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XIAP 通过阻止 RIPK2 在斑点样结构中的沉积来控制其信号转导。

XIAP controls RIPK2 signaling by preventing its deposition in speck-like structures.

机构信息

Department of Immunology, Institute of Nutritional Medicine, University of Hohenheim, Stuttgart, Germany

Department of Immunology, Institute of Nutritional Medicine, University of Hohenheim, Stuttgart, Germany.

出版信息

Life Sci Alliance. 2019 Jul 26;2(4). doi: 10.26508/lsa.201900346. Print 2019 Aug.

Abstract

The receptor interacting serine/threonine kinase 2 (RIPK2) is essential for linking activation of the pattern recognition receptors NOD1 and NOD2 to cellular signaling events. Recently, it was shown that RIPK2 can form higher order molecular structures in vitro. Here, we demonstrate that RIPK2 forms detergent insoluble complexes in the cytosol of host cells upon infection with invasive enteropathogenic bacteria. Formation of these structures occurred after NF-κB activation and depended on the caspase activation and recruitment domain of NOD1 or NOD2. Complex formation upon activation required RIPK2 autophosphorylation at Y474 and was influenced by phosphorylation at S176. We found that the E3 ligase X-linked inhibitor of apoptosis (XIAP) counteracts complex formation of RIPK2, accordingly mutation of the XIAP ubiquitylation sites in RIPK2 enhanced complex formation. Taken together, our work reveals novel roles of XIAP in the regulation of RIPK2 and expands our knowledge on the function of RIPK2 posttranslational modifications in NOD1/2 signaling.

摘要

受体相互作用丝氨酸/苏氨酸激酶 2(RIPK2)对于将模式识别受体 NOD1 和 NOD2 的激活与细胞信号事件联系起来至关重要。最近,已经表明 RIPK2 可以在体外形成更高阶的分子结构。在这里,我们证明了在感染侵袭性肠致病性细菌后,RIPK2 在宿主细胞的细胞质中形成去污剂不溶性复合物。这些结构的形成发生在 NF-κB 激活之后,并且依赖于 NOD1 或 NOD2 的半胱天冬酶激活和募集结构域。激活后复合物的形成需要 RIPK2 在 Y474 处的自身磷酸化,并且受 S176 处的磷酸化影响。我们发现,凋亡抑制因子(XIAP)的 E3 连接酶通过与 RIPK2 的相互作用而拮抗 RIPK2 复合物的形成,因此,RIPK2 中 XIAP 泛素化位点的突变增强了复合物的形成。总之,我们的工作揭示了 XIAP 在 RIPK2 调节中的新作用,并扩展了我们对 NOD1/2 信号中转录后修饰的 RIPK2 功能的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39da/6660644/02b4243463ce/LSA-2019-00346_Fig1.jpg

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