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RIPK3 regulates p62-LC3 complex formation via the caspase-8-dependent cleavage of p62

机译:RIPK3通过P62的Caspase-8依赖性切割来调节P62-LC3复杂形成

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RIPK3 is a key molecule for necroptosis, initially characterized by necrotic cell death morphology and the activation of autophagy. Cell death and autophagic signaling are believed to tightly regulate each other. However, the associated recruitment of signaling proteins remains poorly understood. p62/sequestosome-1 is a selective autophagy substrate and a selective receptor for ubiquitinated proteins. In this study, we illustrated that both mouse and human RIPK3 mediate p62 cleavage and that RIPK3 interacts with p62, resulting in complex formation. In addition, RIPK3-dependent p62 cleavage is restricted by the inhibition of caspases, especially caspase-8. Moreover, overexpression of A20, a ubiquitin-editing enzyme and an inhibitor of caspase-8 activity, inhibits RIPK3-dependent p62 cleavage. To further investigate the potential role of RIPK3 in selective autophagy, we analyzed p62-LC3 complex formation, revealing that RIPK3 prevents the localization of LC3 and ubiquitinated proteins to the p62 complex. In addition, RIPK3-dependent p62-LC3 complex disruption is regulated by caspase inhibition. Taken together, these results demonstrated that RIPK3 interacts with p62 and regulates p62-LC3 complex formation. These findings suggested that RIPK3 serves as a negative regulator of selective autophagy and provides new insights into the mechanism by which RIPK3 regulates autophagic signaling. (C) 2014 Elsevier Inc. All rights reserved.
机译:RIPK3是Necroptisis的关键分子,最初是以坏死的细胞死亡形态和自噬的激活为特征。据信,细胞死亡和自噬信号传导彼此紧密调节。然而,相关募集信号蛋白的招募仍然是较差的理解。 P62 /封料组-1是选择性自噬底物和普适蛋白质的选择性受体。在这项研究中,我们说明了鼠标和人类ripk3介导P62裂解,并且RIPK3与P62相互作用,导致复杂的形成。此外,RIPK3依赖性P62切割受抑制胱天蛋白酶,尤其是Caspase-8的限制。此外,A20的过表达,遍突素编辑酶和Caspase-8活性的抑制剂,抑制RIPK3依赖性P62切割。为了进一步研究RIPK3在选择性自噬中的潜在作用,我们分析了P62-LC3复杂的形成,揭示了RIPK3防止LC3和泛素蛋白质的定位到P62复合物中。此外,通过Caspase抑制来调节RIPK3依赖性P62-LC3复杂破坏。连同,这些结果表明RIPK3与P62相互作用并调节P62-LC3复杂形成。这些发现表明RIPK3用作选择性自噬的负调节器,并为RIPK3调节自噬信号传导的机制提供了新的见解。 (c)2014年elsevier Inc.保留所有权利。

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