Usakin Lev A, Kogan Galina L, Kalmykova Alla I, Gvozdev Vladimir A
Department of Animal Molecular Genetics, Institute of Molecular Genetics, Moscow, Russia.
Mol Biol Evol. 2005 Jul;22(7):1555-60. doi: 10.1093/molbev/msi147. Epub 2005 Apr 13.
Fertility of Drosophila melanogaster males is impaired due to the disruption of the silencing of the X-linked, testis-expressed, repeated Stellate (Ste) genes. Ste silencing is mediated by symmetric transcription of the paralogous Y-linked repeats and exerted by an RNA interference (RNAi) mechanism. Here we present a scenario for the origin of the Ste genes and their suppressors. The primary intermediate of their evolution emerged as a result of the acquisition of a preformed alien, testis-specific promoter. This intermediate is identified as a chimeric gene containing coding region of an autosomal gene for testis-specific protein kinase CK2. The 5' region of the chimera has been acquired from a member of a family of testis-expressed X-linked genes of unknown function. We propose that the evolution and amplification of the novel chimeric gene have led to the overproduction of the regulatory CK2 subunit in testes. The evolution of the Y-linked descendants of the primary intermediate resulted in the RNAi-mediated suppression of excessive expression of the X-linked paralogs. The newly detected "dead family" of cognate repeats on the Y chromosome has contributed to the evolution of Ste and its suppressors via gene conversion. Our results show that RNAi silencing, considered as a defense against viruses and transposable elements, may be involved in the evolution of eukaryotic genomes.
由于X连锁的、睾丸表达的重复星状(Ste)基因沉默被破坏,黑腹果蝇雄性的生育能力受损。Ste沉默由同源Y连锁重复序列的对称转录介导,并通过RNA干扰(RNAi)机制发挥作用。在这里,我们提出了一个关于Ste基因及其抑制因子起源的设想。它们进化的主要中间体是由于获得了一个预先形成的外来睾丸特异性启动子而出现的。这个中间体被鉴定为一个嵌合基因,其包含一个常染色体基因的编码区,该常染色体基因编码睾丸特异性蛋白激酶CK2。嵌合体的5'区域是从一个功能未知的睾丸表达的X连锁基因家族的成员那里获得的。我们提出,这个新的嵌合基因的进化和扩增导致了睾丸中调节性CK2亚基的过量产生。初级中间体的Y连锁后代的进化导致了RNAi介导的对X连锁同源物过度表达的抑制。Y染色体上新检测到的同源重复序列的“死亡家族”通过基因转换促进了Ste及其抑制因子的进化。我们的结果表明,被认为是对抗病毒和转座元件的防御机制的RNAi沉默,可能参与了真核基因组的进化。