Sikorski Pawel, Mo Frode, Skjåk-Braek Gudmund, Stokke Bjørn T
Department of Physics and Norwegian Biopolymer Laboratory, Department of Biotechnology, Norwegian University of Science and Technology, Trondheim, Norway.
Biomacromolecules. 2007 Jul;8(7):2098-103. doi: 10.1021/bm0701503. Epub 2007 May 27.
The structures of guluronic-acid-rich alginate in the acid and calcium forms were investigated using fiber X-ray diffraction. Data recorded for alginate fibers in the acid form show a repeat along the chain axis of c = 0.87 nm, a value that is in agreement with the one measured by Atkins et al. (Biopolymers 1973, 12, 1865) and contradicts a repeat of 0.78 nm recently suggested by Li et al. (Biomacromolecules 2007, 8, 464). In the Ca2+ form, our observations indicate that the junction zone involves dimerization of polymer chains through Ca2+ coordination according to the egg-box model. For reasons that are not understood at present, coordination of the divalent cations reduces the ability for the lateral crystallographic packing of the dimers. A proposed model for the junction zone involves polymer chains packed on a hexagonal lattice with a lattice constant a = 0.66 nm. Random pairs of chains form dimers through coordination of Ca2+ cations. Further lateral interaction between dimers is mediated by disordered Na+ and Ca2+ cations, water molecules, and hydrogen bonding.
利用纤维X射线衍射研究了富含古洛糖醛酸的海藻酸盐在酸形式和钙形式下的结构。酸形式的海藻酸盐纤维记录的数据显示,沿链轴的重复距离c = 0.87 nm,该值与阿特金斯等人(《生物聚合物》,1973年,第12卷,第1865页)测量的值一致,与李等人(《生物大分子》,2007年,第8卷,第464页)最近提出的0.78 nm的重复距离相矛盾。在Ca2+形式下,我们的观察表明,根据蛋盒模型,连接区涉及聚合物链通过Ca2+配位形成二聚体。由于目前尚不清楚的原因,二价阳离子的配位降低了二聚体横向晶体堆积的能力。连接区的一个 proposed 模型涉及聚合物链堆积在六方晶格上,晶格常数a = 0.66 nm。随机的链对通过Ca2+阳离子的配位形成二聚体。二聚体之间进一步的横向相互作用由无序的Na+和Ca2+阳离子、水分子和氢键介导。 (注:原文中“proposed”可能拼写有误,推测为“proposed”,翻译为“提出的” )