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Transcription through the yeast origin of replication ARS1 ends at the ABFI binding site and affects extrachromosomal maintenance of minichromosomes

机译:通过酵母复制起点ARS1的转录终止于ABFI结合位点,并影响微染色体的染色体外维持

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When the function of origins of replication in yeast was compromised by placing ARS sequences downstream of strong promoters, ARS activity might have been affected either by transcription or by an altered chromatin configuration induced by the construct. To distinguish between these possibilities, derivatives of the yeast TRP1ARS1 minichromosome were constructed that contained either the DED1 or the PET56 promoter firing against ARS1 (DEDARS and PET ARS constructs). PETARS constructs transformed yeast at high frequencies and were maintained as minichromosomes consistent with efficient ARS1 function, but DEDARS constructs transformed at low frequencies and had to be rescued as minichromosomes by insertion of a second ARS (H4-ARS).Chromatin analysis revealed that the ARS1 regions in PETARS and H4-DEDARS constructs were indistinguishable from the ARS1 region of the host TRP1ARS1 circle showing a nuclease sensitive region flanked by a nucleosome. However, RNA-analysis in the ARS region showed high and low levels of transcripts in H4-DEDARS and PETARS, respectively. Transcription elongated through the A, B1, and B2 elements and ended in B3, the binding site for ABFI. We conclude that transcription through ARS1 and not an altered chromatin structure affected ARS activity in these constructs.
机译:当通过将ARS序列置于强启动子的下游来破坏酵母中复制起点的功能时,ARS活性可能受转录或由构建体诱导的染色质构型改变的影响。为了区分这些可能性,构建了酵母TRP1ARS1微染色体的衍生物,其中含有DED1或针对ARS1的PET56启动子(DEDARS和PET ARS构建体)。 PETARS构建体以高频率转化酵母,并保持为与有效ARS1功能一致的微型染色体,但DEDARS构建体以低频转化并必须通过插入第二个ARS(H4-ARS)作为微型染色体进行挽救。染色质分析表明,ARS1 PETARS和H4-DEDARS构建体中的区域与宿主TRP1ARS1圆的ARS1区域没有区别,显示出核酶敏感区的侧翼是核小体。但是,ARS区域的RNA分析显示H4-DEDARS和PETARS中的转录本分别较高和较低。转录延伸穿过A,B1和B2元件,并终止于ABFI的结合位点B3。我们得出结论,通过ARS1的转录而不是染色质结构的改变不会影响这些构建体中的ARS活性。

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