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首页> 外文期刊>Journal of Molecular Biology >Sugar binding in lactose permease: anomeric state of a disaccharide influences binding structure.
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Sugar binding in lactose permease: anomeric state of a disaccharide influences binding structure.

机译:乳糖渗透酶中的糖结合:二糖的异头状态会影响结合结构。

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Lactose permease in Escherichia coli (LacY) transports both anomeric states of disaccharides but has greater affinity for alpha-sugars. Molecular dynamics (MD) simulations are used to probe the protein-sugar interactions, binding structures, and global protein motions in response to sugar binding by investigating LacY (the experimental mutant and wild-type) embedded in a fully hydrated lipid bilayer. A total of 12 MD simulations of 20-25 ns each with beta(alpha)-d-galactopyranosyl-(1,1)-beta-d-galactopyranoside (betabeta-(Galp)(2)) and alphabeta-(Galp)(2) result in binding conformational families that depend on the anomeric state of the sugar. Both sugars strongly interact with Glu126 and alphabeta-(Galp)(2) has a greater affinity to this residue. Binding conformations are also seen that involve protein residues not observed in the crystal structure, as well as those involved in the proton translocation (Phe118, Asn119, Asn240, His322, Glu325, and Tyr350). Common to nearly all protein-sugar structures,water acts as a hydrogen bond bridge between the disaccharide and protein. The average binding energy is more attractive for alphabeta-(Galp)(2) than betabeta-(Galp)(2), i.e. -10.7(+/-0.7) and -3.1(+/-1.0) kcal/mol, respectively. Of the 12 helices in LacY, helix-IV is the least stable with betabeta-(Galp)(2) binding resulting in larger distortion than alphabeta-(Galp)(2).
机译:大肠杆菌中的乳糖通透酶(LacY)传输双糖的两个端基异构状态,但对α-糖具有更大的亲和力。分子动力学(MD)模拟用于通过调查嵌入完全水合脂质双层中的LacY(实验性突变体和野生型)来探测蛋白质-糖的相互作用,结合结构和响应于糖结合的整体蛋白质运动。使用β-α-d-吡喃半乳糖基-(1,1)-β-d-吡喃半乳糖苷(betabeta-(Galp)(2))和Alphabeta-(Galp)( 2)产生依赖于糖的异头状态的结合构象家族。两种糖都与Glu126强烈相互作用,而Alphabeta-(Galp)(2)对这个残基具有更大的亲和力。还发现结合构象涉及晶体结构中未观察到的蛋白质残基以及质子易位的蛋白质残基(Phe118,Asn119,Asn240,His322,Glu325和Tyr350)。水几乎是所有蛋白质-糖结构所共有的,水充当了二糖和蛋白质之间的氢键桥。对于alpha-(Galp)(2),平均结合能比betabeta-(Galp)(2)更具吸引力,即分别为-10.7(+/- 0.7)和-3.1(+/- 1.0)kcal / mol。在LacY的12个螺旋中,螺旋IV最不稳定,具有betabeta-(Galp)(2)结合,导致比alpha-a(Galp)(2)更大的变形。

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