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Novel mutations in Moloney Murine Leukemia Virus reverse transcriptase increase thermostability through tighter binding to template-primer

机译:莫洛尼鼠白血病病毒逆转录酶中的新突变通过与模板引物的紧密结合提高了热稳定性

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摘要

In an effort to increase the thermostability of Moloney Murine Leukemia Virus reverse transcriptase (MMLV RT), we screened random and site-saturation libraries for variants that show increased resistance to thermal inactivation. We discovered five mutations E69K, E302R, W313F, L435G and N454K that collectively increase the half-life of MMLV RT at 55°C from less than 5 min to ∼30 min in the presence of template-primer. In addition, these mutations alter the thermal profile by increasing specific activity of the pentuple mutant (M5) over a broad range of cDNA synthesis temperatures (25–70°C). We further show that M5 generates higher cDNA yields and exhibits better RT–PCR performance compared to wild-type RT when used at high temperature to amplify RNA targets containing secondary structure. Finally, we demonstrate that M5 exhibits tighter binding (lower Km) to template-primer, which likely protects against heat inactivation.
机译:为了提高莫洛尼鼠白血病病毒逆转录酶(MMLV RT)的热稳定性,我们筛选了随机和位点饱和文库中的变体,这些变体显示出对热灭活的抗性增强。我们发现了五个突变E69K,E302R,W313F,L435G和N454K,它们在存在模板引物的情况下共同将MMLV RT在55°C的半衰期从不到5分钟增加到约30分钟。此外,这些突变通过在广泛的cDNA合成温度(25–70°C)范围内增加五倍体突变体(M5)的比活性来改变热图谱。我们进一步表明,与野生型RT相比,M5在高温下扩增包含二级结构的RNA靶标时,产生的cDNA产量更高,并且具有更好的RT–PCR性能。最后,我们证明了M5与模板底漆的结合更紧密(Km更低),这很可能可以防止热失活。

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