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在2.32埃分辨率下观察到的来自大肠杆菌的丙酮酸脱氢酶多酶复合体E1脱辅酶组分的活性位点变化。

Active-site changes in the pyruvate dehydrogenase multienzyme complex E1 apoenzyme component from Escherichia coli observed at 2.32 A resolution.

作者信息

Chandrasekhar Krishnamoorthy, Arjunan Palaniappa, Sax Martin, Nemeria Natalia, Jordan Frank, Furey William

机构信息

Biocrystallography Laboratory, Veterans Affairs Medical Center, PO Box 12055, University Drive C, Pittsburgh, PA 15240, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2006 Nov;62(Pt 11):1382-6. doi: 10.1107/S0907444906034408. Epub 2006 Oct 18.

Abstract

The first enzymatic component, E1 (EC 1.2.4.1), of the pyruvate dehydrogenase multienzyme complex (PDHc) utilizes thiamine diphosphate (ThDP) and Mg(2+) as cofactors. The structure of a branched-chain-specific E1 apoenzyme from the heterotetrameric alpha(2)beta(2) E1 family was recently reported and showed that disorder-to-order transformations in two active-site loops take place upon cofactor binding. To ascertain what effect the absence of cofactor may have in the homodimeric alpha(2) Escherichia coli PDHc E1, the corresponding apoenzyme has been prepared and its three-dimensional structure determined and analyzed at 2.32 A by crystallographic methods. This represents the first reported apoenzyme structure for any E1 component from the homodimeric alpha(2) family. Electron-density features occurring in the region where the cofactor pyrimidine ring would normally be expected to bind are of size, shape and location compatible with water molecules that form a hydrogen-bonded linkage between residues Glu571 and Val192, which normally make conserved interactions with the ThDP cofactor. A histidine side chain that normally forms hydrogen bonds to ThDP is disordered in its absence and partially occupies two sites. Unlike in the reported heterotetrameric branched-chain apo-E1, no disorder/order loop transformations are evident in apo-PDHc E1 relative to the holo-E1 enzyme (PDHc E1-ThDP-Mg(2+)). Differences in the extent of hydrogen-bonding networks found in the apo-E1 enzyme, the holo-E1 enzyme and in an inhibitor complex with bound thiamine 2-thiazolone diphosphate (ThTDP), PDHc E1-ThTDP-Mg(2+), are described.

摘要

丙酮酸脱氢酶多酶复合物(PDHc)的首个酶组分E1(EC 1.2.4.1)利用硫胺二磷酸(ThDP)和Mg(2+)作为辅因子。最近报道了来自异源四聚体α(2)β(2) E1家族的支链特异性E1脱辅基酶的结构,结果表明,辅因子结合后,两个活性位点环会发生从无序到有序的转变。为了确定辅因子缺失对同二聚体α(2)大肠杆菌PDHc E1可能产生何种影响,制备了相应的脱辅基酶,并通过晶体学方法在2.32 Å分辨率下测定并分析了其三维结构。这是首次报道的来自同二聚体α(2)家族的任何E1组分的脱辅基酶结构。在通常预期辅因子嘧啶环会结合的区域出现的电子密度特征,其大小、形状和位置与水分子相符,这些水分子在残基Glu571和Val192之间形成氢键连接,而这两个残基通常与ThDP辅因子形成保守相互作用。一个通常与ThDP形成氢键的组氨酸侧链在没有ThDP时无序,并部分占据两个位置。与已报道的异源四聚体支链脱辅基E1不同,脱辅基PDHc E1相对于全酶E1(PDHc E1-ThDP-Mg(2+))没有明显的无序/有序环转变。本文描述了脱辅基E1酶、全酶E1以及与结合硫胺2-噻唑啉二磷酸(ThTDP)的抑制剂复合物PDHc E1-ThTDP-Mg(2+)中氢键网络程度的差异。

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