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Coordination between NF-κB family members p50 and p52 is essential for mediating LTβR signals in the development and organization of secondary lymphoid tissues

机译:NF-κB家族成员p50和p52之间的协调对于在次级淋巴组织的发育和组织中介导LTβR信号至关重要

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摘要

Recent studies revealed that the lymphotoxin/lymphotoxin beta receptor (LT)/LTβR system activates the noncanonical nuclear factor-κB (NF-κB) signaling pathway involving I kappa B kinase 1/I kappa B kinase α (IKK1/IKKα) and NF-κB-inducing kinase (NIK) to direct processing of the nfκb2 protein p100 to yield RelB:p52 complexes. Despite the biochemical evidence, LT-, RelB-, p52-deficient mice show discrepant phenotypes. We now demonstrate that p105/p50 also constitutes an important pathway for LTβR signaling. Our studies revealed that mice deficient in either p50 or p52 have defects in the formation of inguinal lymph nodes (LNs), but that the complete defect in lymph node formation and splenic microarchitecture seen in LT-deficient mice is recapitulated only in mice deficient in both p50 and p52. Biochemically, we find not only that both p50- and p52-containing NF-κB activities are induced by LTβR signaling, but that the induction of NF-κB-containing complexes by LTβR engagement is perturbed in single knockouts. Importantly, the LTβR can additionally activate the less well-characterized p52:RelA and p50:RelB pathways, which play pivotal roles in vivo for the development and organization of lymphoid structures. Our genetic, cellular, and molecular evidence points toward a model of LT-mediated NF-κB regulation in which p105/p50 and p100/p52 have distinct and coordinating molecular specificities but differ in the upstream signaling pathways that regulate them.
机译:最近的研究表明,淋巴毒素/淋巴毒素β受体(LT)/LTβR系统激活涉及IκB激酶1 / IκB激酶α(IKK1 /IKKα)和NF- κB诱导激酶(NIK)指导nfκb2蛋白p100加工以产生RelB:p52复合物。尽管有生化证据,但LT-,RelB-,p52缺陷小鼠表现出差异的表型。现在我们证明p105 / p50也构成LTβR信号传导的重要途径。我们的研究表明,p50或p52缺陷的小鼠腹股沟淋巴结(LNs)形成有缺陷,但是LT缺陷小鼠中见到的淋巴结形成和脾微结构的完全缺陷仅在这两种缺陷小鼠中得以概括。 p50和p52。生化方面,我们不仅发现LTβR信号传导同时包含p50和p52的NF-κB活性,而且单次敲除扰动了LTβR参与的NF-κB复合物的诱导。重要的是,LTβR可以额外激活特征较少的p52:RelA和p50:RelB途径,它们在体内对于淋巴结构的发展和组织起着关键作用。我们的遗传,细胞和分子证据均指向LT介导的NF-κB调节模型,其中p105 / p50和p100 / p52具有不同且协调的分子特异性,但在调节它们的上游信号通路中却有所不同。

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