Dobritzsch D, König S, Schneider G, Lu G
Department of Medical Biochemistry and Biophysics, Karolinska Institutet S-17177 Stockholm, Sweden.
J Biol Chem. 1998 Aug 7;273(32):20196-204. doi: 10.1074/jbc.273.32.20196.
The crystal structure of tetrameric pyruvate decarboxylase from Zymomonas mobilis has been determined at 1.9 A resolution and refined to a crystallographic R-factor of 16.2% and Rfree of 19.7%. The subunit consists of three domains, all of the alpha/beta type. Two of the subunits form a tight dimer with an extensive interface area. The thiamin diphosphate binding site is located at the subunit-subunit interface, and the cofactor, bound in the V conformation, interacts with residues from the N-terminal domain of one subunit and the C-terminal domain of the second subunit. The 2-fold symmetry generates the second thiamin diphosphate binding site in the dimer. Two of the dimers form a tightly packed tetramer with pseudo 222 symmetry. The interface area between the dimers is much larger in pyruvate decarboxylase from Z. mobilis than in the yeast enzyme, and structural differences in these parts result in a completely different packing of the subunits in the two enzymes. In contrast to other pyruvate decarboxylases, the enzyme from Z. mobilis is not subject to allosteric activation by the substrate. The tight packing of the dimers in the tetramer prevents large rearrangements in the quaternary structure as seen in the yeast enzyme and locks the enzyme in an activated conformation. The architecture of the cofactor binding site and the active site is similar in the two enzymes. However, the x-ray analysis reveals subtle but significant structural differences in the active site that might be responsible for variations in the biochemical properties in these enzymes.
运动发酵单胞菌四聚体丙酮酸脱羧酶的晶体结构已在1.9埃分辨率下测定,并精修至晶体学R因子为16.2%,自由R因子为19.7%。该亚基由三个结构域组成,均为α/β型。其中两个亚基形成紧密的二聚体,具有广泛的界面区域。硫胺素二磷酸结合位点位于亚基-亚基界面,以V构象结合的辅因子与一个亚基的N端结构域和第二个亚基的C端结构域的残基相互作用。二倍体对称性在二聚体中产生第二个硫胺素二磷酸结合位点。其中两个二聚体形成紧密堆积的具有伪222对称性的四聚体。运动发酵单胞菌丙酮酸脱羧酶中二聚体之间的界面区域比酵母酶中的大得多,并且这些部分的结构差异导致两种酶中亚基的堆积方式完全不同。与其他丙酮酸脱羧酶不同,运动发酵单胞菌的这种酶不受底物的变构激活。四聚体中二聚体的紧密堆积阻止了如酵母酶中所见的四级结构的大的重排,并将酶锁定在活化构象。两种酶中辅因子结合位点和活性位点的结构相似。然而,X射线分析揭示了活性位点中细微但显著的结构差异,这可能是这些酶生化特性变化的原因。