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对百脉根中生根瘤菌L-核酮糖3-表异构酶的结构洞察。

Structural insight into L-ribulose 3-epimerase from Mesorhizobium loti.

作者信息

Uechi Keiko, Sakuraba Haruhiko, Yoshihara Akihide, Morimoto Kenji, Takata Goro

机构信息

Rare Sugar Research Center, Kagawa University, 2393 Ikenobe, Miki-cho, Kita-gun, Kagawa 761-0795, Japan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Dec;69(Pt 12):2330-9. doi: 10.1107/S0907444913021665. Epub 2013 Nov 19.

Abstract

L-Ribulose 3-epimerase (L-RE) from Mesorhizobium loti has been identified as the first ketose 3-epimerase that shows the highest observed activity towards ketopentoses. In the present study, the crystal structure of the enzyme was determined to 2.7 Å resolution. The asymmetric unit contained two homotetramers with the monomer folded into an (α/β)8-barrel carrying four additional short α-helices. The overall structure of M. loti L-RE showed significant similarity to the structures of ketose 3-epimerases from Pseudomonas cichorii, Agrobacterium tumefaciens and Clostridium cellulolyticum, which use ketohexoses as preferred substrates. However, the size of the C-terminal helix (α8) was much larger in M. loti L-RE than the corresponding helices in the other enzymes. In M. loti L-RE the α8 helix and the following C-terminal tail possessed a unique subunit-subunit interface which promoted the formation of additional intermolecular interactions and strengthened the enzyme stability. Structural comparisons revealed that the relatively small hydrophobic pocket of the enzyme around the substrate was likely to be the main factor responsible for the marked specificity for ketopentoses shown by M. loti L-RE.

摘要

来自百脉根中生根瘤菌的L-核糖ulose 3-表异构酶(L-RE)已被鉴定为首个对酮戊糖表现出最高活性的酮糖3-表异构酶。在本研究中,该酶的晶体结构被解析至2.7 Å分辨率。不对称单元包含两个同四聚体,单体折叠成一个(α/β)8桶状结构,并带有四个额外的短α螺旋。百脉根L-RE的整体结构与来自菊苣假单胞菌、根癌农杆菌和纤维素分解梭菌的酮糖3-表异构酶的结构有显著相似性,这些酶以酮己糖作为首选底物。然而,百脉根L-RE中C末端螺旋(α8)的尺寸比其他酶中的相应螺旋大得多。在百脉根L-RE中,α8螺旋和随后的C末端尾巴具有独特的亚基-亚基界面,该界面促进了额外分子间相互作用的形成并增强了酶的稳定性。结构比较表明,该酶底物周围相对较小的疏水口袋可能是百脉根L-RE对酮戊糖具有显著特异性的主要原因。

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