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SHP-1 phosphatase acts as a coactivator of PCK1 transcription to control gluconeogenesis

Amit Kumar, Michael Schwab, Beisy Laborit Labrada, Maruhen Amir Datsch Silveira, Marilyn Goudreault, Eric Fournier, Kerstin Bellmann, Nicole Beauchemin, Anne-Claude Gingras, Steve Bilodeau, Mathieu Laplante, Andre Marette

JOURNAL OF BIOLOGICAL CHEMISTRY(2023)

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Abstract
We previously reported that the protein-tyrosine phosphatase SHP-1 (PTPN6) negatively regulates insulin signaling, but its impact on hepatic glucose metabolism and systemic glucose control remains poorly understood. Here, we use coimmunoprecipitation assays, chromatin immunoprecipitation sequencing, in silico methods, and gluconeogenesis assay, and found a new mechanism whereby SHP-1 acts as a coactivator for transcription of the phosphoenolpyruvate carboxykinase 1 (PCK1) gene to increase liver gluconeogenesis. SHP-1 is recruited to the regulatory regions of the PCK1 gene and interacts with RNA polymerase II. The recruitment of SHP-1 to chromatin is dependent on its association with the transcription factor signal transducer and activator of transcription 5 (STAT5). Loss of SHP-1 as well as STAT5 decrease RNA polymerase II recruitment to the PCK1 promoter and consequently PCK1 mRNA levels leading to blunted gluconeogenesis. This work highlights a novel nuclear role of SHP-1 as a key transcriptional regulator of hepatic gluconeogenesis adding a new mechanism to the repertoire of SHP-1 functions in metabolic control.
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Key words
SHP-1/PTPN6,PCK1,gluconeogenesis,transcription,liver
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