Naito Philip-Kunio, Ogawa Yu, Sawada Daisuke, Nishiyama Yoshiharu, Iwata Tadahisa, Wada Masahisa
Department of Biomaterials Science, Graduate School of Agricultural and Life Science, the University of Tokyo, Tokyo, 113-8657, Japan.
CNRS, CERMAV, Grenoble, F-38000, France.
Biopolymers. 2016 Jul;105(7):361-8. doi: 10.1002/bip.22818.
We determined the crystal structure of anhydrous chitosan at atomic resolution, using X-ray fiber diffraction data extending to 1.17 Å resolution. The unit cell [a = 8.129(7) Å, b = 8.347(6) Å, c = 10.311(7) Å, space group P21 21 21 ] of anhydrous chitosan contains two chains having one glucosamine residue in the asymmetric unit with the primary hydroxyl group in the gt conformation, that could be directly located in the Fourier omit map. The molecular arrangement of chitosan is very similar to the corner chains of cellulose II implying similar intermolecular hydrogen bonding between O6 and the amine nitrogen atom, and an intramolecular bifurcated hydrogen bond from O3 to O5 and O6. In addition to the classical hydrogen bonds, all the aliphatic hydrogens were involved in one or two weak hydrogen bonds, mostly helping to stabilize cohesion between antiparallel chains. © 2016 Wiley Periodicals, Inc. Biopolymers 105: 361-368, 2016.
我们利用分辨率达到1.17 Å的X射线纤维衍射数据,确定了无水壳聚糖的原子分辨率晶体结构。无水壳聚糖的晶胞参数为[a = 8.129(7) Å, b = 8.347(6) Å, c = 10.311(7) Å,空间群P21 21 21],在不对称单元中包含两条链,每条链有一个葡糖胺残基,其伯羟基处于gt构象,可直接定位在傅里叶省略图中。壳聚糖的分子排列与纤维素II的角链非常相似,这意味着O6与胺氮原子之间存在类似的分子间氢键,以及从O3到O5和O6的分子内分叉氢键。除了经典氢键外,所有脂肪族氢原子都参与了一到两个弱氢键,主要有助于稳定反平行链之间的内聚力。© 2016威利期刊公司。生物聚合物105: 361 - 368, 2016。