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Structure of LacY with an α-substituted galactoside: Connecting the binding site to the protonation site

机译:具有α-取代的半乳糖苷的LacY的结构:将结合位点连接到质子化位点

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摘要

The X-ray crystal structure of a conformationally constrained mutant of the Escherichia coli lactose permease (the LacY double-Trp mutant Gly-46→Trp/Gly-262→Trp) with bound p-nitrophenyl-α-d-galactopyranoside (α-NPG), a high-affinity lactose analog, is described. With the exception of Glu-126 (helix IV), side chains Trp-151 (helix V), Glu-269 (helix VIII), Arg-144 (helix V), His-322 (helix X), and Asn-272 (helix VIII) interact directly with the galactopyranosyl ring of α-NPG to provide specificity, as indicated by biochemical studies and shown directly by X-ray crystallography. In contrast, Phe-20, Met-23, and Phe-27 (helix I) are within van der Waals distance of the benzyl moiety of the analog and thereby increase binding affinity nonspecifically. Thus, the specificity of LacY for sugar is determined solely by side-chain interactions with the galactopyranosyl ring, whereas affinity is increased by nonspecific hydrophobic interactions with the anomeric substituent.
机译:具有结合的对-硝基苯基-α-d-吡喃半乳糖苷(α-)的大肠杆菌乳糖通透酶的构象受限突变体(LacY double-Trp突变体Gly-46→Trp / Gly-262→Trp)的X射线晶体结构描述了NPG),一种高亲和力的乳糖类似物。除了Glu-126(螺旋IV),侧链Trp-151(螺旋V),Glu-269(螺旋VIII),Arg-144(螺旋V),His-322(螺旋X)和Asn-272生化研究表明,X射线晶体学直接表明,(螺旋VIII)与α-NPG的吡喃半乳糖基环直接相互作用以提供特异性。相反,Phe-20,Met-23和Phe-27(螺旋I)在类似物的苄基部分的范德华距离内,从而非特异性地增加结合亲和力。因此,LacY对糖的特异性仅由与半乳糖吡喃糖基环的侧链相互作用决定,而亲和力则由与异头取代基的非特异性疏水相互作用增加。

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