3.9 Article

NF-κB p65 Subunit Mediates Lipopolysaccharide-Induced Na+/I- Symporter Gene Expression by Involving Functional Interaction with the Paired Domain Transcription Factor Pax8

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MOLECULAR ENDOCRINOLOGY
卷 24, 期 9, 页码 1846-1862

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OXFORD UNIV PRESS INC
DOI: 10.1210/me.2010-0102

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  1. Fondo Nacional de Ciencia y Tecnologia (FONCYT)
  2. CONICET
  3. Secretaria de Ciencia y Tecnologia de la Universidad Nacional de Cordoba (SeCyT)
  4. Agencia Cordoba Ciencia

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The Gram-negative bacterial endotoxin lipopolysaccharide (LPS) elicits a variety of biological responses. Na+/I- symporter (NIS)-mediated iodide uptake is the main rate-limiting step in thyroid hormonogenesis. We have recently reported that LPS stimulates TSH-induced iodide uptake. Here, we further analyzed the molecular mechanism involved in the LPS-induced NIS expression in Fisher rat thyroid cell line 5 (FRTL-5) thyroid cells. We observed an increase in TSH-induced NIS mRNA expression in a dose-dependent manner upon LPS treatment. LPS enhanced the TSH-stimulated NIS promoter activity denoting the NIS-upstream enhancer region (NUE) as responsible for the stimulatory effects. We characterized a novel putative conserved kappa B site for the transcription factor nuclear factor-kappa B (NF-kappa B) within the NUE region. NUE contains two binding sites for the transcription factor paired box 8 (Pax8), main regulator of NIS transcription. A physical interaction was observed between the NF-kappa B p65 subunit and paired box 8 (Pax8), which appears to be responsible for the synergic effect displayed by these transcription factors on NIS gene transcription. Moreover, functional blockage of NF-kappa B signaling and site-directed mutagenesis of the kappa B cis-acting element abrogated LPS stimulation. Silencing expression of p65 confirmed its participation as an effector of LPS-induced NIS stimulation. Furthermore, chromatin immunoprecipitation corroborated that NIS is a novel target gene for p65 transactivation in response to LPS. Moreover, we were able to corroborate the LPS-stimulatory effect on thyroid cells in vivo in LPS-treated rats, supporting that thyrocytes are capable of responding to systemic infections. In conclusion, our results reveal a new mechanism involving p65 in the LPS-induced NIS expression, denoting a novel aspect in thyroid cell differentiation. (Molecular Endocrinology 24: 1846-1862, 2010)

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