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首页> 外文期刊>Nucleic Acids Research >Characterization and mapping of the double-stranded regions involved in activation of PKR within a cellular RNA from 3T3-F442A cells
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Characterization and mapping of the double-stranded regions involved in activation of PKR within a cellular RNA from 3T3-F442A cells

机译:来自3T3-F442A细胞的细胞RNA中参与PKR激活的双链区域的表征和定位

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摘要

PKR is a doubled-stranded RNA-dependent protein kinase which is implicated in the regulation of several cellular processes, including cell proliferation. PKR undergoes phosphorylation and activation in mouse embryonic 3T3-F442A cells in response to endogenous RNA(s). Activation of PKR is related to growth and differentiation of these cells. A cellular regulatory RNA (R-RNA) which activates PKR has been isolated from these cells and its cDNA partially sequenced. Here we have characterized the R-RNA transcript with respect to nuclease sensitivity and the extent of double-stranded structure involved in activation of PKR. The location of the activating sequence was mapped to a contiguous 226/252 nt region of the R-RNA transcript by hybridization to its cDNA fragments. Hybridization with a panel of short oligodeoxynucleotides complementary to the R-RNA, coupled with protein kinase analysis, was used to probe the 252 nt region for critical sequences. Three short non-contiguous sequences which appear most important for activation of PKR were identified within the 252 nt region. Thus, these studies have identified specific sequences most important for activation of PKR. Furthermore, since the above antisense oligodeoxynucleotides inhibit enzyme activation, our results exemplify an unusual mode of action of antisense sequences on the activation of PKR by disruption of RNA secondary structure.
机译:PKR是一种双链RNA依赖性蛋白激酶,与多种细胞过程的调控有关,包括细胞增殖。响应于内源性RNA,PKR在小鼠胚胎3T3-F442A细胞中进行磷酸化和激活。 PKR的激活与这些细胞的生长和分化有关。已从这些细胞中分离出激活PKR的细胞调节RNA(R-RNA),并对其cDNA进行了部分测序。在这里,我们已就核酸酶敏感性和参与PKR激活的双链结构的程度来表征了R-RNA转录本。通过与它的cDNA片段杂交,将激活序列的位置定位到R-RNA转录物的连续226/252 nt区域。与一组与R-RNA互补的短寡聚脱氧核苷酸杂交,再结合蛋白激酶分析,用于探测252 nt区域的关键序列。在252 nt区域内鉴定了三个似乎对PKR激活最重要的短非连续序列。因此,这些研究已经鉴定出对于激活PKR最重要的特定序列。此外,由于上述反义寡聚脱氧核苷酸抑制酶激活,因此我们的结果例证了反义序列通过破坏RNA二级结构而对PKR激活的异常作用方式。

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