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脱氧镰状细胞血红蛋白在高磷酸盐缓冲液中的聚合作用。

Polymerization of deoxy-sickle cell hemoglobin in high-phosphate buffer.

作者信息

Wang Z, Kishchenko G, Chen Y, Josephs R

机构信息

Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Struct Biol. 2000 Sep;131(3):197-209. doi: 10.1006/jsbi.2000.4295.

Abstract

Deoxy-sicklecell hemoglobin (HbS) polymerizes in 0.05 M phosphate buffer to form long helical fibers. The reaction typically occurs when the concentration of HbS is about 165 mg/ml. Polymerization produces a variety of polymorphic forms. The structure of the fibers can be probed by using site-directed mutants to examine the effect of altering the residues involved in intermolecular interactions. Polymerization can also be induced in the presence of 1.5 M phosphate buffer. Under these conditions polymerization occurs at much lower concentrations (ca. 5 mg/ml), which is advantageous when site-directed mutants are being used because only small quantities of the mutants are available. We have characterized the structure of HbS polymers formed in 1.5 M phosphate to determine how their structures are related to the polymers formed under more physiological conditions. Under both sets of conditions fibers are the first species to form. At pHs between 6.7 and 7.3 fibers initially form bundles and then crystals. At lower pHs fibers form macrofibers and then crystals. Fourier transforms of micrographs of the polymers formed in 1.5 M phosphate display the 32- and 64-A(-1) periodicity characteristic of fibers formed in 0.05 M phosphate buffer. The 64-A(-1) layer line is less prominent in Fourier transforms of negatively stained fibers formed in 1.5 M phosphate possibly because salt interferes with staining of the fibers. However, micrographs and Fourier transforms of frozen hydrated fibers formed in high and low phosphate display the same periodicities. Under both sets of reaction conditions HbS polymers form crystals with the same unit cell parameters as Wishner-Love crystals (a = 64 A, b = 185 A, c = 53 A). Some of the polymerization intermediates were examined in the frozen-hydrated state in order to determine whether their structures were significantly perturbed by negative staining. We have also carried out reconstructions of the frozen-hydrated fibers in high and low phosphate to compare their molecular coordinates. The helical projection of the reconstructions in low phosphate shows the expected 14-strand structure. In high phosphate the 14-strand fibers are also formed and their molecular coordinates are the same (within experimental error) as those of fibers formed in 0.05 M phosphate. In addition, the reconstructions of high-phosphate fibers reveal a new minor variant of fiber containing 10 strands. The polymerization products in 1.5 M phosphate buffer were generally indistinguishable from those formed in 0.05 M phosphate buffer. Micrographs of frozen hydrated specimens have facilitated the interpretation of previously published micrographs using negative staining.

摘要

脱氧镰状细胞血红蛋白(HbS)在0.05M磷酸盐缓冲液中聚合形成长螺旋纤维。该反应通常在HbS浓度约为165mg/ml时发生。聚合产生多种多晶型形式。可以通过使用定点突变体来研究改变分子间相互作用中涉及的残基的影响,从而探测纤维的结构。在1.5M磷酸盐缓冲液存在下也可诱导聚合。在这些条件下,聚合在低得多的浓度(约5mg/ml)下发生,当使用定点突变体时这是有利的,因为只能获得少量的突变体。我们已经对在1.5M磷酸盐中形成的HbS聚合物的结构进行了表征,以确定它们的结构与在更生理条件下形成的聚合物有何关系。在这两组条件下,纤维都是首先形成的物种。在pH值介于6.7和7.3之间时,纤维最初形成束状,然后形成晶体。在较低pH值下,纤维形成大纤维,然后形成晶体。在1.5M磷酸盐中形成的聚合物的显微照片的傅里叶变换显示出0.05M磷酸盐缓冲液中形成的纤维特有的32-和64-A(-1)周期性。在1.5M磷酸盐中形成的负染色纤维的傅里叶变换中,64-A(-1)层线不太明显,可能是因为盐干扰了纤维的染色。然而,在高、低磷酸盐中形成的冷冻水合纤维的显微照片和傅里叶变换显示出相同的周期性。在这两组反应条件下,HbS聚合物形成的晶体具有与Wishner-Love晶体相同的晶胞参数(a = 64A,b = 185A,c = 53A)。对一些聚合中间体在冷冻水合状态下进行了检查,以确定它们的结构是否受到负染色的显著干扰。我们还对高、低磷酸盐中的冷冻水合纤维进行了重建,以比较它们的分子坐标。低磷酸盐中重建的螺旋投影显示出预期的14链结构。在高磷酸盐中也形成了14链纤维,并且它们的分子坐标与在0.05M磷酸盐中形成的纤维的分子坐标相同(在实验误差范围内)。此外,高磷酸盐纤维的重建揭示了一种新的含10链的纤维小变体。1.5M磷酸盐缓冲液中的聚合产物通常与在0.05M磷酸盐缓冲液中形成的产物无法区分。冷冻水合标本的显微照片有助于解释以前发表的使用负染色的显微照片。

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