Literature DB >> 15951441

NIBP, a novel NIK and IKK(beta)-binding protein that enhances NF-(kappa)B activation.

Wen-Hui Hu1, Julie S Pendergast, Xian-Ming Mo, Roberta Brambilla, Valerie Bracchi-Ricard, Fang Li, Winston M Walters, Bas Blits, Li He, Sandra M Schaal, John R Bethea.   

Abstract

The transcription factor NF-kappaB plays an important role in both physiological and pathological events in the central nervous system. Nevertheless, the mechanisms of NF-kappaB-mediated regulation of gene expression, and the signaling molecules participating in the NF-kappaB pathway in the central nervous system are, to date, poorly understood. To identify such molecules, we conducted a yeast two-hybrid screen of a human brain cDNA library using NIK as bait. As a result, we identified a novel NIK and IKK(beta) binding protein designated NIBP that is mainly expressed in brain, muscle, heart, and kidney. Interestingly, low levels of expression were detected in immune tissues such as spleen, thymus, and peripheral blood leukocytes, where NF-kappaB is known to modulate immune function. We demonstrated by immunohistochemistry that NIBP expression in the brain is localized to neurons. NIBP physically interacts with NIK, IKK(beta), but not IKK(alpha) or IKK(gamma). NIBP overexpression potentiates tumor necrosis factor-alpha-induced NF-kappaB activation through increased phosphorylation of the IKK complex and its downstream I(kappa)B(alpha) and p65 substrates. Finally, knockdown of NIBP expression by small interfering RNA reduces tumor necrosis factor-alpha-induced NF-kappaB activation, prevents nerve growth factor-induced neuronal differentiation, and decreases Bcl-xL gene expression in PC12 cells. Our data demonstrate that NIBP, by interacting with NIK and IKK(beta), is a new enhancer of the cytokine-induced NF-(kappa)B signaling pathway. Because of its neuronal expression, we propose that NIBP may be a potential target for modulating the NF-(kappa)B signaling cascade in neuronal pathologies dependent upon abnormal activation of this pathway.

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Year:  2005        PMID: 15951441      PMCID: PMC3707486          DOI: 10.1074/jbc.M501670200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  54 in total

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Review 3.  Signaling to NF-kappaB.

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4.  Receptor-specific signaling for both the alternative and the canonical NF-kappaB activation pathways by NF-kappaB-inducing kinase.

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5.  Regulation of the NF-kappaB-inducing kinase by tumor necrosis factor receptor-associated factor 3-induced degradation.

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9.  TNAP, a novel repressor of NF-kappaB-inducing kinase, suppresses NF-kappaB activation.

Authors:  Wen-Hui Hu; Xian-Ming Mo; Winston M Walters; Roberta Brambilla; John R Bethea
Journal:  J Biol Chem       Date:  2004-06-18       Impact factor: 5.157

10.  Transient and selective NF-kappa B p65 serine 536 phosphorylation induced by T cell costimulation is mediated by I kappa B kinase beta and controls the kinetics of p65 nuclear import.

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Journal:  J Immunol       Date:  2004-05-15       Impact factor: 5.422

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  54 in total

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Review 2.  30 Years of NF-κB: A Blossoming of Relevance to Human Pathobiology.

Authors:  Qian Zhang; Michael J Lenardo; David Baltimore
Journal:  Cell       Date:  2017-01-12       Impact factor: 41.582

3.  Expression and function of NIK- and IKK2-binding protein (NIBP) in mouse enteric nervous system.

Authors:  Y Zhang; D Bitner; A A Pontes Filho; F Li; S Liu; H Wang; F Yang; S Adhikari; J Gordon; S Srinivasan; W Hu
Journal:  Neurogastroenterol Motil       Date:  2013-09-09       Impact factor: 3.598

4.  NF-κB signalling requirement for brain myelin formation is shown by genotype/MRI phenotype correlations in patients with Xq28 duplications.

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Journal:  Eur J Hum Genet       Date:  2012-07-18       Impact factor: 4.246

5.  NFκB signaling regulates embryonic and adult neurogenesis.

Authors:  Yonggang Zhang; Wenhui Hu
Journal:  Front Biol (Beijing)       Date:  2012-08

6.  Tumor necrosis factor-related weak inducer of apoptosis augments matrix metalloproteinase 9 (MMP-9) production in skeletal muscle through the activation of nuclear factor-kappaB-inducing kinase and p38 mitogen-activated protein kinase: a potential role of MMP-9 in myopathy.

Authors:  Hong Li; Ashwani Mittal; Pradyut K Paul; Mukesh Kumar; Daya S Srivastava; Suresh C Tyagi; Ashok Kumar
Journal:  J Biol Chem       Date:  2008-12-11       Impact factor: 5.157

7.  Identification of mutations in TRAPPC9, which encodes the NIK- and IKK-beta-binding protein, in nonsyndromic autosomal-recessive mental retardation.

Authors:  Asif Mir; Liana Kaufman; Abdul Noor; Mahdi M Motazacker; Talal Jamil; Matloob Azam; Kimia Kahrizi; Muhammad Arshad Rafiq; Rosanna Weksberg; Tanveer Nasr; Farooq Naeem; Andreas Tzschach; Andreas W Kuss; Gisele E Ishak; Dan Doherty; H Hilger Ropers; A James Barkovich; Hossein Najmabadi; Muhammad Ayub; John B Vincent
Journal:  Am J Hum Genet       Date:  2009-12       Impact factor: 11.025

8.  A truncating mutation of TRAPPC9 is associated with autosomal-recessive intellectual disability and postnatal microcephaly.

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Journal:  Am J Hum Genet       Date:  2009-12       Impact factor: 11.025

9.  Combination of linkage mapping and microarray-expression analysis identifies NF-kappaB signaling defect as a cause of autosomal-recessive mental retardation.

Authors:  Orianne Philippe; Marlène Rio; Astrid Carioux; Jean-Marc Plaza; Philippe Guigue; Florence Molinari; Nathalie Boddaert; Christine Bole-Feysot; Patrick Nitschke; Asma Smahi; Arnold Munnich; Laurence Colleaux
Journal:  Am J Hum Genet       Date:  2009-12       Impact factor: 11.025

10.  Genome-wide discovery of maternal effect variants.

Authors:  Jack W Kent; Charles P Peterson; Thomas D Dyer; Laura Almasy; John Blangero
Journal:  BMC Proc       Date:  2009-12-15
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