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Characterization of an optogenetic translation activation system

机译:光遗传学翻译激活系统的表征

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Considerable work has focused on developing systems to control cellular events using light, which is nontoxic to most mammalian cells and can be delivered with spatiotemporal control. We have developed a genetically encoded optogenetic system in which blue light activates target mRNA translation in mammalian cells. Specifically, we used blue light to induce the reconstitution of an RNA binding domain and a translation initiation domain, thereby activating target mRNA translation downstream of binding sites. We found that the influence of the ratio of the amount of reporter plasmid to that of effector plasmid on translation activation is small, which demonstrates the robustness of system to plasmid amounts. We also found that increasing the number of binding sites (aptamers) on the target mRNA enhanced translation activation in a light-sensitive manner.
机译:大量的工作集中在开发使用光控制细胞事件的系统上,该光对大多数哺乳动物细胞无毒并且可以通过时空控制来传递。我们已经开发了一种遗传编码的光遗传系统,其中的蓝光激活了哺乳动物细胞中的目标mRNA翻译。具体来说,我们使用蓝光诱导RNA结合域和翻译起始域的重建,从而激活结合位点下游的目标mRNA翻译。我们发现报告质粒的数量与效应质粒的比例对翻译激活的影响很小,这证明了系统对质粒数量的稳健性。我们还发现增加靶mRNA上结合位点(适体)的数量以光敏方式增强了翻译激活。

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