首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ligand-bound Structures and Site-directed Mutagenesis Identify the Acceptor and Secondary Binding Sites of Streptomyces coelicolor Maltosyltransferase GlgE
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Ligand-bound Structures and Site-directed Mutagenesis Identify the Acceptor and Secondary Binding Sites of Streptomyces coelicolor Maltosyltransferase GlgE

机译:配体结合的结构和定点诱变确定链霉菌coelicolor麦芽糖基转移酶GlgE的受体和二级结合位点。

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摘要

GlgE is a maltosyltransferase involved in α-glucan biosynthesis in bacteria that has been genetically validated as a target for tuberculosis therapies. Crystals of the Mycobacterium tuberculosis enzyme diffract at low resolution so most structural studies have been with the very similar Streptomyces coelicolor GlgE isoform 1. Although the donor binding site for α-maltose 1-phosphate had been previously structurally defined, the acceptor site had not. Using mutagenesis, kinetics, and protein crystallography of the S. coelicolor enzyme, we have now identified the +1 to +6 subsites of the acceptor/product, which overlap with the known cyclodextrin binding site. The sugar residues in the acceptor subsites +1 to +5 are oriented such that they disfavor the binding of malto-oligosaccharides that bear branches at their 6-positions, consistent with the known acceptor chain specificity of GlgE. A secondary binding site remote from the catalytic center was identified that is distinct from one reported for the M. tuberculosis enzyme. This new site is capable of binding a branched α-glucan and is most likely involved in guiding acceptors toward the donor site because its disruption kinetically compromises the ability of GlgE to extend polymeric substrates. However, disruption of this site, which is conserved in the Streptomyces venezuelae GlgE enzyme, did not affect the growth of S. venezuelae or the structure of the polymeric product. The acceptor subsites +1 to +4 in the S. coelicolor enzyme are well conserved in the M. tuberculosis enzyme so their identification could help inform the design of inhibitors with therapeutic potential.
机译:GlgE是一种参与细菌中α-葡聚糖生物合成的麦芽糖基转移酶,已被基因证实是结核病治疗的靶标。结核分枝杆菌酶的晶体在低分辨率下发生衍射,因此大多数结构研究都使用了非常相似的coelicolor Colgcolor GlgE同工型1。尽管先前已经确定了α-麦芽糖1-磷酸的供体结合位点,但受体位点尚未确定。使用诱变链霉菌酶的诱变,动力学和蛋白质晶体学,我们现在已经确定了受体/产物的+1至+6亚位点,与已知的环糊精结合位点重叠。受体亚基+1至+5中的糖残基的取向使得它们不利于在其6-位带有支链的麦芽低聚糖的结合,这与已知的GlgE的受体链特异性一致。鉴定出远离催化中心的第二结合位点,该结合位点与报道的结核分枝杆菌酶不同。这个新位点能够结合分支的α-葡聚糖,并且最有可能参与将受体导向供体位点,因为其破坏动力学上损害了GlgE延伸聚合物底物的能力。然而,在委内链霉菌GlgE酶中保守的该位点的破坏不影响委内瑞拉链霉菌的生长或聚合物产物的结构。结核分枝杆菌酶中+1到+4的受体亚位点在结核分枝杆菌酶中非常保守,因此它们的鉴定可以帮助设计具有治疗潜力的抑制剂。

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