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海绵体2',5'-寡腺苷酸合成酶(Sponge OAS)在2-5A合成酶家族中具有独特的基因组结构。

Sponge OAS has a distinct genomic structure within the 2-5A synthetase family.

作者信息

Reintamm Tõnu, Kuusksalu Anne, Metsis Madis, Päri Mailis, Vallmann Kerli, Lopp Annika, Justesen Just, Kelve Merike

机构信息

Department of Gene Technology, Tallinn University of Technology, Akadeemia tee 15, 12618, Tallinn, Estonia.

出版信息

Mol Genet Genomics. 2008 Nov;280(5):453-66. doi: 10.1007/s00438-008-0379-5. Epub 2008 Sep 17.

Abstract

2',5'-Oligoadenylate synthetases (2-5A synthetases, OAS) are enzymes that play an important role in the interferon-induced antiviral defense mechanisms in mammals. Sponges, the evolutionarily lowest multicellular animals, also possess OAS; however, their function is presently unclear. Low homology between primary structures of 2-5A synthetases from vertebrates and sponges renders their evolutionary relationship obscure. The genomic structure of vertebrate OASs has been thoroughly examined, making it possible to elucidate molecular evolution and expansion of this gene family. Until now, no OAS gene structure was available from sponges to compare it with the corresponding genes from higher organisms. In the present work, we determined the exon/intron structure of the OAS gene from the marine sponge Geodia cydonium and found it to be completely different from the strictly conserved exon/intron pattern of the OAS genes from vertebrates. This finding was corroborated by the analysis of OAS genes from another sponge, Amphimedon queenslandica, whose genome was recently sequenced. Our data suggest that vertebrate and sponge OAS genes have no direct common intron-containing ancestor and two (sub)types of OAS may be discriminated. This study opens new perspectives for understanding the phylogenesis and evolution of 2-5A synthetases as well as functional aspects of this multigene family.

摘要

2',5'-寡腺苷酸合成酶(2-5A合成酶,OAS)是在哺乳动物干扰素诱导的抗病毒防御机制中发挥重要作用的酶。海绵作为进化上最低等的多细胞动物,也拥有OAS;然而,其功能目前尚不清楚。脊椎动物和海绵的2-5A合成酶一级结构之间的低同源性使得它们的进化关系模糊不清。脊椎动物OAS的基因组结构已被深入研究,这使得阐明该基因家族的分子进化和扩增成为可能。到目前为止,尚无海绵的OAS基因结构可与高等生物的相应基因进行比较。在本研究中,我们确定了海洋海绵Geodia cydonium的OAS基因的外显子/内含子结构,发现它与脊椎动物OAS基因严格保守的外显子/内含子模式完全不同。对另一种海绵Amphimedon queenslandica的OAS基因分析证实了这一发现,该海绵的基因组最近已被测序。我们的数据表明,脊椎动物和海绵的OAS基因没有直接含共同内含子的祖先,并且可以区分两种(亚)类型的OAS。这项研究为理解2-5A合成酶的系统发生和进化以及这个多基因家族的功能方面开辟了新的视角。

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