de Nobel H, Lipke P N, Kurjan J
Department of Microbiology and Molecular Genetics, University of Vermont, Burlington 05405-0068, USA.
Mol Biol Cell. 1996 Jan;7(1):143-53. doi: 10.1091/mbc.7.1.143.
The Saccharomyces cerevisiae adhesion protein alpha-agglutinin (Ag alpha 1p) is expressed by alpha cells and binds to the complementary a-agglutinin expressed by a cells. The N-terminal half of alpha-agglutinin is sufficient for ligand binding and has been proposed to contain an immunoglobulin (Ig) fold domain. Based on a structural homology model for this domain and a previously identified critical residue (His292), we made Ag alpha 1p mutations in three discontinuous patches of the domain that are predicted to be in close proximity to His292 in the model. Residues in each of the three patches were identified that are important for activity and therefore define a putative ligand binding site, whereas mutations in distant loops had no effect on activity. This putative binding site is on a different surface of the Ig fold than the defined binding sites of immunoglobulins and other members of the Ig superfamily. Comparison of protein interaction sites by structural and mutational analysis has indicated that the area of surface contact is larger than the functional binding site identified by mutagenesis. The putative alpha-agglutinin binding site is therefore likely to identify residues that contribute to the functional binding site within a larger area that contacts a-agglutinin.
酿酒酵母黏附蛋白α-凝集素(Agα1p)由α细胞表达,并与a细胞表达的互补性a-凝集素结合。α-凝集素的N端一半对于配体结合而言已足够,并且有人提出其含有一个免疫球蛋白(Ig)折叠结构域。基于该结构域的结构同源性模型以及先前鉴定出的关键残基(His292),我们在该结构域的三个不连续区域进行了Agα1p突变,这些区域在模型中预计与His292紧密相邻。确定了三个区域中每个区域的残基对活性很重要,因此定义了一个推定的配体结合位点,而远处环中的突变对活性没有影响。这个推定的结合位点位于Ig折叠的一个与免疫球蛋白和Ig超家族其他成员的已定义结合位点不同的表面上。通过结构和突变分析对蛋白质相互作用位点进行比较表明,表面接触面积大于通过诱变鉴定的功能性结合位点。因此,推定的α-凝集素结合位点可能确定了在与a-凝集素接触的更大区域内对功能性结合位点有贡献的残基。