Alioto Tyler S
Genome Bioinformatics Laboratory, Center for Genomic Regulation, Doctor Aiguader 88, 08003 Barcelona, Spain.
Nucleic Acids Res. 2007 Jan;35(Database issue):D110-5. doi: 10.1093/nar/gkl796. Epub 2006 Nov 1.
U12-type introns are spliced by the U12-dependent spliceosome and are present in the genomes of many higher eukaryotic lineages including plants, chordates and some invertebrates. However, due to their relatively recent discovery and a systematic bias against recognition of non-canonical splice sites in general, the introns defined by U12-type splice sites are under-represented in genome annotations. Such under-representation compounds the already difficult problem of determining gene structures. It also impedes attempts to study these introns genome-wide or phylum-wide. The resource described here, the U12 Intron Database (U12DB), aims to catalog the U12-type introns of completely sequenced eukaryotic genomes in a framework that groups orthologous introns with each other. This will aid further investigations into the evolution and mechanism of U12-dependent splicing as well as assist ongoing genome annotation efforts. Public access to the U12DB is available at http://genome.imim.es/cgi-bin/u12db/u12db.cgi.
U12型内含子由依赖U12的剪接体进行剪接,存在于包括植物、脊索动物和一些无脊椎动物在内的许多高等真核生物谱系的基因组中。然而,由于它们相对较新才被发现,并且总体上存在对非经典剪接位点识别的系统性偏差,由U12型剪接位点定义的内含子在基因组注释中代表性不足。这种代表性不足使确定基因结构这一原本就困难的问题更加复杂。它还阻碍了在全基因组或门水平上研究这些内含子的尝试。这里描述的资源,即U12内含子数据库(U12DB),旨在将完全测序的真核生物基因组中的U12型内含子编目到一个将直系同源内含子相互分组的框架中。这将有助于进一步研究依赖U12的剪接的进化和机制,并协助正在进行的基因组注释工作。可通过http://genome.imim.es/cgi-bin/u12db/u12db.cgi公开访问U12DB。