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IL-13 and calpain-14 suppress the expression of SPINK7 by regulating OVOL1 in eosinophilic esophagitis
Nurit P. Azouz, Andrea M. Klingler, Sierra S. Beach, Kalen Rossey, Mark Rochman, Misu Paul, Julie M. Caldwell, Michael Brusilovsky, Alexander T. Dwyer, Xiaoting Chen, Daniel Miller, Carmy Forney, Leah C. Kottyan, Matthew T. Weirauch, Marc E. Rothenberg
Nurit P. Azouz, Andrea M. Klingler, Sierra S. Beach, Kalen Rossey, Mark Rochman, Misu Paul, Julie M. Caldwell, Michael Brusilovsky, Alexander T. Dwyer, Xiaoting Chen, Daniel Miller, Carmy Forney, Leah C. Kottyan, Matthew T. Weirauch, Marc E. Rothenberg
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Research Article Gastroenterology Immunology Inflammation

IL-13 and calpain-14 suppress the expression of SPINK7 by regulating OVOL1 in eosinophilic esophagitis

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Abstract

Eosinophilic esophagitis (EoE) is a type 2 allergic disease characterized by esophageal inflammation and epithelial cell dysfunction. The acquired loss of the anti–serine protease of kazal type 7 (anti-SPINK7) in the squamous epithelium of the esophagus has a causal role in EoE pathogenesis. However, there is a limited understanding of the factors that regulate its expression and responsiveness to inflammatory stimuli. Herein, we have identified the transcription factor, ovo like transcriptional repressor 1 (OVOL1), as an esophageal selective gene product that regulates SPINK7 promoter activity. Overexpression of OVOL1 increased SPINK7 expression, whereas its depletion decreased SPINK7 expression, impaired epithelial barrier, and increased production of the proatopy cytokine thymic stromal lymphopoietin (TSLP). Stimulation with IL-13 abrogated the nuclear translocation of OVOL1 and promoted enhanced degradation of OVOL1 protein. This effect of IL-13 was dependent on the esophageal specific cysteine protease calpain-14 at least in part. Analysis of human esophageal biopsies demonstrated that the expression of esophageal OVOL1 correlated with SPINK7 transcript expression and was lost as a function of EoE disease activity. In summary, our study identifies key regulatory mechanisms in EoE pathogenesis, demonstrating that OVOL1 promotes SPINK7 transcription, whereas IL-13 suppresses this pathway in EoE.

Authors

Nurit P. Azouz, Andrea M. Klingler, Sierra S. Beach, Kalen Rossey, Mark Rochman, Misu Paul, Julie M. Caldwell, Michael Brusilovsky, Alexander T. Dwyer, Xiaoting Chen, Daniel Miller, Carmy Forney, Leah C. Kottyan, Matthew T. Weirauch, Marc E. Rothenberg

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Figure 2

OVOL1 binding to the SPINK7 promoter region.

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OVOL1 binding to the SPINK7 promoter region.
(A) Nano-luciferase activit...
(A) Nano-luciferase activity in lysates from cells transfected with SPINK7 promoter, firefly plasmid, and plasmids encoding for the indicated transcription factors normalized to control lysates from cells transfected with SPINK7 promoter, firefly plasmid, and an empty plasmid. (B) Analysis of the proximal human SPINK7 promoter sequence identified 4 potential OVOL1 binding sites. Transcription Start Site +1. (C) Nano-luciferase activity in lysates cotransfected with either OVOL1 or a control plasmid and with SPINK7 promoter deletion constructs. (D) Representative results from EMSA experiments using recombinant human OVOL1 protein. (E) Representative results from EMSA experiment using nuclear extracts from HEK-293T cells transfected with OVOL1 plasmid or a control plasmid. Cold competitors were added in concentrations of 1×, 2×, and 5× compared with the fluorescent probe (presented as 1, 2, and 5). (F) Nano-luciferase activity in lysates cotransfected with OVOL1 or a control plasmid (UT) and with the SPINK7 promoter with either mutated OVOL1 binding site 1 or mutated OVOL1 binding site 2 or WT SPINK7 promoter. Cells were either left untreated or treated with FICZ (1 μM). P values were calculated by 1-way ANOVA.

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