Yoon June-Sun, Gurusamy Dhandapani, Palli Subba Reddy
Department of Entomology, University of Kentucky, Lexington, KY 40546, USA.
Department of Entomology, University of Kentucky, Lexington, KY 40546, USA.
Insect Biochem Mol Biol. 2017 Nov;90:53-60. doi: 10.1016/j.ibmb.2017.09.011. Epub 2017 Sep 23.
RNA interference (RNAi) efficiency varies among insects studied. The barriers for successful RNAi include the presence of double-stranded ribonucleases (dsRNase) in the lumen and hemolymph that could potentially digest double-stranded RNA (dsRNA) and the variability in the transport of dsRNA into and within the cells. We recently showed that the dsRNAs are transported into lepidopteran cells, but they are not processed into small interference RNAs (siRNAs) because they are trapped in acidic bodies. In the current study, we focused on the identification of acidic bodies in which dsRNAs accumulate in Sf9 cells. Time-lapse imaging studies showed that dsRNAs enter Sf9 cells and accumulate in acidic bodies within 20 min after their addition to the medium. CypHer-5E-labeled dsRNA also accumulated in the midgut and fat body dissected from Spodoptera frugiperda larvae with similar patterns observed in Sf9 cells. Pharmacological inhibitor assays showed that the dsRNAs use clathrin mediated endocytosis pathway for transport into the cells. We investigated the potential dsRNA accumulation sites employing LysoTracker and double labeling experiments using the constructs to express a fusion of green fluorescence protein with early or late endosomal marker proteins and CypHer-5E-labeled dsRNA. Interestingly, CypHer-5E-labeled dsRNA accumulated predominantly in early and late endosomes. These data suggest that entrapment of internalized dsRNA in endosomes is one of the major factors contributing to inefficient RNAi response in lepidopteran insects.
RNA干扰(RNAi)效率在不同的昆虫研究中有所不同。成功进行RNAi的障碍包括管腔和血淋巴中存在双链核糖核酸酶(dsRNase),其可能会消化双链RNA(dsRNA),以及dsRNA进入细胞和在细胞内运输的变异性。我们最近发现dsRNAs被转运到鳞翅目细胞中,但它们不会被加工成小干扰RNA(siRNAs),因为它们被困在酸性小体中。在当前的研究中,我们专注于鉴定Sf9细胞中dsRNAs积累的酸性小体。延时成像研究表明,dsRNAs在添加到培养基后20分钟内进入Sf9细胞并积累在酸性小体中。用CypHer-5E标记的dsRNA也在草地贪夜蛾幼虫解剖出的中肠和脂肪体中积累,其模式与在Sf9细胞中观察到的相似。药理学抑制剂试验表明,dsRNAs利用网格蛋白介导的内吞途径转运到细胞中。我们使用LysoTracker以及用构建体进行双标记实验来研究潜在的dsRNA积累位点,该构建体用于表达绿色荧光蛋白与早期或晚期内体标记蛋白的融合体以及用CypHer-5E标记的dsRNA。有趣的是,用CypHer-5E标记的dsRNA主要积累在早期和晚期内体中。这些数据表明,内化的dsRNA被困在内体中是导致鳞翅目昆虫RNAi反应效率低下的主要因素之一。