要。本文描述了人细胞质肝ACBP在未结合配体以及与生理配体肉豆蔻酰辅酶A结合时的高分辨率晶体结构。酰基辅酶A分子的结合仅在结合口袋附近引起很少的结构差异。结合了配体的ACBP的晶体形式在不对称单元中有两个ACBP分子,这表明人ACBP中存在与先前描述的牛和恶性疟原虫ACBP相同的酰基辅酶A结合口袋,并且3'-磷酸-AMP部分的结合模式是保守的。出乎意料的是,在其中一个酰基辅酶A结合口袋中,酰基部分的结合模式与牛和恶性疟原虫的结构相比是相反的。在这种结合模式下,肉豆蔻酰辅酶A分子完全有序,并跨晶体学不对称单元的两个ACBP分子结合:3'-磷酸-AMP部分结合在一个ACBP分子的结合口袋中,酰基链结合在另一个ACBP分子的口袋中。这两个ACBP分子其余的结合口袋腔被其他配体片段填充。这种新的结合模式表明酰基部分可以从其经典结合口袋中翻转出来并结合到其他地方,这提示了一种酰基辅酶A在ACBP和靶酶活性位点之间转移的机制。这种机制可能与ACBP的体内功能相关。