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Pairings and polarities of the 14 strands in sickle cell hemoglobin fibers.

机译:镰状细胞血红蛋白纤维中14条链的配对和极性。

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摘要

Sickle cell anemia results from the formation of hemoglobin S fibers in erythrocytes, and a greater understanding of the structure of these fibers should provide insights into the basis of the disease and aid in the development of effective antisickling agents. Improved reconstructions from electron micrographs of negatively stained single hemoglobin S fibers or embedded fiber bundles reveal that the 14 strands of the fiber are organized into pairs. The strands in each of the seven pairs are half-staggered, and from longitudinal views the polarity of each pair can be determined. The positions of the pairs and their polarities (three in one orientation; four in the opposite orientation) suggest a close relationship with the crystals of deoxyhemoglobin S composed of antiparallel pairs of half-staggered strands.
机译:镰状细胞性贫血是由于红细胞中血红蛋白S纤维的形成而引起的,对这些纤维结构的更深入的了解应提供对该疾病基础的认识,并有助于开发有效的抗溶血剂。负染色的单个血红蛋白S纤维或包埋的纤维束的电子显微照片的改进重建显示,纤维的14股线成对组织。七对中每对的绞合线是半交错的,从纵向视图中可以确定每对的极性。该对的位置及其极性(一个方向三个;相反的四个方向)表明与由反平行的半交错链对组成的脱氧血红蛋白S的晶体紧密相关。

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