Maeda Miki, Kaku Hanae, Shimada Mikio, Nishioka Takaaki
National Institute of Agrobiological Sciences, Kannondai 2-1-2, Tsukuba, Ibaraki 305-8602, Japan.
Protein Eng. 2002 Jul;15(7):611-7. doi: 10.1093/protein/15.7.611.
Sequence analysis of a cDNA for D-erythrulose reductase from chicken liver showed that the deduced open reading frame encodes the protein with a molecular mass of 26 kDa consisting of 246 amino acids. Although the reductase shares more than 60% identity in the amino acid sequence with the mouse tetrameric carbonyl reductase, these two enzymes have many biochemical differences; their substrate specificity, subcellular localization, organ distribution, etc. A three-dimensional structure of D-erythrulose reductase was predicted by comparative modeling based on the structure of the tetrameric carbonyl reductase (PDB entry = 1CYD). Most of the residues at the active site (within 4 A from the ligand) of the carbonyl reductase were also conserved in the D-erythrulose reductase. Nevertheless, Val190 and Leu146 in the active site of the tetrameric carbonyl reductase were substituted in the D-erythrulose reductase by Asn192 and His148, respectively. The substitutions in the active sites may be related to the difference in substrate specificity of the two enzymes. The phylogenic analysis of D-erythrulose reductase and the other related proteins suggests that the protein described as a carbonyl reductase D-erythrulose reductase.
对来自鸡肝的D - 赤藓酮糖还原酶的cDNA进行序列分析表明,推导的开放阅读框编码一种分子量为26 kDa、由246个氨基酸组成的蛋白质。尽管该还原酶与小鼠四聚体羰基还原酶在氨基酸序列上有超过60%的同一性,但这两种酶有许多生化差异;它们的底物特异性、亚细胞定位、器官分布等。基于四聚体羰基还原酶的结构(PDB登录号 = 1CYD),通过比较建模预测了D - 赤藓酮糖还原酶的三维结构。羰基还原酶活性位点(距离配体4 Å以内)的大多数残基在D - 赤藓酮糖还原酶中也保守。然而,四聚体羰基还原酶活性位点的Val190和Leu146在D - 赤藓酮糖还原酶中分别被Asn192和His148取代。活性位点的这些取代可能与这两种酶底物特异性的差异有关。对D - 赤藓酮糖还原酶和其他相关蛋白质的系统发育分析表明,该蛋白质被描述为羰基还原酶D - 赤藓酮糖还原酶。