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Elimination of Ligation Dependent Artifacts in T4 RNA Ligase to Achieve High Efficiency and Low Bias MicroRNA Capture

机译:消除T4 RNA连接酶中依赖连接的伪像以实现高效和低偏性MicroRNA捕获

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摘要

Adapter ligation is a critical first step in many microRNA analysis methods including microarray, qPCR, and sequencing. Previous studies have shown that ligation bias can have dramatic effects on both the fidelity of expression profiles and reproducibility across samples. We have developed a method for high efficiency and low bias microRNA capture by 3′ adapter ligation using T4 RNA ligase that does not require pooled adapters. Using a panel of 20 microRNA, we investigated the effects of ligase type, PEG concentration, ligase amount, adapter concentration, incubation time, incubation temperature, and adapter design on capture efficiency and bias. Of these factors, high PEG% was found to be critical in suppressing ligation bias. We obtained high average capture efficiency and low CV across the 20 microRNA panel, both in idealized buffer conditions (86%±10%) and total RNA spiking conditions (64%±17%). We demonstrate that this method is reliable across microRNA species that previous studies have had difficulty capturing and that our adapter design performs significantly better than the common adapter designs. Further, we demonstrate that the optimization methodology must be specifically designed for minimizing bias in order to obtain the ideal reaction parameters.
机译:衔接子连接是许多microRNA分析方法(包括微阵列,qPCR和测序)中至关重要的第一步。先前的研究表明,连接偏倚可以对表达谱的保真度和样品间的可重复性产生巨大影响。我们已经开发了一种方法,该方法不需要使用合并的衔接子,即可通过使用T4 RNA连接酶的3'衔接子连接来高效捕获低偏差的microRNA。我们使用一组20个microRNA,研究了连接酶类型,PEG浓度,连接酶量,衔接子浓度,孵育时间,孵育温度和衔接子设计对捕获效率和偏差的影响。在这些因素中,发现高PEG%对抑制连接偏向至关重要。我们在理想的缓冲液条件下(86%±10%)和总RNA加标条件下(64%±17%)都获得了20种microRNA样品组较高的平均捕获效率和较低的CV。我们证明了该方法在microRNA物种上是可靠的,以前的研究难以捕获,并且我们的适配器设计比常规适配器设计具有明显更好的性能。此外,我们证明了优化方法必须专门设计用于最小化偏差以获得理想的反应参数。

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