Søgeresultater - Lansbury, Peter
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Improving binding specificity of pharmacological chaperones that target mutant superoxide dismutase-1 linked to familial amyotrophic lateral sclerosis using computational methods af Nowak, Richard J., Cuny, Gregory D., Choi, Sungwoon, Lansbury, Peter T., Ray, Soumya S.
Udgivet 2010Text -
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Acceleration of oligomerization, not fibrillization, is a shared property of both α-synuclein mutations linked to early-onset Parkinson's disease: Implications for pathogenesis and... af Conway, Kelly A., Lee, Seung-Jae, Rochet, Jean-Christophe, Ding, Tomas T., Williamson, Robin E., Lansbury, Peter T.
Udgivet 2000Text -
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Membrane-associated farnesylated UCH-L1 promotes α-synuclein neurotoxicity and is a therapeutic target for Parkinson's disease af Liu, Zhihua, Meray, Robin K., Grammatopoulos, Tom N., Fredenburg, Ross A., Cookson, Mark R., Liu, Yichin, Logan, Todd, Lansbury, Peter T.
Udgivet 2009Text -
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Structural basis for conformational plasticity of the Parkinson's disease-associated ubiquitin hydrolase UCH-L1 af Das, Chittaranjan, Hoang, Quyen Q., Kreinbring, Cheryl A., Luchansky, Sarah J., Meray, Robin K., Ray, Soumya S., Lansbury, Peter T., Ringe, Dagmar, Petsko, Gregory A.
Udgivet 2006Text -
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Phosphorylation at Ser-129 but Not the Phosphomimics S129E/D Inhibits the Fibrillation of α-Synuclein af Paleologou, Katerina E., Schmid, Adrian W., Rospigliosi, Carla C., Kim, Hai-Young, Lamberto, Gonzalo R., Fredenburg, Ross A., Lansbury, Peter T., Fernandez, Claudio O., Eliezer, David, Zweckstetter, Markus, Lashuel, Hilal A.
Udgivet 2008Text -
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Dissociation of amyloid fibrils of α-synuclein and transthyretin by pressure reveals their reversible nature and the formation of water-excluded cavities af Foguel, Débora, Suarez, Marisa C., Ferrão-Gonzales, Astria D., Porto, Thais C. R., Palmieri, Leonardo, Einsiedler, Carla M., Andrade, Leonardo R., Lashuel, Hilal A., Lansbury, Peter T., Kelly, Jeffery W., Silva, Jerson L.
Udgivet 2003Text -
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β-Glucocerebrosidase Modulators Promote Dimerization of β-Glucocerebrosidase and Reveal an Allosteric Binding Site af Zheng, Jianbin, Chen, Long, Skinner, Owen S., Ysselstein, Daniel, Remis, Jonathan, Lansbury, Peter, Skerlj, Renato, Mrosek, Michael, Heunisch, Ursula, Krapp, Stephan, Charrow, Joel, Schwake, Michael, Kelleher, Neil L., Silverman, Richard B., Krainc, Dimitri
Udgivet 2018Text -
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Stress-induced cellular clearance is mediated by SNARE protein ykt6 and disrupted by a-synuclein af Cuddy, Leah K., Wani, Willayat Y., Morella, Martino L., Pitcairn, Caleb, Tsutsumi, Kotaro, Fredriksen, Kristina, Justman, Craig J., Grammatopoulos, Tom N., Belur, Nandkishore R., Zunke, Friederike, Subramanian, Aarthi, Affaneh, Amira, Lansbury, Peter T., Mazzulli, Joseph R.
Udgivet 2019Text -
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Dopamine-modified α-synuclein blocks chaperone-mediated autophagy af Martinez-Vicente, Marta, Talloczy, Zsolt, Kaushik, Susmita, Massey, Ashish C., Mazzulli, Joseph, Mosharov, Eugene V., Hodara, Roberto, Fredenburg, Ross, Wu, Du-Chu, Follenzi, Antonia, Dauer, William, Przedborski, Serge, Ischiropoulos, Harry, Lansbury, Peter T., Sulzer, David, Cuervo, Ana Maria
Udgivet 2008Text -
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Design, Synthesis, and Biological Evaluation of a Series of Oxazolone Carboxamides as a Novel Class of Acid Ceramidase Inhibitors af Caputo, Samantha, Di Martino, Simona, Cilibrasi, Vincenzo, Tardia, Piero, Mazzonna, Marco, Russo, Debora, Penna, Ilaria, Summa, Maria, Bertozzi, Sine Mandrup, Realini, Natalia, Margaroli, Natasha, Migliore, Marco, Ottonello, Giuliana, Liu, Min, Lansbury, Peter, Armirotti, Andrea, Bertorelli, Rosalia, Ray, Soumya S., Skerlj, Renato, Scarpelli, Rita
Udgivet 2020Text -
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A randomized single and multiple ascending dose study in healthy volunteers of LTI‐291, a centrally penetrant glucocerebrosidase activator af den Heijer, Jonas M., Kruithof, Annelieke C., van Amerongen, Guido, de Kam, Marieke L., Thijssen, Eva, Grievink, Hendrika W., Moerland, Matthijs, Walker, Mike, Been, Kees, Skerlj, Renato, Justman, Craig, Dudgeon, Lindsay, Lansbury, Peter, Cullen, Valerie C., Hilt, Dana C., Groeneveld, Geert Jan
Udgivet 2021Text