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首页> 外文期刊>Journal of Molecular Biology >Properties of strand displacement synthesis by Moloney murine leukemia virus reverse transcriptase: Mechanistic implications
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Properties of strand displacement synthesis by Moloney murine leukemia virus reverse transcriptase: Mechanistic implications

机译:莫洛尼鼠白血病病毒逆转录酶合成链置换的性质:机理的意义。

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Previous results indicated that Moloney murine leukemia virus reverse transcriptase is capable of extensive synthesis under conditions where it must simultaneously displace a downstream non-template DNA strand. To investigate more fully the mechanistic basis for displacement synthesis and to characterize the activity with natural viral templates, displacement and non-displacement synthesis were compared under a variety of conditions using the viral long terminal repeat plus strand as the template. Although the rates of both displacement and non-displacement synthesis varied regionally over the template, on the average, displacement syn thesis was slower by a factor of approximately 3 to 4. Surprisingly, with one particular primer situated downstream of the tRNA primer binding site, displacement synthesis was found to be at least tenfold more processive than non-displacement synthesis, approaching a value of 500 nucleotides. The sequence features associated with pausing during the two modes of synthesis are different in both nucleotide preference and position relative to the enzyme, suggesting that the enzyme contacts the DNA differently under the two modes of synthesis. It was found that pausing during displacement synthesis did not reflect those local regions of DNA with a predicted high degree of thermal stability. Moreover, the very similar effects of temperature on the rates of displacement and nondisplacement synthesis make unlikely a strictly passive mechanism of displacement synthesis whereby breathing of the downstream duplex is sufficient for advancement of the polymerase. Together, these results suggest a mechanism of displacement synthesis in which reverse transcriptase actively participates in the process of strand separation in front of the translocating polymerase. (C) 1998 Academic Press Limited. [References: 56]
机译:先前的结果表明,莫洛尼氏鼠白血病病毒逆转录酶能够在必须同时置换下游非模板DNA链的条件下进行广泛合成。为了更充分地研究置换合成的机理基础并利用天然病毒模板表征活性,在多种条件下,以病毒长末端重复序列加链为模板,比较了置换和非置换合成。尽管置换和非置换合成的速率在整个模板上都会发生区域变化,但平均而言,置换合成的速度要慢大约3-4倍。令人惊讶的是,在tRNA引物结合位点的下游有一个特定的引物,发现置换合成比非置换合成处理至少至少十倍,接近500个核苷酸的值。在两种合成模式下与暂停相关的序列特征在核苷酸偏爱和相对于酶的位置上都不同,这表明在两种合成模式下酶与DNA的接触方式不同。发现置换合成过程中的暂停不能反映具有预测的高度热稳定性的DNA的那些局部区域。而且,温度对置换和非置换合成速率的非常相似的影响不可能使置换合成成为严格被动的机制,从而下游双链体的呼吸足以促进聚合酶的发展。总之,这些结果表明了置换合成的机制,其中逆转录酶积极参与了易位聚合酶前面的链分离过程。 (C)1998 Academic Press Limited。 [参考:56]

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