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与底物结合的 D-半乳糖-6-磷酸异构酶的晶体结构和底物特异性。

Crystal structure and substrate specificity of D-galactose-6-phosphate isomerase complexed with substrates.

机构信息

Functional Food Center, Korea Institute of Science and Technology Gangneung Institute, Gangneung, Korea.

出版信息

PLoS One. 2013 Aug 28;8(8):e72902. doi: 10.1371/journal.pone.0072902. eCollection 2013.

Abstract

D-Galactose-6-phosphate isomerase from Lactobacillus rhamnosus (LacAB; EC 5.3.1.26), which is encoded by the tagatose-6-phosphate pathway gene cluster (lacABCD), catalyzes the isomerization of D-galactose-6-phosphate to D-tagatose-6-phosphate during lactose catabolism and is used to produce rare sugars as low-calorie natural sweeteners. The crystal structures of LacAB and its complex with D-tagatose-6-phosphate revealed that LacAB is a homotetramer of LacA and LacB subunits, with a structure similar to that of ribose-5-phosphate isomerase (Rpi). Structurally, LacAB belongs to the RpiB/LacAB superfamily, having a Rossmann-like αβα sandwich fold as has been identified in pentose phosphate isomerase and hexose phosphate isomerase. In contrast to other family members, the LacB subunit also has a unique α7 helix in its C-terminus. One active site is distinctly located at the interface between LacA and LacB, whereas two active sites are present in RpiB. In the structure of the product complex, the phosphate group of D-tagatose-6-phosphate is bound to three arginine residues, including Arg-39, producing a different substrate orientation than that in RpiB, where the substrate binds at Asp-43. Due to the proximity of the Arg-134 residue and backbone Cα of the α6 helix in LacA to the last Asp-172 residue of LacB with a hydrogen bond, a six-carbon sugar-phosphate can bind in the larger pocket of LacAB, compared with RpiB. His-96 in the active site is important for ring opening and substrate orientation, and Cys-65 is essential for the isomerization activity of the enzyme. Two rare sugar substrates, D-psicose and D-ribulose, show optimal binding in the LacAB-substrate complex. These findings were supported by the results of LacA activity assays.

摘要

来自鼠李糖乳杆菌 (LacAB; EC 5.3.1.26) 的 D-半乳糖-6-磷酸异构酶,由 tagatose-6-磷酸途径基因簇 (lacABCD) 编码,在乳糖分解代谢过程中催化 D-半乳糖-6-磷酸异构化为 D-塔格糖-6-磷酸,并用于生产稀有糖作为低热量天然甜味剂。LacAB 及其与 D-塔格糖-6-磷酸复合物的晶体结构表明,LacAB 是 LacA 和 LacB 亚基的同源四聚体,结构与核糖-5-磷酸异构酶 (Rpi) 相似。从结构上看,LacAB 属于 RpiB/LacAB 超家族,具有已在戊糖磷酸异构酶和己糖磷酸异构酶中鉴定出的 Rossmann 样αβα三明治折叠。与其他家族成员不同,LacB 亚基在其 C 末端还有一个独特的α7 螺旋。一个活性位点明显位于 LacA 和 LacB 之间的界面处,而 RpiB 中有两个活性位点。在产物复合物的结构中,D-塔格糖-6-磷酸的磷酸基团与三个精氨酸残基结合,包括 Arg-39,产生的底物取向与 RpiB 不同,在 RpiB 中,底物与 Asp-43 结合。由于 LacA 中 Arg-134 残基和α6 螺旋的 Cα 与 LacB 中最后一个 Asp-172 残基之间的氢键接近,与 RpiB 相比,六碳糖磷酸可以结合在 LacAB 的较大口袋中。活性位点中的 His-96 对开环和底物取向很重要,Cys-65 对酶的异构化活性至关重要。两种稀有糖底物,D-阿洛酮糖和 D-核酮糖,在 LacAB-底物复合物中表现出最佳结合。这些发现得到了 LacA 活性测定结果的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c928/3755991/8a41dd3e161a/pone.0072902.g001.jpg

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