Liu Y, Gotte G, Libonati M, Eisenberg D
UCLA-DOE Laboratory of Structural Biology and Molecular Medicine, Department of Chemistry and Biochemistry and Biological Chemistry, University of California, Los Angeles, California 90095-1570, USA.
Nat Struct Biol. 2001 Mar;8(3):211-4. doi: 10.1038/84941.
Bovine pancreatic ribonuclease (RNase A) forms two types of dimers (a major and a minor component) upon concentration in mild acid. These two dimers exhibit different biophysical and biochemical properties. Earlier we reported that the minor dimer forms by swapping its N-terminal alpha-helix with that of an identical molecule. Here we find that the major dimer forms by swapping its C-terminal beta-strand, thus revealing the first example of three-dimensional (3D) domain swapping taking place in different parts of the same protein. This feature permits RNase A to form tightly bonded higher oligomers. The hinge loop of the major dimer, connecting the swapped beta-strand to the protein core, resembles a short segment of the polar zipper proposed by Perutz and suggests a model for aggregate formation by 3D domain swapping with a polar zipper.
牛胰核糖核酸酶(RNase A)在弱酸条件下浓缩时会形成两种类型的二聚体(一种主要成分和一种次要成分)。这两种二聚体表现出不同的生物物理和生化特性。我们之前报道过,次要二聚体是通过与相同分子交换其N端α螺旋而形成的。在这里,我们发现主要二聚体是通过交换其C端β链而形成的,从而揭示了在同一蛋白质不同部位发生的三维(3D)结构域交换的首个例子。这一特性使RNase A能够形成紧密结合的更高聚体。主要二聚体的铰链环将交换后的β链连接到蛋白质核心,类似于佩鲁茨提出的极性拉链的一小段,并提出了一个通过与极性拉链进行3D结构域交换形成聚集体的模型。