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Fitting a xenobiotic receptor into cell homeostasis: how the dioxin receptor interacts with TGFbeta signaling
Aurea Gomez-Duran1, Jose M Carvajal-Gonzalez, Sonia Mulero-Navarro
1Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias, Universidad de Extremadura, Badajoz, Spain.
Abstract:
As our knowledge on the mechanisms that control cell function increases, more complex signaling pathways and quite intricate cross-talks among regulatory proteins are discovered. Establishing accurate interactions between cellular networks is essential for a healthy cell and different alterations in signaling are known to underline human disease. Transforming growth factor beta (TGFbeta) is an extracellular cytokine that regulates such critical cellular responses as proliferation, apoptosis, differentiation, angiogenesis and migration, and it is assumed that the latency-associated protein LTBP-1 plays a relevant role in TGFbeta targeting and activation in the extracellular matrix (ECM). The dioxin receptor (AhR) is a unique intracellular protein long studied because of its critical role in xenobiotic-induced toxicity and carcinogenesis. Yet, a large set of studies performed in cellular systems and in vivo animal models have suggested important xenobiotic-independent functions for AhR in cell proliferation, differentiation and migration and in tissue homeostasis. Remarkably, AhR activity converges with TGFbeta-dependent signaling through LTBP-1 since cells lacking AhR expression have phenotypic alterations that can be explained, at least in part, by the coordinated regulation of both proteins. Here, we will discuss the existence of functional interactions between AhR and TGFbeta signaling. We will focus on regulatory and functional aspects by analyzing how AhR status determines TGFbeta activity and by proposing a mechanism through which LTBP-1, a novel AhR target gene, mediates such effects. We will integrate ECM proteases in the AhR-LTBP-1-TGFbeta axis and suggest a model that could help explain some in vivo phenotypes associated to AhR deficiency.
Insights
The dioxin receptor (AhR) regulates Transforming Growth Factor beta (TGFbeta) signaling. AhR influences TGFbeta activity, potentially through LTBP-1, impacting cell functions and tissue homeostasis.
Area of Science:
- Cellular Biology
- Molecular Signaling
- Biochemistry
Background:
- Cellular signaling pathways are crucial for health; dysregulation underlies disease.
- Transforming Growth Factor beta (TGFbeta) controls vital cell responses like proliferation and migration.
- The dioxin receptor (AhR) has known roles in toxicity and emerging roles in cell regulation.
Purpose of the Study:
- To investigate the functional interactions between AhR and TGFbeta signaling pathways.
- To elucidate how AhR status influences TGFbeta activity.
- To propose a mechanism involving LTBP-1 and ECM proteases in AhR-mediated TGFbeta regulation.
Main Methods:
- Analysis of cellular systems and in vivo animal models.
- Examination of phenotypic alterations in cells lacking AhR expression.
- Integration of data on ECM proteases within the AhR-LTBP-1-TGFbeta axis.
Main Results:
- AhR activity converges with TGFbeta-dependent signaling.
- LTBP-1 is identified as a novel AhR target gene.
- A model is proposed for AhR-LTBP-1-TGFbeta interactions influencing cell phenotypes.
Conclusions:
- AhR plays a significant role in regulating TGFbeta signaling.
- LTBP-1 mediates the effects of AhR on TGFbeta activity.
- The proposed model integrates ECM proteases to explain AhR deficiency phenotypes.
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