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Ty1 reverse transcriptase does not read through the proposed 2′5′-branched retrotransposition intermediate in vitro

机译:Ty1逆转录酶不能在体外阅读建议的25-分支逆转座中间体

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摘要

2′,5′-Branched RNA was recently proposed as a key Ty1 retrotransposition intermediate, for which cleavage by lariat debranching enzyme (Dbr1p) enables reverse transcription to continue synthesizing the complete Ty1 cDNA. Because dbr1 cells can produce substantial Ty1 cDNA despite lacking Dbr1p, the obligatory intermediacy of branched RNA would require that Ty1 reverse transcriptase (RT) can read through the proposed branch site with considerable efficiency. Here we have used deoxyribozyme-synthesized 2′,5′-branched RNA corresponding exactly to the proposed Ty1 branch site for a direct test of this read-through ability. Using an in vitro assay that incorporates all components known to be required for Ty1 cDNA synthesis (including the TyA chaperone protein), Ty1 RT can elongate up to the branch site. Strand transfer from the 2′-arm to the 3′-arm of the branch is observed when the Ty1 RT is RNase H+ (i.e., wild-type) but not when the Ty1 RT is RNase H. When elongating from either the 2′-arm or the 3′-arm, Ty1 RT reads through the branch site with ≤0.3% efficiency. This is at least 60-fold lower than would be necessary to explain in vivo Ty1 cDNA synthesis in dbr1 cells, because others have reported 18% cDNA synthesis relative to wild-type cells. Our finding that Ty1 RT cannot efficiently read through the proposed Ty1 branch site is inconsistent with the hypothesis that branched RNA is an obligatory Ty1 retrotransposition intermediate. This suggests that Dbr1p acts as other than a 2′,5′-phosphodiesterase during Ty1 retrotransposition.
机译:最近提出了2',5'-分支RNA作为关键的Ty1逆转录转座中间体,通过套索解支酶(Dbr1p)的切割,其逆转录作用可继续合成完整的Ty1 cDNA。因为尽管缺少Dbr1p,dbr1细胞仍可产生大量的Ty1 cDNA,所以分支RNA的强制性中间性要求Ty1逆转录酶(RT)能够以相当高的效率读取拟议的分支位点。在这里,我们已经使用脱氧核酶合成的2',5'支链RNA完全对应于拟议的Ty1分支位点,以直接测试这种通读能力。使用结合了Ty1 cDNA合成所需的所有已知成分(包括TyA伴侣蛋白)的体外测定法,Ty1 RT可以延长至分支位点。当Ty1 RT为RNase H + (即野生型)时,观察到从分支的2'臂向3'臂的链转移,而当Ty1 RT为RNase H时则未观察到-。当从2'臂或3'臂延伸时,Ty1 RT以≤0.3%的效率读取分支部位。这比解释dbr1细胞中体内Ty1 cDNA合成所必需的低至少60倍,因为其他人已经报道了相对于野生型细胞而言18%的cDNA合成。我们的发现,Ty1 RT无法有效地阅读拟议的Ty1分支位点,这与支链RNA是必不可少的Ty1逆转录转座中间体的假设不一致。这表明在Ty1逆转座子过程中,Dbr1p的作用不同于2',5'-磷酸二酯酶。

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