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Protein misfolding and human disease
Conversion of genetic information into functional protein products requires the proper folding of polypeptide chains in the crowded intracellular environment. Disruption of these folding pathways through exposure to either environmental or genetic factors is associated with numerous human diseases – collectively referred to as protein misfolding diseases. Using proteomic, biophysical and cell biological approaches, work in the Wiseman lab is directed towards understanding the physical, chemical and biological factors that dictate intracellular protein folding as it relates to human disease. Currently, we have three ongoing projects focused on protein folding in vivo: 1) development of novel biosensors that report on protein folding in the complex intracellular environment; 2) characterization of mitochondrial folding efficiency in the context of neurodegenerative disease; and 3) elucidation of the impact of intracellular signaling pathways on protein folding and trafficking in the early secretory pathway.
Protein misfolding and human disease
Conversion of genetic information into functional protein products requires the proper folding of polypeptide chains in the crowded intracellular environment. Disruption of these folding pathways through exposure to either environmental or genetic factors is associated with numerous human diseases – collectively referred to as protein misfolding diseases. Using proteomic, biophysical and cell biological approaches, work in the Wiseman lab is directed towards understanding the physical, chemical and biological factors that dictate intracellular protein folding as it relates to human disease. Currently, we have three ongoing projects focused on protein folding in vivo: 1) development of novel biosensors that report on protein folding in the complex intracellular environment; 2) characterization of mitochondrial folding efficiency in the context of neurodegenerative disease; and 3) elucidation of the impact of intracellular signaling pathways on protein folding and trafficking in the early secretory pathway.
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论文共 184 篇作者统计合作学者相似作者
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Metin Aksu,Kevin Kaschke,Joseph R Podojil,MingYi Chiang, Ian Steckler, Kody Bruce,Andrew C Cogswell, Gwen Schulz,Jeffery W Kelly,R Luke Wiseman,Stephen D Miller,Brian Popko,Yanan Chen
Gliano. 6 (2025): 1241-1257
Jie Yang,Kelsey R Baron, Daniel E Pride,Anette Schneemann, Xiaoyan Guo, Wenqian Chen, Albert S Song, Giovanni Aviles,Martin Kampmann,R Luke Wiseman,Gabriel C Lander
Nature structural & molecular biologyno. 4 (2025): 768-768
Brain a journal of neurologyno. 6 (2025): 1978-1993
Kelsey R Baron, Samantha Oviedo, Sophia Krasny,Mashiat Zaman, Rama Aldakhlallah, Prerona Bora, Prakhyat Mathur,Gerald Pfeffer,Michael J Bollong,Timothy E Shutt,Danielle A Grotjahn,R Luke Wiseman
eLife (2025)
Advances in experimental medicine and biology (2025): 401-407
Gabriel M Kline, Lisa Boinon, Adrian Guerrero, Sergei Kutseikin, Gabrielle Cruz, Marnie P Williams, Ryan J Paxman, William E Balch, Jeffery W Kelly,Tingwei Mu,R Luke Wiseman
bioRxiv the preprint server for biology (2025)
Coral Del Mar Alicea Pauneto,Brian P Riesenberg,Evelyn Gandy,Andrew S Kennedy,Elizabeth G Hunt,Katie E Hurst, Genevieve Clutton, Jennifer L Modliszewski,Jennifer L Guerriero,Brian C Miller, Robert J Esther, Stergios J Moschos,Justin J Milner,R Luke Wiseman,Jessica Thaxton
Regular and Young Investigator Award Abstracts (2024)
Francesco Gentile,Thierry Touvier,Francesca Veneri, Noemie Sorgiati, Chiara D'Aprile, Letizia Morelli,Anke Claessens,Cinzia Ferri,Serena Valenzano,Ubaldo Del Carro,Randal J. Kaufman,Phu Duong,R. Luke Wiseman,John Svaren,Michael E. Shy,Maurizio D'Antonio
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#Papers: 184
#Citation: 8722
H-Index: 46
G-Index: 92
Sociability: 6
Diversity: 3
Activity: 58
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