Jones D D, Stott K M, Howard M J, Perham R N
Cambridge Centre for Molecular Recognition, Department of Biochemistry, University of Cambridge, UK.
Biochemistry. 2000 Jul 25;39(29):8448-59. doi: 10.1021/bi992978i.
The three lipoyl (E2plip) domains of the dihydrolipoyl acetyltransferase component of the pyruvate dehydrogenase (PDH) complex of Escherichia coli house the lipoyl-lysine side chain essential for active-site coupling and substrate channelling within the complex. The structure of the unlipoylated form of the innermost domain (E2plip(apo)) was determined by multidimensional NMR spectroscopy and found to resemble closely that of a nonfunctional hybrid domain determined previously [Green et al. (1995) J. Mol. Biol. 248, 328-343]. The domain comprises two four-stranded beta-sheets, with the target lysine residue residing at the tip of a type-I beta-turn in one of the sheets; the N- and C-termini lie close together at the opposite end of the molecule in the other beta-sheet. Measurement of (15)N NMR relaxation parameters and backbone hydrogen/deuterium (H/D) exchange rates reveals that the residues in and surrounding the lipoyl-lysine beta-turn in the E2plip(apo) form of the domain become less flexible after lipoylation of the lysine residue. This implies that the lipoyl-lysine side chain may not sample the full range of conformational space once thought. Moreover, reductive acetylation of the lipoylated domain (E2plip(holo) --> E2plip(redac)) was accompanied by large changes in chemical shift between the two forms, and multiple resonances were observed for several residues. This implies a change in conformation and the existence of multiple conformations of the domain on reductive acetylation, which may be important in stabilizing this catalytic intermediate.
大肠杆菌丙酮酸脱氢酶(PDH)复合体中二氢硫辛酰乙酰转移酶组分的三个硫辛酰(E2plip)结构域包含了硫辛酰赖氨酸侧链,该侧链对于复合体中活性位点偶联和底物通道化至关重要。通过多维核磁共振光谱法确定了最内层结构域的未硫辛酰化形式(E2plip(apo))的结构,发现其与先前确定的无功能杂合结构域的结构非常相似[格林等人(1995年)《分子生物学杂志》248卷,328 - 343页]。该结构域由两个四链β折叠组成,目标赖氨酸残基位于其中一个折叠中I型β转角的末端;N端和C端在分子另一端的另一个β折叠中靠得很近。对(15)N NMR弛豫参数和主链氢/氘(H/D)交换率的测量表明,该结构域的E2plip(apo)形式中硫辛酰赖氨酸β转角内及其周围的残基在赖氨酸残基硫辛酰化后变得不那么灵活。这意味着硫辛酰赖氨酸侧链可能无法像以前认为的那样在整个构象空间范围内取样。此外,硫辛酰化结构域的还原乙酰化(E2plip(holo) --> E2plip(redac))伴随着两种形式之间化学位移的巨大变化,并且几个残基观察到多个共振。这意味着还原乙酰化时结构域构象发生了变化并且存在多种构象,这可能对稳定这种催化中间体很重要。