Search Results - Marshall, Jamie L.
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Dystrophin and utrophin expression require sarcospan: loss of α7 integrin exacerbates a newly discovered muscle phenotype in sarcospan-null mice by Marshall, Jamie L., Chou, Eric, Oh, Jennifer, Kwok, Allan, Burkin, Dean J., Crosbie-Watson, Rachelle H.
Published 2012Text -
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Sarcospan integration into laminin-binding adhesion complexes that ameliorate muscular dystrophy requires utrophin and α7 integrin by Marshall, Jamie L., Oh, Jennifer, Chou, Eric, Lee, Joy A., Holmberg, Johan, Burkin, Dean J., Crosbie-Watson, Rachelle H.
Published 2015Text -
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Sarcospan Regulates Cardiac Isoproterenol Response and Prevents Duchenne Muscular Dystrophy–Associated Cardiomyopathy by Parvatiyar, Michelle S., Marshall, Jamie L., Nguyen, Reginald T., Jordan, Maria C., Richardson, Vanitra A., Roos, Kenneth P., Crosbie‐Watson, Rachelle H.
Published 2015Text -
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High levels of sarcospan are well tolerated and act as a sarcolemmal stabilizer to address skeletal muscle and pulmonary dysfunction in DMD by Gibbs, Elizabeth M., Marshall, Jamie L., Ma, Eva, Nguyen, Thien M., Hong, Grace, Lam, Jessica S., Spencer, Melissa J., Crosbie-Watson, Rachelle H.
Published 2016Text -
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Sarcospan-dependent Akt activation is required for utrophin expression and muscle regeneration by Marshall, Jamie L., Holmberg, Johan, Chou, Eric, Ocampo, Amber C., Oh, Jennifer, Lee, Joy, Peter, Angela K., Martin, Paul T., Crosbie-Watson, Rachelle H.
Published 2012Text -
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High Throughput Screening for Compounds That Alter Muscle Cell Glycosylation Identifies New Role for N-Glycans in Regulating Sarcolemmal Protein Abundance and Laminin Binding by Cabrera, Paula V., Pang, Mabel, Marshall, Jamie L., Kung, Raymond, Nelson, Stanley F., Stalnaker, Stephanie H., Wells, Lance, Crosbie-Watson, Rachelle H., Baum, Linda G.
Published 2012Text -
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Differentiation-related glycan epitopes identify discrete domains of the muscle glycocalyx by McMorran, Brian J, McCarthy, Francis E, Gibbs, Elizabeth M, Pang, Mabel, Marshall, Jamie L, Nairn, Alison V, Moremen, Kelley W, Crosbie-Watson, Rachelle H, Baum, Linda G
Published 2016Text -
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Identification of a Novel Deep Intronic Mutation in CAPN3 Presenting a Promising Target for Therapeutic Splice Modulation by Hu, Ying, Mohassel, Payam, Donkervoort, Sandra, Yun, Pomi, Bolduc, Véronique, Ezzo, Daniel, Dastgir, Jahannaz, Marshall, Jamie L., Lek, Monkol, MacArthur, Daniel G., Foley, A. Reghan, Bönnemann, Carsten G.
Published 2019Text -
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Disease-associated astrocytes in Alzheimer’s disease and aging by Habib, Naomi, McCabe, Cristin, Medina, Sedi, Varshavsky, Miriam, Kitsberg, Daniel, Dvir-Szternfeld, Raz, Green, Gilad, Dionne, Danielle, Nguyen, Lan, Marshall, Jamie L., Chen, Fei, Zhang, Feng, Kaplan, Tommy, Regev, Aviv, Schwartz, Michal
Published 2020Text -
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Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation by Subramanian, Ayshwarya, Sidhom, Eriene-Heidi, Emani, Maheswarareddy, Vernon, Katherine, Sahakian, Nareh, Zhou, Yiming, Kost-Alimova, Maria, Slyper, Michal, Waldman, Julia, Dionne, Danielle, Nguyen, Lan T., Weins, Astrid, Marshall, Jamie L., Rosenblatt-Rosen, Orit, Regev, Aviv, Greka, Anna
Published 2019Text -
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Stabilization of the cardiac sarcolemma by sarcospan rescues DMD-associated cardiomyopathy by Parvatiyar, Michelle S., Brownstein, Alexandra J., Kanashiro-Takeuchi, Rosemeire M., Collado, Judd R., Dieseldorff Jones, Karissa M., Gopal, Jay, Hammond, Katherine G., Marshall, Jamie L., Ferrel, Abel, Beedle, Aaron M., Chamberlain, Jeffrey S., Renato Pinto, Jose, Crosbie, Rachelle H.
Published 2019Text -
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MicroRNA-486–dependent modulation of DOCK3/PTEN/AKT signaling pathways improves muscular dystrophy–associated symptoms by Alexander, Matthew S., Casar, Juan Carlos, Motohashi, Norio, Vieira, Natássia M., Eisenberg, Iris, Marshall, Jamie L., Gasperini, Molly J., Lek, Angela, Myers, Jennifer A., Estrella, Elicia A., Kang, Peter B., Shapiro, Frederic, Rahimov, Fedik, Kawahara, Genri, Widrick, Jeffrey J., Kunkel, Louis M.
Published 2014Text -
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High-resolution Slide-seqV2 spatial transcriptomics enables discovery of disease-specific cell neighborhoods and pathways by Marshall, Jamie L., Noel, Teia, Wang, Qingbo S., Chen, Haiqi, Murray, Evan, Subramanian, Ayshwarya, Vernon, Katherine A., Bazua-Valenti, Silvana, Liguori, Katie, Keller, Keith, Stickels, Robert R., McBean, Breanna, Heneghan, Rowan M., Weins, Astrid, Macosko, Evan Z., Chen, Fei, Greka, Anna
Published 2022Text