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Controlling integration specificity of a yeast retrotransposon

机译:控制酵母逆转录转座子的整合特异性

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Retrotransposons and retroviruses integrate nonrandomly into eukaryotic genomes. For the yeast retrotransposon Ty5, integration preferentially occurs within domains of heterochromatin. Targeting to these locations is determined by interactions between an ammo acid sequence motif at the C terminus of Ty5 integrase (IN) called the targeting domain, and the heterochromatin protein Sir4p. Here we show that new Ty5 integration hot spots are created when Sir4p is tethered to ectopic DNA sites. Targeting to sites of tethered Sir4p is abrogated by single amino acid substitutions in either IN or Sir4p that prevent their interaction. Ty5 target specificity can be altered by replacing the IN-targeting domain with other peptide motifs that interact with known protein partners. Integration occurs at high efficiency and in close proximity to DNA sites where the protein partners are tethered. These findings define a mechanism by which retrotransposons shape their host genomes and suggest ways in which retroviral integration can be controlled.
机译:逆转录转座子和逆转录病毒非随机地整合到真核基因组中。对于酵母逆转录转座子Ty5,整合优先发生在异染色质域内。靶向这些位置是由称为靶向域的Ty5整合酶(IN)C末端的氨基酸序列基序与异染色质蛋白Sir4p之间的相互作用决定的。在这里,我们显示了当Sir4p拴在异位DNA位点时会产生新的Ty5整合热点。靶向束缚的Sir4p的位点被IN或Sir4p中防止其相互作用的单个氨基酸取代所废除。通过用与已知蛋白伴侣相互作用的其他肽基序取代IN靶向结构域,可以改变Ty5靶标特异性。整合效率很高,并且非常靠近蛋白质伴侣被束缚的DNA位点。这些发现定义了逆转录转座子形成宿主基因组的机制,并提出了可以控制逆转录病毒整合的途径。

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