首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >V-Amylose at atomic resolution: X-ray structure of a cycloamylose with 26 glucose residues (cyclomaltohexaicosaose)
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V-Amylose at atomic resolution: X-ray structure of a cycloamylose with 26 glucose residues (cyclomaltohexaicosaose)

机译:V-直链淀粉的原子分辨率:带有26个葡萄糖残基的环淀粉的X射线结构(环麦芽六糖)

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摘要

The amylose fraction of starch occurs in double-helical A- and B-amyloses and the single-helical V-amylose. The latter contains a channel-like central cavity that is able to include molecules, “iodine’s blue” being the best-known representative. Molecular models of these amylose forms have been deduced by solid state 13C cross-polarization/magic angle spinning NMR and by x-ray fiber and electron diffraction combined with computer-aided modeling. They remain uncertain, however, as no structure at atomic resolution is available. We report here the crystal structure of a hydrated cycloamylose containing 26 glucose residues (cyclomaltohexaicosaose, CA26), which has been determined by real/reciprocal space recycling starting from randomly positioned atoms or from an oriented diglucose fragment. This structure provides conclusive evidence for the structure of V-amylose, as the macrocycle of CA26 is folded into two short left-handed V-amylose helices in antiparallel arrangement and related by twofold rotational pseudosymmetry. In the V-helices, all glucose residues are in syn orientation, forming systematic interglucose O(3)n⋅⋅⋅O(2)n+l and O(6)n⋅⋅⋅O(2)n+6/O(3)n+6 hydrogen bonds; the central cavities of the V-helices are filled by disordered water molecules. The folding of the CA26 macrocycle is characterized by typical “band-flips” in which diametrically opposed glucose residues are in anti rather than in the common syn orientation, this conformation being stabilized by interglucose three-center hydrogen bonds with O(3)n as donor and O(5)n+l, O(6)n+l as acceptors. The structure of CA26 permitted construction of an idealized V-amylose helix, and the band-flip motif explains why V-amylose crystallizes readily and may be packed tightly in seeds.
机译:淀粉的直链淀粉部分存在于双螺旋A-和B-直链淀粉和单螺旋V-直链淀粉中。后者包含一个通道状的中央空腔,该空腔能够包含分子,“碘蓝”是最著名的代表。通过固态 13 交叉极化/魔角旋转核磁共振以及X射线纤维和电子衍射结合计算机辅助建模,推导了这些直链淀粉形式的分子模型。但是,由于原子分辨率上没有可用的结构,因此它们仍然不确定。我们在这里报告了包含26个葡萄糖残基(环麦芽六糖,CA26)的水合环淀粉的晶体结构,该结构已通过从随机定位的原子或定向的二葡萄糖片段开始的实际/相互空间循环来确定。这种结构为V-直链淀粉的结构提供了确凿的证据,因为CA26的大环被折叠为两个短的左手V-直链淀粉螺旋,呈反平行排列,并通过双重旋转假对称相关。在V型螺旋中,所有葡萄糖残基都处于同向方向,形成系统化的葡萄糖间O(3)n⋅⋅⋅O(2)n + 1和O(6)n⋅⋅⋅O(2)n + 6 / O (3)n + 6个氢键; V型螺旋的中心腔被无序的水分子填充。 CA26大环折叠的特征是典型的“带翻转”,其中完全相反的葡萄糖残基处于反位而不是共同的syn方向,这种构象通过以O(3)n为键的葡萄糖间三中心氢键得以稳定。供体,O(5)n + 1,O(6)n + 1为受体。 CA26的结构允许构建理想的V-直链淀粉螺旋,并且带翻转基序可以解释为什么V-直链淀粉容易结晶并且可以紧密堆积在种子中的原因。

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