Zhang Liqing
Department of Computer Science, Virginia Tech, 2050 Torgersen Hall, Blacksburg, VA 24061-0106, USA.
Biochem Genet. 2008 Jun;46(5-6):293-311. doi: 10.1007/s10528-008-9148-8.
This work examines the molecular evolution of a brain-expressed X-linked gene family in the mammalian genomes of human, chimp, macaque, mouse, rat, dog, and cow. The gene structures are well conserved across family members and among the mammals in that all five members have three exons with the first two exons untranslated. Furthermore, the five members are arranged tandemly on chromosome X with Bex5, Bex1, Bex2 on the negative strand and Bex4, Bex3 on the positive strand, and this physical arrangement remains conserved among species. Sequence analyses indicate that gene conversion has been frequent and ongoing among Bex1-4, occurring in multiple species independently. All gene conversions in different species between Bex1 and Bex4, and between Bex2 and Bex3, appear to be limited to the upstream regions of the third exon, whereas the gene conversions occurred independently in different species between Bex1 and Bex2 and cover only the third exon. Bex5 appears to have little exchange of genetic information with other members, possibly due to its distance from other members. The GC content decreases from 5'-UTR, intron 1, intron 2, coding region, to 3'-UTR, reflecting faithfully the frequency of gene conversion in different regions of the Bex genes. Sequence analyses also suggest that both relaxed selective constraint and positive selection have acted on the Bex members after duplication. In particular, Bex3 shows strong evidence of positive selection and seems to have evolved a new gene function after gene duplication.
这项研究探讨了一个在人类、黑猩猩、猕猴、小鼠、大鼠、狗和牛的哺乳动物基因组中脑表达的X连锁基因家族的分子进化。该基因家族成员之间以及在这些哺乳动物中,基因结构高度保守,所有五个成员都有三个外显子,前两个外显子为非翻译区。此外,这五个成员在X染色体上串联排列,Bex5、Bex1、Bex2位于负链,Bex4、Bex3位于正链,这种物理排列在物种间保持保守。序列分析表明,基因转换在Bex1 - 4之间频繁且持续发生,在多个物种中独立出现。不同物种中Bex1与Bex4之间以及Bex2与Bex3之间的所有基因转换似乎都局限于第三个外显子的上游区域,而Bex1与Bex2之间在不同物种中发生的基因转换仅覆盖第三个外显子。Bex5似乎与其他成员之间几乎没有遗传信息交换,这可能是由于它与其他成员距离较远。GC含量从5'-UTR、内含子1、内含子2、编码区到3'-UTR逐渐降低,忠实地反映了Bex基因不同区域的基因转换频率。序列分析还表明,在基因复制后,宽松的选择约束和正选择都作用于Bex家族成员。特别是,Bex3显示出强烈的正选择证据,似乎在基因复制后进化出了新的基因功能。