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  • Mukhopadhyay Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/mukhopadhyay-lab

    Mukhopadhyay Lab research aims to understand how the primary cilium regulates downstream pathways to ultimately drive morphogenesis in different tissues. We undertake a multi-pronged approach including proteomics, cell biology, biochemistry, reverse genetics, and generation of innovative mouse models to study regulation of signaling pathways by cilia in in cellular and organismal contexts.

  • Meet the PI | Mitsche Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/mitsche-lab/about-us/meet-pi

    Skip to main content Medium length placeholder heading. Matthew Mitsche, Ph.D. Assistant Professor, Center for Human Nutrition Molecular Genetics Matthew A. Mitsche earned his Ph.D. in 2012 from Boston University in Biophysics and Physiology where he studied the behavior of apolipoprotein fragments a…

  • Zaki Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/zaki-lab

    Zaki Lab's research focuses on the the study of gastrointestinal inflammation and cancer.

  • Publications for Matthew Mitsche, Ph.D. | Mitsche Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/mitsche-lab/publications

    Skip to main content Publications for Matthew Mitsche, Ph.D. Phospholipase Domain-containing Protein 3 Promotes Transfers of Essential Fatty Acids from Triglycerides to Phospholipids in Hepatic Lipid Droplets. Mitsche MA, Hobbs HH, Cohen JC 2018 Mar J. Biol. Chem. Relative roles of ABCG5/ABCG8 in liv…

  • Roberts Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/roberts-lab

    Roberts Lab focuses on understanding the cellular and circuit mechanisms for behavioral learning, learning from social experiences and from example.

  • Targeting Steroid Receptor Coactivators | Minna Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/minna-lab/research/targeting-steroid-receptor-coactivators

    Minna lab's Targeting Steroid Receptor Coactivators

  • Research | Mitsche Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/mitsche-lab/research

    Skip to main content Research The Mitsche lab studies how alteration of lipid flux effects the progression of metabolic syndrome, including fatty liver disease, cardiovascular disease and diabetes. The lab combines cutting-edge mass spectrometry technology with biochemistry, molecular biology, and ge…

  • Publications | DeBose-Boyd Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/debose-boyd-lab/publications

    Read Dr. DeBose-Boyd's publications

  • About Us | Mitsche Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/mitsche-lab/about-us

    Skip to main content About Us The Mitsche lab uses mass spectrometry and stable isotope labeling to understand the progression of metabolic syndrome, in particular fatty liver and cardiovascular disease. Our primary focus is understanding the link between alterations in fat composition disease. We ai…

  • Covid-19 and Cell Line Models | Minna Lab | UT Southwestern, Dallas, Texas

    https://labs.utsouthwestern.edu/minna-lab/research/covid-19-and-cell-line-models

    Minna Lab's Covid-19 and Cell Line Models