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分辨率为2.0埃时3-异丙基苹果酸脱氢酶与3-异丙基苹果酸复合物的结构:Glu88在独特底物识别机制中的作用

Structure of 3-isopropylmalate dehydrogenase in complex with 3-isopropylmalate at 2.0 A resolution: the role of Glu88 in the unique substrate-recognition mechanism.

作者信息

Imada K, Inagaki K, Matsunami H, Kawaguchi H, Tanaka H, Tanaka N, Namba K

机构信息

International Institute for Advanced Research, Matsushita Electric Industrial Co., Ltd., Seika, Japan.

出版信息

Structure. 1998 Aug 15;6(8):971-82. doi: 10.1016/s0969-2126(98)00099-9.

Abstract

BACKGROUND

3-Isopropylmalate dehydrogenase (IPMDH) and isocitrate dehydrogenase (ICDH) belong to a unique family of bifunctional decarboxylating dehydrogenases. Although the ICDH dimer catalyzes its reaction under a closed conformation, known structures of the IPMDH dimer (without substrate) adopt a fully open or a partially closed form. Considering the similarity in the catalytic mechanism, the IPMDH dimer must be in a fully closed conformation during the reaction. A large conformational change should therefore occur upon substrate binding.

RESULTS

We have determined the crystal structure of IPMDH from Thiobacillus ferrooxidans (Tf) complexed with 3-isopropylmalate (IPM) at 2.0 A resolution by the molecular replacement method. The structure shows a fully closed conformation and the substrate-binding site is quite similar to that of ICDH except for a region around the gamma-isopropyl group. The gamma group is recognized by a unique hydrophobic pocket, which includes Glu88, Leu91 and Leu92 from subunit 1 and Val193' from subunit 2.

CONCLUSIONS

A large movement of domain 1 is induced by substrate binding, which results in the formation of the hydrophobic pocket for the gamma-isopropyl moiety of IPM. A glutamic acid in domain 1, Glu88, participates in the formation of the hydrophobic pocket. The C beta and C gamma atoms of Glu88 interact with the gamma-isopropyl moiety of IPM and are central to the recognition of substrate. The acidic tip of Glu88 is likely to interact with the nicotinamide mononucleotide (NMN) ribose of NAD+ in the ternary complex. This structure clearly explains the substrate specificity of IPMDH.

摘要

背景

3-异丙基苹果酸脱氢酶(IPMDH)和异柠檬酸脱氢酶(ICDH)属于双功能脱羧脱氢酶的一个独特家族。尽管ICDH二聚体在封闭构象下催化其反应,但IPMDH二聚体(无底物)的已知结构采用完全开放或部分封闭形式。考虑到催化机制的相似性,IPMDH二聚体在反应过程中必定处于完全封闭构象。因此,底物结合时应发生较大的构象变化。

结果

我们通过分子置换法,以2.0埃分辨率测定了氧化亚铁硫杆菌(Tf)的IPMDH与3-异丙基苹果酸(IPM)复合物的晶体结构。该结构显示为完全封闭构象,除γ-异丙基周围区域外,底物结合位点与ICDH的非常相似。γ基团由一个独特的疏水口袋识别,该口袋包括来自亚基1的Glu88、Leu91和Leu92以及来自亚基2的Val193'。

结论

底物结合诱导结构域1发生大的移动,这导致形成用于IPM的γ-异丙基部分的疏水口袋。结构域1中的谷氨酸Glu88参与疏水口袋的形成。Glu88的Cβ和Cγ原子与IPM的γ-异丙基部分相互作用,是识别底物的关键。Glu88的酸性末端可能在三元复合物中与NAD+的烟酰胺单核苷酸(NMN)核糖相互作用。该结构清楚地解释了IPMDH的底物特异性。

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