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Isolation of polysome-bound mRNA from solid tissues amenable for RT-PCR and profiling experiments

机译:从适合RT-PCR和分析实验的实体组织中分离结合多核糖体的mRNA

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摘要

Using cell lines and primary cells, it has been shown that translation control plays a key role regulating gene expression during physiological and pathological conditions. The relevance of this type of regulation in vivo (tissues, organs) remains to be elucidated, due to the lack of an efficient method for polysome-bound fractionation of solid tissue RNA samples. A simple and efficient method is described, in which tissue samples were pulverized in liquid nitrogen and lysed with NP40-lysis buffer in the presence of the RNAse inhibitors RNAsin and vanadyl-ribonucleoside complex. After cell lysis, the cytoplasmic extract was loaded into sucrose gradients, fractionated, and RNA prepared from each fraction. The obtained RNA was reverse transcribed with a low efficiency, a problem that was overcome by purifying polyA+ RNA. Aiming to use small quantities of solid tissue samples (10–20 mg/sample), polyA+ RNA purification was discarded, and the different components were individually screened for a negative effect on reverse transcription. The polysaccharide heparin, which is present as a nonspecific RNAse inhibitor, inhibits reverse transcriptase activity, and must be removed from RNA samples for an efficient reaction. Heparin was successfully removed by precipitation of the RNA with lithium chloride, as demonstrated by the reversal of the inhibition on RT-PCR reactions. In summary, we present a reliable method allowing us to prepare high-quality polysome-bound mRNA from small quantities of liquid-nitrogen–frozen solid tissue samples from both human and mouse origin, amenable for Northern blotting, RT-PCR reactions, and expression profiling analyses.
机译:使用细胞系和原代细胞,已表明翻译控制在生理和病理状况期间调节基因表达中起关键作用。由于缺乏有效的固体组织RNA样品多聚体结合分级分离方法,这种体内调节类型(组织,器官)的相关性尚待阐明。描述了一种简单有效的方法,其中将组织样品在液氮中粉碎,并在存在RNAse抑制剂RNAsin和钒基-核糖核苷复合物的情况下,用NP40裂解缓冲液裂解。细胞裂解后,将细胞质提取物上样至蔗糖梯度中,分级分离,并从每个级分中制备RNA。所获得的RNA效率低,反转录,这一问题可以通过纯化polyA + RNA来克服。为了使用少量的实体组织样品(10–20 mg /样品),丢弃了polyA + RNA纯化,并分别筛选了不同成分对反转录产生负面影响。多糖肝素作为一种非特异性的RNA酶抑制剂存在,抑制逆转录酶的活性,必须从RNA样品中取出才能有效反应。逆转RT-PCR反应的抑制作用可以证明,氯化锂沉淀RNA可以成功去除肝素。总之,我们提出了一种可靠的方法,使我们能够从少量人和小鼠来源的液氮冷冻的固态组织样品中制备高质量的多核糖体结合的mRNA,适用于Northern印迹,RT-PCR反应和表达分析分析。

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