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Defining the sequence requirements for the positioning of base J in DNA using SMRT sequencing

机译:使用SMRT测序定义碱基J在DNA中定位的序列要求

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Base J (beta-D-glucosyl-hydroxymethyluracil) replaces 1% of T in the Leishmania genome and is only found in telomeric repeats (99%) and in regions where transcription starts and stops. This highly restricted distribution must be co-determined by the thymidine hydroxylases (JBP1 and JBP2) that catalyze the initial step in J synthesis. To determine the DNA sequences recognized by JBP1/2, we used SMRT sequencing of DNA segments inserted into plasmids grown in Leishmania tarentolae. We show that SMRT sequencing recognizes base J in DNA. Leishmania DNA segments that normally contain J also picked up J when present in the plasmid, whereas control sequences did not. Even a segment of only 10 telomeric (GGGTTA) repeats was modified in the plasmid. We show that J modification usually occurs at pairs of Ts on opposite DNA strands, separated by 12 nucleotides. Modifications occur near G-rich sequences capable of forming G-quadruplexes and JBP2 is needed, as it does not occur in JBP2-null cells. We propose a model whereby de novo J insertion is mediated by JBP2. JBP1 then binds to J and hydroxylates another T 13 bp downstream (but not upstream) on the complementary strand, allowing JBP1 to maintain existing J following DNA replication.
机译:碱基J(β-D-葡萄糖基-羟甲基尿嘧啶)取代了利什曼原虫基因组中1%的T,仅在端粒重复序列(99%)以及转录开始和终止的区域中发现。这种高度受限的分布必须由催化J合成起始步骤的胸苷羟化酶(JBP1和JBP2)共同确定。为了确定被JBP1 / 2识别的DNA序列,我们使用SMRT测序法对插入塔氏Leishmania tarentolae中的质粒中插入的DNA片段进行测序。我们显示SMRT测序可识别DNA中的碱基J。当质粒中存在正常情况下含有J的利什曼原虫DNA片段时,J也能吸收J,而对照序列则没有。在质粒中甚至只修饰了10个端粒重复序列(GGGTTA)。我们表明,J修饰通常发生在相对DNA链上的Ts对上,由12个核苷酸隔开。修饰发生在能够形成G四联体的富含G的序列附近,并且需要JBP2,因为在JBP2无细胞中不会发生。我们提出了一个模型,其中新的J插入由JBP2介导。然后,JBP1与J结合并在互补链的下游(而不是上游)羟基化另一个T 13 bp,从而使JBP1在DNA复制后能够维持现有的J。

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