Nugent J H, Alfa C E, Young T, Hyams J S
Department of Biology, University College London, UK.
J Cell Sci. 1991 Jul;99 ( Pt 3):669-74. doi: 10.1242/jcs.99.3.669.
Cyclins, as regulatory subunits of the ubiquitous p34cdc2 protein kinase, act as key controlling elements of the eukaryotic cell cycle. We have examined published sequences of A- and B-type cyclins for both amino acid and secondary structure homologies. In particular, we sought regions of homology outside the recognised area of sequence conservation known as the "cyclin box', as well as conserved features predicted to lie at the protein surface. Our analysis demonstrates the existence of a number of islands of homology outside the cyclin box, and indicates candidate residues for phosphorylation. One of these, a motif containing the amino acids SPXXXE/D is also present in fission yeast p13suc1, another protein known to interact with p34cdc2. This motif may define a possible p34cdc2 binding or phosphorylation site. A database search revealed that the CDC25 and SCD25 genes of the budding yeast Saccharomyces cerevisiae also contain some of the newly identified motifs, perhaps indicating a common regulatory or degradation pathway.
细胞周期蛋白作为普遍存在的p34cdc2蛋白激酶的调节亚基,是真核细胞周期的关键控制元件。我们已对已发表的A类和B类细胞周期蛋白序列进行了氨基酸和二级结构同源性分析。特别地,我们在被称为“细胞周期蛋白框”的公认序列保守区域之外寻找同源区域,以及预计位于蛋白质表面的保守特征。我们的分析表明,在细胞周期蛋白框之外存在许多同源性区域,并指出了磷酸化的候选残基。其中之一,一个包含氨基酸SPXXXE/D的基序也存在于裂殖酵母p13suc1中,p13suc1是另一种已知与p34cdc2相互作用的蛋白质。这个基序可能定义了一个可能的p34cdc2结合或磷酸化位点。数据库搜索显示,酿酒酵母的CDC25和SCD25基因也包含一些新发现的基序,这可能表明存在共同的调节或降解途径。