Zhou Z H, McCarthy D B, O'Connor C M, Reed L J, Stoops J K
Department of Pathology and Laboratory Medicine, University of Texas Medical School, Houston, TX 77030, USA.
Proc Natl Acad Sci U S A. 2001 Dec 18;98(26):14802-7. doi: 10.1073/pnas.011597698.
The three-dimensional reconstruction of the bovine kidney pyruvate dehydrogenase complex (M(r) approximately 7.8 x 10(6)) comprising about 22 molecules of pyruvate dehydrogenase (E(1)) and about 6 molecules of dihydrolipoamide dehydrogenase (E(3)) with its binding protein associated with the 60-subunit dihydrolipoamide acetyltransferase (E(2)) core provides considerable insight into the structural and functional organization of the largest multienzyme complex known. The structure shows that potentially 60 centers for acetyl-CoA synthesis are organized in sets of three at each of the 20 vertices of the pentagonal dodecahedral core. These centers consist of three E(1) molecules bound to one E(2) trimer adjacent to an E(3) molecule in each of 12 pentagonal openings. The E(1) components are anchored to the E(1)-binding domain of the E(2) subunits through an approximately 50-A-long linker. Three of these linkers emanate from the outside edges of the triangular base of the E(2) trimer and form a cage around its base that may shelter the lipoyl domains and the E(1) and E(2) active sites. The docking of the atomic structures of E(1) and the E(1) binding and lipoyl domains of E(2) in the electron microscopy map gives a good fit and indicates that the E(1) active site is approximately 95 A above the base of the trimer. We propose that the lipoyl domains and its tether (swinging arm) rotate about the E(1)-binding domain of E(2,) which is centrally located 45-50 A from the E(1), E(2), and E(3) active sites, and that the highly flexible breathing core augments the transfer of intermediates between active sites.
牛肾丙酮酸脱氢酶复合体(分子量约为7.8×10⁶)的三维重建包括约22个丙酮酸脱氢酶(E₁)分子和约6个二氢硫辛酰胺脱氢酶(E₃)分子,其结合蛋白与60亚基的二氢硫辛酰胺乙酰转移酶(E₂)核心相关联,这为了解已知最大的多酶复合体的结构和功能组织提供了相当多的见解。该结构表明,在五角十二面体核心的20个顶点处,每组三个潜在地组织了60个乙酰辅酶A合成中心。这些中心由三个E₁分子与一个E₂三聚体结合,在12个五边形开口中的每一个中,E₂三聚体与一个E₃分子相邻。E₁组分通过约50埃长的连接子锚定在E₂亚基的E₁结合结构域上。其中三个连接子从E₂三聚体三角形底部的外边缘发出,在其底部周围形成一个笼子,可能会保护硫辛酰结构域以及E₁和E₂的活性位点。E₁和E₂的E₁结合及硫辛酰结构域的原子结构在电子显微镜图谱中的对接拟合良好,表明E₁活性位点位于三聚体底部上方约95埃处。我们提出硫辛酰结构域及其系链(摆动臂)围绕E₂的E₁结合结构域旋转,该结构域位于距E₁、E₂和E₃活性位点中心45 - 50埃处,并且高度灵活的呼吸核心增强了活性位点之间中间体的转移。