Trinkl S, Glockshuber R, Jaenicke R
Institut für Biophysik und Physikalische Biochemie, Universität Regensburg, Germany.
Protein Sci. 1994 Sep;3(9):1392-400. doi: 10.1002/pro.5560030905.
beta B2- and gamma B-crystallins of vertebrate eye lens are 2-domain proteins in which each domain consists of 2 Greek key motifs connected by a linker peptide. Although the folding topologies of beta B2- and gamma B-domains are very similar, gamma B-crystallin is always monomeric, whereas beta B2-crystallin associates to homodimers. It has been suggested that the linker or the protruding N- and C-terminal arms of beta B2-crystallin (not present in gamma B) are a necessary requirement for this association. In order to investigate the role of these segments for dimerization, we constructed two beta B2 mutants. In the first mutant, the linker peptide was replaced with the one from gamma B (beta B2 gamma L). In the second mutant, the N- and C-terminal arms of 15- and 12-residues length were deleted (beta B2 delta NC). The beta B2 gamma L mutant is monomeric, whereas the beta B2 delta NC mutant forms dimers and tetramers that cannot be interconverted without denaturation. The spectral properties of the beta B2 mutants, as well as their stabilities against denaturants, resemble those of wild-type beta B2-crystallin, thus indicating that the overall peptide fold of the subunits is not changed significantly. We conclude that the peptide linker in beta B2-crystallin is necessary for dimerization, whereas the N- and C-terminal arms appear to be involved in preventing the formation of higher homo-oligomers.
脊椎动物眼晶状体的βB2-和γB-晶状体蛋白是由两个结构域组成的蛋白质,其中每个结构域由通过连接肽相连的两个希腊钥匙基序构成。尽管βB2-和γB-结构域的折叠拓扑结构非常相似,但γB-晶状体蛋白始终为单体,而βB2-晶状体蛋白则会形成同型二聚体。有人提出,βB2-晶状体蛋白的连接肽或突出的N端和C端臂(γB-晶状体蛋白中不存在)是这种缔合的必要条件。为了研究这些片段在二聚化中的作用,我们构建了两个βB2突变体。在第一个突变体中,连接肽被γB的连接肽取代(βB2γL)。在第二个突变体中,长度为15个和12个残基的N端和C端臂被删除(βB2δNC)。βB2γL突变体是单体,而βB2δNC突变体形成二聚体和四聚体,未经变性无法相互转化。βB2突变体的光谱特性及其对变性剂的稳定性与野生型βB2-晶状体蛋白相似,因此表明亚基的整体肽折叠没有明显变化。我们得出结论,βB2-晶状体蛋白中的肽连接肽是二聚化所必需的,而N端和C端臂似乎参与了阻止形成更高的同型寡聚体。