Rogozin Igor B, Basu Malay K, Jordan I King, Pavlov Youri I, Koonin Eugene V
National Center for Biotechnology Information, NLM, National Institutes of Health, Bethesda, Maryland 20894, USA.
Cell Cycle. 2005 Sep;4(9):1281-5. doi: 10.4161/cc.4.9.1994. Epub 2005 Sep 6.
Using iterative database searches, we identified a new subfamily of the AID/APOBEC family of RNA/DNA editing cytidine deaminases. The new subfamily, which is represented by readily identifiable orthologs in mammals, chicken, and frog, but not fishes, was designated APOBEC4. The zinc-coordinating motifs involved in catalysis and the secondary structure of the APOBEC4 deaminase domain are evolutionarily conserved, suggesting that APOBEC4 proteins are active polynucleotide (deoxy)cytidine deaminases. In reconstructed maximum likelihood phylogenetic trees, APOBEC4 forms a distinct clade with a high statistical support. APOBEC4 and APOBEC1 are joined in a moderately supported cluster clearly separated from AID, APOBEC2 and APOBEC3 subfamilies. In mammals, APOBEC4 is expressed primarily in testis which suggests the possibility that it is an editing enzyme for mRNAs involved in spermatogenesis.
通过迭代数据库搜索,我们鉴定出RNA/DNA编辑胞嘧啶脱氨酶AID/APOBEC家族的一个新亚家族。这个新亚家族在哺乳动物、鸡和青蛙中具有易于识别的直系同源物,但在鱼类中没有,被命名为APOBEC4。参与催化的锌配位基序以及APOBEC4脱氨酶结构域的二级结构在进化上是保守的,这表明APOBEC4蛋白是有活性的多核苷酸(脱氧)胞嘧啶脱氨酶。在重建的最大似然系统发育树中,APOBEC4形成了一个具有高统计支持的独特分支。APOBEC4和APOBEC1在一个支持度适中的簇中相连,该簇明显与AID、APOBEC2和APOBEC3亚家族分开。在哺乳动物中,APOBEC4主要在睾丸中表达,这表明它可能是参与精子发生的mRNA的编辑酶。