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PKR activation by noncanonical ligands: a 5 '-triphosphate requirement versus antisense contamination

机译:非洲配体的PKR活化:5' - 三磷酸盐要求与反义污染

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Protein kinase RNA-activated (PKR) is an interferon-inducible kinase that is potently activated by long double-stranded RNA (dsRNA). In a previous study, we found that snoRNAs exhibit increased association with PKR in response to metabolic stress. While it was unclear if snoRNAs also activated PKR in cells, activation in vitro was observed. snoRNAs do not exhibit the double-stranded character typically required for activation of PKR, but some studies suggest such RNAs can activate PKR if triphosphorylated at the 5' terminus, or if they are able to form intermolecular dimers. To interrogate the mechanism of PKR activation by snoRNAs in vitro we focused on SNORD113. Using multiple methods for defining the 5'-phosphorylation state, we find that activation of PKR by SNORD113 does not require a 5'-triphosphate. Gel purification from a native gel followed by analysis using analytical ultracentrifugation showed that dimerization was also not responsible for activation. We isolated distinct conformers of SNORD113 from a native polyacrylamide gel and tracked the activating species to dsRNA formed from antisense RNA synthesized during in vitro transcription with T7 RNA polymerase. Similar studies with additional snoRNAs and small RNAs showed the generality of our results. Our studies suggest that a 5' triphosphate is not an activating ligand for PKR, and emphasize the insidious nature of antisense contamination.
机译:蛋白激酶RNA活化(PKR)是一种干扰素可诱导的激酶,其由长双链RNA(DSRNA)易于激活。在以前的研究中,我们发现伴随着对代谢应力的PKR具有较多的关联。虽然目前尚不清楚Snornas还在细胞中激活PKR,但观察到体外的活化。 Snornas不表现出PKR的激活所需的双链角色,但有些研究表明,如果在5'末端的三磷酸化,或者它们能够形成分子间二聚体,则可以激活PKR。在体外询问PKR激活的机制,我们专注于Snord113。使用多种方法来定义5'-磷酸化状态,发现PKR的激活由苯甲络113不需要5'-三磷酸盐。通过天然凝胶纯化,然后使用分析超离心程分析显示,二聚化也不负责活化。我们从天然聚丙烯酰胺凝胶中分离出苯罗德113的明显符合子,并跟踪了在用T7 RNA聚合酶的体外转录期间由反义RNA组成的反义RNA形成的DSRNA。与额外的翼载和小RNA类似的研究表明我们的结果一般性。我们的研究表明,三磷酸5'三磷酸不是PKR的激活配体,并强调反义污染的神经性质。

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