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血红素蛋白的溶液研究:蚯蚓血红蛋白的亚基结构、解离及脲诱导的解折叠

Solution studies on heme proteins: subunit structure, dissociation, and unfolding of Lumbricus terrestris hemoglobin by the ureas.

作者信息

Herskovits T T, Harrington J P

出版信息

Biochemistry. 1975 Nov 4;14(22):4964-71. doi: 10.1021/bi00693a027.

Abstract

The subunit structure, dissociation, and unfolding of the hemoglobin of the earthworm, Lumbricus terrestris, were investigated by light scattering molecular weight methods and changes in optical rotatory dispersion (at 233 nm) and absorption in the Soret region. Urea and the alkylureas, methyl-, ethyl-, propyl-, and butylurea, were employed as the reagents to cause both dissociation and unfolding of the protein. Analysis of the light scattering data suggests that the dissociation patterns as a function of hemoglobin concentration in the various dissociating solvents can be described in quantitative terms, either as an equilibrium mixture consisting of parent duodecamers and hexamers of 3 x 10(6) and 1.5 x 10(6) molecular weight (in 1-3 M urea, 1-2 M methyl- and ethylurea, and 1 M propylurea), as a mixture of hexamers and monomers, the latter with a molecular weight of 250000 (i.e., in 4 M urea), or as a mixture of all three species of duodecamers, hexamers, and monomers, seen in 2 M propylurea. Parallel studies by optical rotation and absorption measurements indicate that there is little or no unfolding of the subunits at urea and alkylurea concentrations where complete dissociation to hexamers and extensive dissociation to monomers can be achieved. Further splitting of the monomers (A subunits) to smaller fragments of one-third to one-quarter of the molecular weight of the monomers (B subunits) is seen in the presence of 7 and 8 M urea (pH 7) and in alkaline urea to propylurea solutions. Analysis of the dissociation data of duodecamers to monomers, based on equations used in studies of the urea and amide dissociation of human hemoglobin A from our laboratory, suggests few urea and alkylurea binding sites at the areas of hexamer contacts in the associated duodecameric form of L. terrestris hemoglobin. This suggests that hydrophobic interactions are not the dominant forces that govern the state of association of L. terrestris hemoglobin relative to polar and ionic interactions. The unfolding effects of the ureas, at concentrations above the dissociation transitions, are closely similar to their effects on other globular proteins, suggesting that hydrophobic interactions play an important role in the maintenance of the folded conformation of the subunits. Use of the Peller-Flory equation, with binding constants based on free energy transfer data of hydrophobic amino acid side chains and denaturation data used in previous denaturation studies, gave a relatively good acount of the observed denaturation midpoints obtained with the various ureas supporting these conclusions.

摘要

通过光散射分子量法以及旋光色散(在233nm处)和索雷特区域吸收的变化,研究了蚯蚓血红蛋白的亚基结构、解离和去折叠。尿素和烷基脲,即甲基脲、乙基脲、丙基脲和丁基脲,被用作使蛋白质解离和去折叠的试剂。对光散射数据的分析表明,在各种解离溶剂中,血红蛋白浓度与解离模式之间的关系可以用定量术语来描述,要么是由分子量为3×10⁶和1.5×10⁶的亲本十二聚体和六聚体组成的平衡混合物(在1-3M尿素、1-2M甲基脲和乙基脲以及1M丙基脲中),要么是六聚体和单体的混合物,后者分子量为250000(即在4M尿素中);或者是在2M丙基脲中观察到的所有三种物种,即十二聚体、六聚体和单体的混合物。通过旋光和吸收测量进行的平行研究表明,在尿素和烷基脲浓度下,亚基几乎没有或根本没有去折叠,而在这些浓度下可以实现完全解离为六聚体以及广泛解离为单体。在7M和8M尿素(pH7)以及碱性尿素至丙基脲溶液中,可以看到单体(A亚基)进一步分裂为分子量为单体三分之一至四分之一的较小片段(B亚基)。基于我们实验室研究人血红蛋白A的尿素和酰胺解离所使用的方程,对蚯蚓血红蛋白十二聚体到单体的解离数据进行分析,结果表明在蚯蚓血红蛋白相关十二聚体形式的六聚体接触区域,几乎没有尿素和烷基脲结合位点。这表明相对于极性和离子相互作用,疏水相互作用并非控制蚯蚓血红蛋白缔合状态的主导力量。在高于解离转变浓度时,尿素的去折叠效应与它们对其他球状蛋白质的效应非常相似,这表明疏水相互作用在维持亚基的折叠构象中起着重要作用。使用佩勒-弗洛里方程,结合常数基于疏水氨基酸侧链的自由能转移数据以及先前变性研究中使用的变性数据,相对较好地解释了用各种尿素获得并支持这些结论的观察到的变性中点。

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