mTOR Complex 2 Regulates Proper Turnover of Insulin Receptor Substrate-1 via the Ubiquitin Ligase Subunit Fbw8
Kim, Sung Jin, DeStefano, Michael A., Oh, Won Jun, Wu, Chang-chih, Vega-Cotto, Nicole M., Finlan, Monica, Liu, Dou, Su, Bing, Jacinto, Estela
Published in Molecular cell (28.12.2012)
Published in Molecular cell (28.12.2012)
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mTORC2 Responds to Glutamine Catabolite Levels to Modulate the Hexosamine Biosynthesis Enzyme GFAT1
Moloughney, Joseph G., Kim, Peter K., Vega-Cotto, Nicole M., Wu, Chang-Chih, Zhang, Sisi, Adlam, Matthew, Lynch, Thomas, Chou, Po-Chien, Rabinowitz, Joshua D., Werlen, Guy, Jacinto, Estela
Published in Molecular cell (01.09.2016)
Published in Molecular cell (01.09.2016)
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mTORC2 modulates the amplitude and duration of GFAT1 Ser-243 phosphorylation to maintain flux through the hexosamine pathway during starvation
Moloughney, Joseph G., Vega-Cotto, Nicole M., Liu, Sharon, Patel, Chadni, Kim, Peter K., Wu, Chang-chih, Albaciete, Danielle, Magaway, Cedric, Chang, Austin, Rajput, Swati, Su, Xiaoyang, Werlen, Guy, Jacinto, Estela
Published in The Journal of biological chemistry (19.10.2018)
Published in The Journal of biological chemistry (19.10.2018)
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Abstract 21: The mTORC2 target Akt is regulated in response to glutamine metabolite levels
Jacinto, Estela, Moloughney, Joseph, Kim, Peter K., Vega-Cotto, Nicole M., Wu, Chang-Chih, Lynch, Thomas, Zhang, Sisi, Adlam, Matthew, Guntaka, Sai, Chou, Po-Chien, Rabinowitz, Joshua D., Werlen, Guy
Published in Cancer research (Chicago, Ill.) (15.07.2016)
Published in Cancer research (Chicago, Ill.) (15.07.2016)
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Abstract 2441: mTOR complex 2 modulates glycosylation of CD147 via the hexosamine biosynthetic pathway
Wu, Chang-Chih, Lynch, Thomas, Moloughney, Joseph, Navia, Aixa, Ibironke, Olufunmilola, Chou, Po-Chien, Vega-Cotto, Nicole M., Zhang, Sisi, Rabinowitz, Joshua, Werlen, Guy, Jacinto, Estela
Published in Cancer research (Chicago, Ill.) (01.10.2014)
Published in Cancer research (Chicago, Ill.) (01.10.2014)
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