Nurtdinov Ramil N, Neverov Alexey D, Favorov Alexander V, Mironov Andrey A, Gelfand Mikhail S
Faculty of Bioengineering and Bioinformatics, M,V, Lomonosov Moscow State University, Vorbyevy Gory 1-73, Moscow, 119992, Russia.
BMC Evol Biol. 2007 Dec 22;7:249. doi: 10.1186/1471-2148-7-249.
Alternative splicing has been shown to be one of the major evolutionary mechanisms for protein diversification and proteome expansion, since a considerable fraction of alternative splicing events appears to be species- or lineage-specific. However, most studies were restricted to the analysis of cassette exons in pairs of genomes and did not analyze functionality of the alternative variants.
We analyzed conservation of human alternative splice sites and cassette exons in the mouse and dog genomes. Alternative exons, especially minor-isofom ones, were shown to be less conserved than constitutive exons. Frame-shifting alternatives in the protein-coding regions are less conserved than frame-preserving ones. Similarly, the conservation of alternative sites is highest for evenly used alternatives, and higher when the distance between the sites is divisible by three. The rate of alternative-exon and site loss in mouse is slightly higher than in dog, consistent with faster evolution of the former. The evolutionary dynamics of alternative sites was shown to be consistent with the model of random activation of cryptic sites.
Consistent with other studies, our results show that minor cassette exons are less conserved than major-alternative and constitutive exons. However, our study provides evidence that this is caused not only by exon birth, but also lineage-specific loss of alternative exons and sites, and it depends on exon functionality.
可变剪接已被证明是蛋白质多样化和蛋白质组扩展的主要进化机制之一,因为相当一部分可变剪接事件似乎是物种或谱系特异性的。然而,大多数研究仅限于对成对基因组中的盒式外显子进行分析,并未分析可变变体的功能。
我们分析了人类可变剪接位点和盒式外显子在小鼠和犬类基因组中的保守性。可变外显子,尤其是次要异构体的外显子,显示出比组成型外显子保守性更低。蛋白质编码区域中的移码可变体比保框可变体保守性更低。同样,对于均匀使用的可变位点,其保守性最高,并且当位点之间的距离可被三整除时保守性更高。小鼠中可变外显子和位点的丢失率略高于犬类,这与前者进化更快一致。可变位点的进化动态显示与隐蔽位点随机激活模型一致。
与其他研究一致,我们的结果表明次要盒式外显子比主要可变外显子和组成型外显子保守性更低。然而,我们的研究提供了证据表明,这不仅是由外显子产生引起的,也是由可变外显子和位点的谱系特异性丢失导致的,并且这取决于外显子的功能。