Shao H, Tu Z
Department of Biochemistry, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.
Genetics. 2001 Nov;159(3):1103-15. doi: 10.1093/genetics/159.3.1103.
A novel transposon named ITmD37E was discovered in a wide range of mosquito species. Sequence analysis of multiple copies in three Aedes species showed similar terminal inverted repeats and common putative TA target site duplications. The ITmD37E transposases contain a conserved DD37E catalytic motif, which is unique among reported transposons of the IS630-Tc1-mariner superfamily. Sequence comparisons and phylogenetic analyses suggest that ITmD37E forms a novel family distinct from the widely distributed Tc1 (DD34E), mariner (DD34D), and pogo (DDxD) families in the IS630-Tc1-mariner superfamily. The inclusion in the phylogenetic analysis of recently reported transposons and transposons uncovered in our database survey provided revisions to previous classifications and identified two additional families, ITmD37D and ITmD39D, which contain DD37D and DD39D motifs, respectively. The above expansion and reorganization may open the doors to the discovery of related transposons in a broad range of organisms and help illustrate the evolution and structure-function relationships among these distinct transposases in the IS630-Tc1-mariner superfamily. The presence of intact open reading frames and highly similar copies in some of the newly characterized transposons suggests recent transposition. Studies of these novel families may add to the limited repertoire of transgenesis and mutagenesis tools for a wide range of organisms, including the medically important mosquitoes.
在多种蚊虫中发现了一种名为ITmD37E的新型转座子。对三种伊蚊中多个拷贝的序列分析表明,它们具有相似的末端反向重复序列和常见的假定TA靶位点重复序列。ITmD37E转座酶含有保守的DD37E催化基序,这在IS630-Tc1-mariner超家族已报道的转座子中是独一无二的。序列比较和系统发育分析表明,ITmD37E形成了一个新的家族,与IS630-Tc1-mariner超家族中广泛分布的Tc1(DD34E)、mariner(DD34D)和pogo(DDxD)家族不同。在系统发育分析中纳入最近报道的转座子以及我们数据库调查中发现的转座子,对先前的分类进行了修订,并确定了另外两个家族,即ITmD37D和ITmD39D,它们分别包含DD37D和DD39D基序。上述扩展和重组可能为在广泛的生物体中发现相关转座子打开大门,并有助于阐明IS630-Tc1-mariner超家族中这些不同转座酶之间的进化以及结构-功能关系。一些新鉴定的转座子中存在完整的开放阅读框和高度相似的拷贝,这表明它们最近发生了转座。对这些新家族的研究可能会增加包括医学上重要的蚊虫在内的多种生物体中转基因和诱变工具的有限种类。