Sanders Anna, Jeremy Craven C, Higgins Lee D, Giannini Silva, Conroy Matthew J, Hounslow Andrea M, Waltho Jonathan P, Staniforth Rosemary A
Department of Molecular Biology and Biotechnology, University of Sheffield, Firth Court, Western Bank, Sheffield S10 2TN, UK.
J Mol Biol. 2004 Feb 6;336(1):165-78. doi: 10.1016/j.jmb.2003.12.011.
The cystatins were the first amyloidogenic proteins to be shown to oligomerize through a 3D domain swapping mechanism. Here we show that, under conditions leading to the formation of amyloid deposits, the domain-swapped dimer of chicken cystatin further oligomerizes to a tetramer, prior to fibrillization. The tetramer has a very similar circular dichroism and fluorescence signature to the folded monomer and dimer structures, but exhibits some loss of dispersion in the 1H-NMR spectrum. 8-Anilino-1-naphthalene sulfonate fluorescence enhancement indicates an increase in the degree of disorder. While the dimerization reaction is bimolecular and most likely limited by the availability of a predominantly unfolded form of the monomer, the tetramerization reaction is first-order. The tetramer is formed slowly (t(1/2)=six days at 85 degrees C), dimeric cystatin is the precursor to tetramer formation, and thus the rate is limited by structural rearrangement within the dimer. Some higher-order oligomerization events parallel tetramer formation while others follow from the tetrameric form. Thus, the tetramer is a transient intermediate within the pathway of large-scale oligomerization.
胱抑素是首个被证明通过三维结构域交换机制发生低聚化的淀粉样蛋白。在此我们表明,在导致淀粉样沉积物形成的条件下,鸡胱抑素的结构域交换二聚体在纤维化之前会进一步低聚化为四聚体。该四聚体具有与折叠的单体和二聚体结构非常相似的圆二色性和荧光特征,但在1H-NMR谱中显示出一些色散损失。8-苯胺基-1-萘磺酸盐荧光增强表明无序程度增加。虽然二聚化反应是双分子反应,很可能受主要为未折叠形式的单体可用性限制,但四聚化反应是一级反应。四聚体形成缓慢(85℃下t(1/2)=6天),二聚体胱抑素是四聚体形成的前体,因此速率受二聚体内结构重排限制。一些高阶低聚化事件与四聚体形成平行,而其他事件则由四聚体形式引发。因此,四聚体是大规模低聚化途径中的一个瞬时中间体。