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The De Camilli lab is interested in the cell biology of neuronal synapses. His studies on synaptic vesicle dynamics have contributed to the general fields of exocytosis and endocytosis. His research has provided insight into mechanisms of membrane fission and has revealed ways through which membrane-associated proteins can generate, sense and stabilize lipid bilayer curvature. His discovery and characterization of the role of phosphoinositide metabolism in the control of endocytosis have broad implications in the fields of phospholipid signaling and of membrane traffic. Building on this work, he has recently become interested in the role of membrane contact sites in the control of the homeostasis of bilayer lipids. His studies of synapses have also contributed to the elucidation of pathogenetic mechanisms of human diseases, with recent emphasis on Parkinson's disease.
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Papers共 600 篇Author StatisticsCo-AuthorSimilar Experts
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Lorena Benedetti, Ruolin Fan, Aubrey V. Weigel, Andrew S. Moore, Patrick R. Houlihan, Mark Kittisopikul, Grace Park, Alyson Petruncio, Philip M. Hubbard, Song Pang, C. Shan Xu, Harald F. Hess,
crossref(2024)
Nature Cell Biologyno. 2 (2024): 173-173
Proceedings of the National Academy of Sciences of the United States of Americano. 17 (2024): e2318943121-e2318943121
Journal of Cell Biologyno. 7 (2023)
Annual review of cell and developmental biologyno. 1 (2023): 409-434
MOLECULAR BIOLOGY OF THE CELLno. 2 (2023): 233-233
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