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The Effect of Temperature on Gene Silencing by siRNAs: Implications for Silencing in the Anterior Chamber of the Eye

机译:温度对siRNA基因沉默的影响:对眼前房沉默的影响。

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摘要

Gene silencing by siRNAs offers the potential for reducing the expression of mutated genes that cause disease. It has been shown that the folding or secondary structure of a specific mRNA was significantly correlated to the silencing observed. Since this base pairing is dependent on free energy, the temperature of the cells may influence the effectiveness of a particular siRNA. The aqueous humor of the human eye has been measured to be around 34°C with the lens acting as a thermal barrier in the eye. The trabecular meshwork, bathed by the aqueous humor, probably has a temperature lower than body temperature under normal conditions.Mutated myocilin, that is associated with primary open angle glaucoma, would appear to be a candidate for silencing by siRNAs. Silencing of the mutated myocilin might prevent additional accumulation of this protein in the rough endoplasmic reticulum. These experiments were undertaken to determine the influence of lowered temperatures on the silencing of myocilin by five siRNAs. Three different patterns of silencing emerged when the silencings were compared with cells grown at 33°C, 35°C, and 37°C. For one of the siRNAs, the silencing was increased at lower temperatures. For two siRNAs, no significant changes in silencing were observed with different temperatures. Two of the siRNAs were significantly influenced by temperature with little if any silencing occurring at the lowest temperature. These data indicate that siRNAs directed to tissues in the anterior chamber of the eye should be checked at temperatures lower than 37°C to determine their effectiveness.
机译:siRNA沉默基因提供了减少引起疾病的突变基因表达的潜力。已经显示,特定mRNA的折叠或二级结构与观察到的沉默显着相关。由于这种碱基配对取决于自由能,因此细胞的温度可能会影响特定siRNA的效力。据测,人眼的房水温度约为34°C,而晶状体可作为眼睛的热障。在正常情况下,被房水浸润的小梁网的温度可能低于体温。与原发性开角型青光眼相关的突变的肌球蛋白似乎是siRNA沉默的候选者。沉默突变的myocilin可能会阻止这种蛋白质在粗糙的内质网中进一步积累。进行这些实验以确定降低的温度对5种siRNA抑制myocilin沉默的影响。当将沉默与在33°C,35°C和37°C下生长的细胞进行比较时,出现了三种不同的沉默模式。对于其中一种siRNA,沉默在较低温度下会增加。对于两种siRNA,在不同温度下均未观察到沉默的显着变化。两个siRNA受温度影响很大,在最低温度下几乎没有沉默。这些数据表明,应在低于37°C的温度下检查针对眼前房组织的siRNA,以确定其有效性。

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