首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >APPLICATION OF TWO-DIMENSIONAL NMR SPECTROSCOPY AND MOLECULAR DYNAMICS SIMULATIONS TO THE CONFORMATIONAL ANALYSIS OF OLIGOSACCHARIDES CORRESPONDING TO THE CELL-WALL POLYSACCHARIDE OF STREPTOCOCCUS GROUP A
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APPLICATION OF TWO-DIMENSIONAL NMR SPECTROSCOPY AND MOLECULAR DYNAMICS SIMULATIONS TO THE CONFORMATIONAL ANALYSIS OF OLIGOSACCHARIDES CORRESPONDING TO THE CELL-WALL POLYSACCHARIDE OF STREPTOCOCCUS GROUP A

机译:二维核磁共振波谱和分子动力学模拟在链球菌A族细胞壁多糖对应的寡糖构象分析中的应用

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This paper describes the use of a protocol for conformational analysis of oligosaccharide structures related to the cell-wall polysaccharide of Streptococcus group A. The polysaccharide features a branched structure with an L-rhamnopyranose (Rhap) backbone consisting of alternating alpha-(1 --> 2) and alpha-(1 --> 3) links and D-N-acetylglucosamine (GlcpNAc) residues beta-(1 --> 3)-connected to alternating rhamnose rings: [GRAPHICS] Oligomers consisting of three to six residues have been synthesized and nuclear magnetic resonance (NMR) assignments have been made. The protocol for conformational analysis of the solution structure of these oligosaccharides involves experimental and theoretical methods. Two-dimensional NMR spectroscopy methods (TOCSY, ROESY and NOESY) are utilized to obtain chemical shift data and proton-proton distances. These distances are used as constraints in 100 ps molecular dynamics simulations in water using QUANTA and CHARMm. In addition, the dynamics simulations are performed without constraints. ROE build-up curves are computed from the averaged structures of the molecular dynamics simulations using the CROSREL program and compared with the experimental curves. Thus, a refinement of the initial structure may be obtained. The alpha-(1 --> 2) and the beta-(1 --> 3) links are unambiguously defined by the observed ROE cross peaks between the A-B', A'-B and C-B, C'-B' residues, respectively. The branch-point of the trisaccharide CBA' is conformationally well-defined. Assignment of the conformation of the B-A linkage (alpha-(1 --> 3)) was problematic due to TOCSY relay, but could be solved by NOESY and T-ROESY techniques. A conformational model for the polysaccharide is proposed. [References: 35]
机译:本文介绍了使用协议对与链球菌A组的细胞壁多糖相关的寡糖结构进行构象分析的方法。该多糖具有分支结构,具有由交替的α-(1- > 2)和alpha-(1-> 3)链和DN-乙酰葡糖胺(GlcpNAc)残基β-(1-> 3)-连接到交替的鼠李糖环上:[图形]由三到六个残基组成的低聚物已完成合成和核磁共振(NMR)任务。这些寡糖溶液结构的构象分析方法涉及实验和理论方法。利用二维NMR光谱法(TOCSY,ROESY和NOESY)获得化学位移数据和质子-质子距离。这些距离被用作使用QUANTA和CHARMm在水中进行100 ps分子动力学模拟时的约束条件。此外,动力学仿真不受任何限制。使用CROSREL程序根据分子动力学模拟的平均结构计算ROE累积曲线,并将其与实验曲线进行比较。因此,可以获得初始结构的改进。 alpha-(1-> 2)和beta-(1-> 3)链接由A-B',A'-B和CB,C'-B'之间观察到的ROE交叉峰明确定义残基。三糖CBA'的分支点在构象上是明确定义的。由于TOCSY中继,B-A连锁构象的分配(alpha-(1-> 3))存在问题,但可以通过NOESY和T-ROESY技术解决。提出了多糖的构象模型。 [参考:35]

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