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甘油-3-磷酸脱氢酶活性位点侧链的组织促进了酶的高效催化和变体酶的拯救。

The Organization of Active Site Side Chains of Glycerol-3-phosphate Dehydrogenase Promotes Efficient Enzyme Catalysis and Rescue of Variant Enzymes.

机构信息

Department of Chemistry, University at Buffalo, State University of New York, Buffalo, New York 14260-3000, United States.

出版信息

Biochemistry. 2020 Apr 28;59(16):1582-1591. doi: 10.1021/acs.biochem.0c00175. Epub 2020 Apr 13.

Abstract

A comparison of the values of / for reduction of dihydroxyacetone phosphate (DHAP) by NADH catalyzed by wild type and K120A/R269A variant glycerol-3-phosphate dehydrogenase from human liver (GPDH) shows that the transition state for enzyme-catalyzed hydride transfer is stabilized by 12.0 kcal/mol by interactions with the cationic K120 and R269 side chains. The transition state for the K120A/R269A variant-catalyzed reduction of DHAP is stabilized by 1.0 and 3.8 kcal/mol for reactions in the presence of 1.0 M EtNH and guanidinium cation (Gua), respectively, and by 7.5 kcal/mol for reactions in the presence of a mixture of each cation at 1.0 M, so that the transition state stabilization by the ternary E·EtNH·Gua complex is 2.8 kcal/mol greater than the sum of stabilization by the respective binary complexes. This shows that there is cooperativity between the paired activators in transition state stabilization. The effective molarities (EMs) of ∼50 M determined for the K120A and R269A side chains are ≪10 M, the EM for entropically controlled reactions. The unusually efficient rescue of the activity of GPDH-catalyzed reactions by the HP/Gua pair and by the Gua/EtNH activator pair is due to stabilizing interactions between the protein and the activator pieces that organize the K120 and R269 side chains at the active site. This "preorganization" of side chains promotes effective catalysis by GPDH and many other enzymes. The role of the highly conserved network of side chains, which include Q295, R269, N270, N205, T264, K204, D260, and K120, in catalysis is discussed.

摘要

野生型和 K120A/R269A 变异型人肝甘油-3-磷酸脱氢酶(GPDH)催化的二羟丙酮磷酸(DHAP)还原的 / 值比较表明,酶催化氢化物转移的过渡态通过与带正电荷的 K120 和 R269 侧链的相互作用稳定 12.0 kcal/mol。在 1.0 M EtNH 和胍阳离子(Gua)存在下,K120A/R269A 变体催化的 DHAP 还原的过渡态分别稳定 1.0 和 3.8 kcal/mol,而在每种阳离子混合物存在下的反应则稳定 7.5 kcal/mol,因此三元 E·EtNH·Gua 复合物对过渡态的稳定作用比各自二元复合物的稳定作用大 2.8 kcal/mol。这表明在过渡态稳定化中存在配对激活剂之间的协同作用。对于 K120A 和 R269A 侧链,确定的有效摩尔浓度(EM)约为 50 M,这远低于熵控制反应的 10 M。HP/Gua 对和 Gua/EtNH 激活剂对 GPDH 催化反应活性的异常有效挽救归因于蛋白质与激活剂片段之间的稳定相互作用,这些相互作用在活性部位组织 K120 和 R269 侧链。这种侧链的“预组织”促进了 GPDH 和许多其他酶的有效催化。讨论了高度保守的侧链网络(包括 Q295、R269、N270、N205、T264、K204、D260 和 K120)在催化中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0466/7207223/41e4b20a4fb3/bi0c00175_0008.jpg

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