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Generation and characterization of an analog-sensitive PERK allele

机译:模拟敏感的PERK等位基因的生成和表征

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摘要

Restriction of nutrients and oxygen in the tumor microenvironment disrupts ER homeostasis and adaptation to such stress is mediated by the key UPR effector PERK. Given its pro-tumorigenic activity, significant efforts have been made to elucidate the molecular mechanisms that underlie PERK function. Chemical-genetic approaches have recently proven instrumental in pathway mapping and interrogating kinase function. To enable a detailed study of PERK signaling we have generated an analog-sensitive PERK allele that accepts N6-alkylated ATP analogs. We find that this allele can be regulated by bulky ATP-competitive inhibitors, confirming the identity of the PERK gatekeeper residue as methionine 886. Furthermore, this analog-sensitive allele can be used to specifically label substrates with thiophosphate both in vitro and in cells. These data highlight the potential for using chemical-genetic techniques to identify novel PERK substrates, thereby providing an expanded view of PERK function and further definition of its signaling networks.
机译:肿瘤微环境中营养物质和氧气的限制会破坏ER稳态,而关键的UPR效应物PERK介导了对这种压力的适应性。鉴于其促肿瘤发生活性,人们已经做出了巨大努力来阐明PERK功能的分子机制。化学遗传学方法最近被证明有助于途径作图和询问激酶功能。为了能够详细研究PERK信号传导,我们产生了接受N6-烷基化ATP类似物的类似物敏感的PERK等位基因。我们发现该等位基因可以被庞大的ATP竞争性抑制剂所调节,从而确认了PERK看门者残基作为蛋氨酸886的身份。此外,该类似物敏感的等位基因可用于在体内和体外用硫代磷酸酯特异性标记底物。这些数据突显了使用化学遗传技术识别新型PERK底物的潜力,从而提供了PERK功能的扩展视图及其信号网络的进一步定义。

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