Imberty A, Chanzy H, Pérez S, Buléon A, Tran V
Centre de Recherche sur les Macromolécules Végétales, C.N.R.S., Saint-Martin d'Hères, France.
J Mol Biol. 1988 May 20;201(2):365-78. doi: 10.1016/0022-2836(88)90144-1.
A new three-dimensional structure of the crystalline part of A-starch is described in which the unit cell contains 12 glucose residues located in two left-handed, parallel-stranded double helices packed in a parallel fashion; four water molecules are located between these helices. Chains are crystallized in a monoclinic lattice with a = 2.124 nm, b = 1.172 nm, c = 1.069 nm and gamma = 123.5 degrees, the c axis being parallel to the helix axis. Systematic absences are consistent with the space group B2. The structure was derived from joint use of electron diffraction of single crystals, X-ray powder patterns decomposed into individual peaks and previously reported X-ray fibre diffraction data after adequate re-indexing. The repeating unit consists of a maltotriose moiety where the glucose residues have the 4C1 pyranose conformation and are alpha(1----4) linked. The conformation of the glycosidic linkage is characterized by torsion angles (phi, psi) which take the values (91.8, -153.2), (85.7, -145.3) and 91.8, -151.3); all the primary hydroxyl groups exist in a gauche-gauche conformation. There are no intramolecular hydrogen bonds. Within the double helix, interstrand stabilization is achieved without any steric conflict and through the occurrence of O(2)...O(6) type hydrogen bonds. The present structure is consistent with both physicochemical and biochemical aspects of the crystalline component of the cereal starch granules.
本文描述了A-淀粉晶体部分的一种新的三维结构,其晶胞包含12个葡萄糖残基,位于两条左手平行链状双螺旋中,两条双螺旋平行排列;在这些螺旋之间有四个水分子。链在单斜晶格中结晶,晶格参数为a = 2.124 nm,b = 1.172 nm,c = 1.069 nm,γ = 123.5°,c轴与螺旋轴平行。系统消光与空间群B2一致。该结构是通过联合使用单晶电子衍射、分解为单个峰的X射线粉末图谱以及经过适当重新指标化的先前报道的X射线纤维衍射数据推导出来的。重复单元由一个麦芽三糖部分组成,其中葡萄糖残基具有4C1吡喃糖构象,并且通过α(1→4)连接。糖苷键的构象由扭转角(φ, ψ)表征,其值为(91.8, -153.2)、(85.7, -145.3)和(91.8, -151.3);所有伯羟基均以gauche-gauche构象存在。不存在分子内氢键。在双螺旋内,链间稳定通过O(2)...O(6)型氢键的出现实现,且无任何空间冲突。目前的结构与谷物淀粉颗粒晶体成分的物理化学和生化方面均相符。