首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Telomerase and Retrotransposons: Reverse Transcriptases That Shaped Genomes Special Feature Sackler Colloquium: Access to DNA establishes a secondary target site bias for the yeast retrotransposon Ty5
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Telomerase and Retrotransposons: Reverse Transcriptases That Shaped Genomes Special Feature Sackler Colloquium: Access to DNA establishes a secondary target site bias for the yeast retrotransposon Ty5

机译:端粒酶和逆转录转座子:塑造基因组的逆转录酶特征萨克勒讨论会:获取DNA可以为酵母逆转录转座子Ty5建立第二个靶位点偏向

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摘要

Integration sites for many retrotransposons and retroviruses are determined by interactions between retroelement-encoded integrases and specific DNA-bound proteins. The Saccharomyces retrotransposon Ty5 preferentially integrates into heterochromatin because of interactions between Ty5 integrase and the heterochromatin protein silent information regulator 4. We mapped over 14,000 Ty5 insertions onto the S. cerevisiae genome, 76% of which occurred in heterochromatin, which is consistent with the known target site bias of Ty5. Using logistic regression, associations were assessed between Ty5 insertions and various chromosomal features such as genome-wide distributions of nucleosomes and histone modifications. Sites of Ty5 insertion, regardless of whether they occurred in heterochromatin or euchromatin, were strongly associated with DNase hypersensitive, nucleosome-free regions flanking genes. Our data support a model wherein silent information regulator 4 tethers the Ty5 integration machinery to domains of heterochromatin, and then, specific target sites are selected based on DNA access, resulting in a secondary target site bias. For insertions in euchromatin, DNA access is the primary determinant of target site choice. One consequence of the secondary target site bias of Ty5 is that insertions in coding sequences occur infrequently, which may preserve genome integrity.
机译:许多逆转录转座子和逆转录病毒的整合位点是由逆向元件编码的整合物与特定的DNA结合蛋白之间的相互作用决定的。由于Ty5整合酶和异染色质蛋白沉默信息调节剂4之间的相互作用,酿酒酵母逆转录转座子Ty5优先整合到异染色质中。我们在酿酒酵母基因组中绘制了超过14,000个Ty5插入片段,其中76%发生在异染色质中,这与已知的一致Ty5的目标位点偏倚。使用逻辑回归,评估了Ty5插入与各种染色体特征(如核小体的全基因组分布和组蛋白修饰)之间的关联。 Ty5插入的位点,无论它们是否出现在异染色质或常染色质中,都与DNase超敏感,无核小体的基因侧翼相关。我们的数据支持一种模型,其中沉默信息调节剂4将Ty5整合机制束缚在异染色质域上,然后根据DNA访问选择特定的靶位,从而导致次级靶位偏倚。对于常染色质的插入,DNA访问是靶位点选择的主要决定因素。 Ty5的次级靶位点偏倚的一个结果是,编码序列中的插入很少发生,这可能会保留基因组的完整性。

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