Herskovits T T, Carberry S E, Villanueva G B
Biochim Biophys Acta. 1985 Apr 29;828(3):278-89. doi: 10.1016/0167-4838(85)90309-7.
The hemocyanin of the channeled whelk, Busycon canaliculatum, is a multisubunit protein with a molecular weight close to 9 X 10(6). The increase in pH above neutrality and the addition of 0-5 M urea and 0-2 M GdnHCl is found to dissociate the whole molecules to half-molecules and smaller dimeric and monomeric fragments of one-tenth and one-twentieth mass of the parent hemocyanin. The molecular weight transitions investigated at constant protein concentration of 5 X 10(-2) g X l-1 show no clearly discernible plateau regions, where essentially only half-molecules and one-tenth molecules are present. The ultracentrifugation patterns in much of the dissociation region produced by urea at pH 6.9 suggests the presence of three distinct components consisting of whole molecules, half-molecules and largely one-tenth molecular weight fragments. At pH 8.2 and higher, where whole molecules are largely absent, the effects of urea on the dissociation of half-molecules to tenths and tenth-molecules to twentieth molecule was investigated by means of light scattering. Analysis of the urea data based on a decamer to dimer and dimer to monomer scheme of dissociation used in our earlier studies gave apparent estimates of about 90 amino acid groups at the contact areas of the dimers in the half-molecules and 110 groups at the monomer contacts forming the dimers. The latter relatively large estimate of groups suggests that the dissociation of the tenth molecules or dimers must occur by longitudinal splitting of the contact areas along both the folded domains and the connecting chain segments of the twentieth molecules. Circular dichroism, absorbance and viscosity data suggest that the secondary structure and conformation of the folded domains of the hemocyanin subunits are largely retained at both high pH and in 3-8 M urea solutions. The molecular weights at pH 9.0-10.6 and in 3-8 M urea are found to be (4.2-4.7) X 10(5), close to one-twentieth of the mass of the parent hemocyanin. Denaturation and unfolding of the subunit domains is observed between 3 and 6 M GdnHCl solutions, as evidenced by the abolition of the characteristic copper absorbance in the neighborhood of 346 nm and the relatively pronounced changes in circular dichroism at 222 nm and intrinsic viscosity. The further decrease in molecular weights to about (2.6-3.2) X 10(5), below one-twentieth of the mass of hemocyanin suggests the presence of hidden breaks or scissions in the polypeptide chains suffered during isolation, which become exposed as a result of complete unfolding in GdnHCl solutions.(ABSTRACT TRUNCATED AT 400 WORDS)
沟纹蛾螺(Busycon canaliculatum)的血蓝蛋白是一种多亚基蛋白,分子量接近9×10⁶。发现pH值升高至中性以上,以及添加0 - 5 M尿素和0 - 2 M盐酸胍,会使整个分子解离为半分子以及更小的二聚体和单体片段,其质量分别为母体血蓝蛋白的十分之一和二十分之一。在蛋白质浓度恒定为5×10⁻² g·L⁻¹的情况下研究的分子量转变没有明显可辨别的平稳区域,在该区域基本上只存在半分子和十分之一分子。在pH 6.9时尿素产生的大部分解离区域中的超速离心图谱表明存在三种不同的组分,由整个分子、半分子和大部分为十分之一分子量的片段组成。在pH 8.2及更高时,此时基本上不存在整个分子,通过光散射研究了尿素对半分子解离为十分之一分子以及十分之一分子解离为二十分之一分子的影响。基于我们早期研究中使用的从十聚体到二聚体以及二聚体到单体的解离方案对尿素数据进行分析,得出在半分子中二聚体接触区域约有90个氨基酸基团,在形成二聚体的单体接触区域有110个基团的表观估计值。后一个相对较大的基团估计值表明,十分之一分子或二聚体的解离必定是通过沿着二十分子的折叠结构域和连接链段的接触区域纵向分裂而发生的。圆二色性、吸光度和粘度数据表明,血蓝蛋白亚基折叠结构域的二级结构和构象在高pH值和3 - 8 M尿素溶液中基本保持。发现在pH 9.0 - 10.6以及3 - 8 M尿素中的分子量为(4.2 - 4.7)×10⁵,接近母体血蓝蛋白质量的二十分之一。在3 - 6 M盐酸胍溶液中观察到亚基结构域的变性和展开,这由346 nm附近特征性铜吸收的消失以及222 nm处圆二色性和特性粘度的相对明显变化所证明。分子量进一步降至约(2.6 - 3.2)×10⁵,低于血蓝蛋白质量的二十分之一,这表明在分离过程中多肽链存在隐藏的断裂或切割,在盐酸胍溶液中完全展开时这些断裂或切割会暴露出来。(摘要截于400字)