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脱氧镰状细胞血红蛋白纤维与晶体的X射线衍射研究。

X-ray diffraction studies of fibers and crystals of deoxygenated sickle cell hemoglobin.

作者信息

Magdoff-Fairchild B, Chiu C C

出版信息

Proc Natl Acad Sci U S A. 1979 Jan;76(1):223-6. doi: 10.1073/pnas.76.1.223.

Abstract

Paracrystalline fibers of deoxygenated sickle hemoglobin in erythrocytes or concentrated solutions exhibit a phase transformation to a fully crystalline state. X-ray diffraction patterns of the fiber and crystallites are similar except in two respects: the equatorial spacings of the fibers suggest that they pack into a square lattice with a = 220 A, whereas those of the crystals can be indexed on the basis of a net of 187 A by 54 A, and the second-order near-meridional reflections are strong on the fiber pattern but weak on that of the crystallites. The crystallites are isomorphous with single crystals grown in polyethylene glycol solution at pH 4.5 whole structure has been determined at near-atomic resolution (Wishner, B.C., Ward, K.B. Lattmen, E.E. & Lowve, W.E. (1975) J. Mol. Biol. 98, 179-194). Double filaments of molecules with an axial repeat of 64 A comprise the basic unit of both the crystal and fiber structures. Each filament of the pair is translated with respect to its neighbor by half a molecular diameter along the fiber axis. The two filaments are held together by contacts made by Val 6beta in the molecules of one strand with hydrophobic side chains of the molecule in the neighboring strand. This interaction is probably the cause of the aggregation of filaments into fibers that leads to the sickling of erythrocytes.

摘要

红细胞或浓缩溶液中脱氧镰状血红蛋白的准晶纤维会发生相变,转变为完全结晶状态。纤维和微晶的X射线衍射图谱在两个方面有所不同:纤维的赤道间距表明它们堆积成一个边长a = 220 Å的正方形晶格,而晶体的赤道间距可根据一个187 Å×54 Å的网来标定;并且,纤维图谱上的二级近子午线反射很强,而微晶图谱上的则较弱。这些微晶与在pH 4.5的聚乙二醇溶液中生长的单晶同构,其完整结构已在近原子分辨率下确定(Wishner, B.C., Ward, K.B., Lattmen, E.E. & Lowve, W.E. (1975) J. Mol. Biol. 98, 179 - 194)。轴向重复距离为64 Å的分子双丝构成了晶体和纤维结构的基本单元。这一对中的每一根丝沿着纤维轴相对于其相邻丝平移半个分子直径。这两根丝通过一条链中分子的Val 6β与相邻链中分子的疏水侧链之间的接触而结合在一起。这种相互作用可能是导致丝聚集形成纤维并进而导致红细胞镰变的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53cb/382910/80abf00f95d5/pnas00001-0232-a.jpg

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