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与海鞘直系同源基因相比,鱼类基因的CpG侧翼位置的GC含量增加,作为一种减少DNA甲基化影响的机制。

GC content increased at CpG flanking positions of fish genes compared with sea squirt orthologs as a mechanism for reducing impact of DNA methylation.

作者信息

Wang Yong, Leung Frederick C C

机构信息

Department of Zoology and Genome Research Centre, The University of Hong Kong, Pokfulam, Hong Kong.

出版信息

PLoS One. 2008;3(11):e3612. doi: 10.1371/journal.pone.0003612. Epub 2008 Nov 13.

Abstract

BACKGROUND

Fractional DNA methylation in sea squirts evolved to global DNA methylation in fish. The impact of global DNA methylation is reflected by more CpG depletions and/or more A/T to G/C changes at CpG flanking positions due to context-dependent mutations of methylated CpG sites.

METHODS AND FINDINGS

In this report, we demonstrate that the sea squirt genes have undergone more CpG to TpG/CpA substitutions than the fish orthologs using homologous fragments from orthologous genes among Ciona intestinalis, Ciona savignyi, fugufish and zebrafish. To avoid premature transcription, the TGA sites derived from CGA were largely converted to TGG in sea squirt genes. By contrast, a significant increment of GC content at CpG flanking positions was shown in fish genes. The positively selected A/T to G/C substitutions, in combination with the CpG to TpG/CpA substitutions, are the sources of the extremely low CpG observed/expected ratios in vertebrates. The nonsynonymous substitutions caused by the GC content increase have resulted in frequent amino acid replacements in the directions that were not noticed previously.

CONCLUSION

The increased GC content at CpG flanking positions can reduce CpG loss in fish genes and attenuate the impact of DNA methylation on CpG-containing codons, probably accounting for evolution towards vertebrates.

摘要

背景

海鞘中的部分DNA甲基化进化为鱼类中的全基因组DNA甲基化。全基因组DNA甲基化的影响通过更多的CpG缺失和/或由于甲基化CpG位点的上下文依赖性突变导致的CpG侧翼位置更多的A/T到G/C变化得以体现。

方法与发现

在本报告中,我们使用来自肠鳃纲海鞘、萨氏海鞘、河豚和斑马鱼直系同源基因的同源片段,证明海鞘基因比鱼类直系同源基因经历了更多的CpG到TpG/CpA替换。为避免过早转录,源自CGA的TGA位点在海鞘基因中大多转换为TGG。相比之下,鱼类基因中CpG侧翼位置的GC含量显著增加。正向选择的A/T到G/C替换,与CpG到TpG/CpA替换一起,是脊椎动物中观察到的极低CpG观察/预期比率的来源。由GC含量增加引起的非同义替换导致了以前未被注意到的方向上频繁的氨基酸替换。

结论

CpG侧翼位置GC含量的增加可以减少鱼类基因中的CpG丢失,并减弱DNA甲基化对含CpG密码子的影响,这可能是向脊椎动物进化的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26a4/2580031/185728bd7a99/pone.0003612.g001.jpg

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