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Induction of stress proteins in anoxic and hyperthermicSpodoptera frugiperda cells

机译:缺氧和高温热食斜纹夜蛾细胞中应激蛋白的诱导

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In this study, we compare stress protein induction in anoxic and hyperthermicSpodoptera frugiperda cells. Anoxia transiently induces a cluster of heat shock proteins at 71 and 72 kDa. This is a subset of a larger group of stress proteins induced by heat shock. Several heat shock proteins reported in this study were previously undetected inS. frugiperda. With these additional proteins, the stress response of hyperthermicS. frugiperda closely resembles that ofDrosophila melanogaster. Prior investigations of stress protein induction during oxygen deprivation focused on mammalian cells. In sharp contrast to these cells, anoxicS. frugiperda cells neither induce glucose-regulated proteins nor suppress the heat shock family of 71/72 kDa proteins. These findings provide insight into the virtually unexplored area of stress protein induction in anoxic insect cells. In addition, they help to explain the effects of oxygen deprivation on heterologous protein yield from virally infected insect cells and to develop an oxygenregulated promoter for stably transformed insect cells.
机译:在这项研究中,我们比较了缺氧和高温斜纹夜蛾细胞中应激蛋白的诱导。缺氧短暂诱导71和72 kDa的热激蛋白簇。这是由热激诱导的大量应激蛋白的子集。这项研究中报道的几种热激蛋白以前在inS中未检测到。 frugiperda。有了这些额外的蛋白质,hyperthermicS的应激反应。 frugiperda与果蝇(Drosophila melanogaster)非常相似。氧剥夺过程中应激蛋白诱导的先前研究集中在哺乳动物细胞上。与这些细胞形成鲜明对比的是aoxicS。 frugiperda细胞既不诱导葡萄糖调节蛋白,也不抑制71/72 kDa蛋白的热激家族。这些发现提供了对缺氧昆虫细胞中应激蛋白诱导的实际上尚未探索的领域的了解。此外,它们有助于解释缺氧对病毒感染昆虫细胞异源蛋白质产量的影响,并为稳定转化的昆虫细胞开发氧调节启动子。

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