Peter Penzes

Affiliations: 
Northwestern University, Evanston, IL 
Area:
Synaptic structural plasticity
Website:
http://www.medschool.northwestern.edu/penzes/
Google:
"Peter Penzes"
Mean distance: 14.01 (cluster 11)
 
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Publications

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Zhang S, Zhang H, Forrest MP, et al. (2023) Multiple genes in a single GWAS risk locus synergistically mediate aberrant synaptic development and function in human neurons. Cell Genomics. 3: 100399
Forrest MP, Penzes P. (2023) Mechanisms of copy number variants in neuropsychiatric disorders: From genes to therapeutics. Current Opinion in Neurobiology. 82: 102750
Yoon S, Santos MD, Forrest MP, et al. (2023) Early developmental deletion of forebrain Ank2 causes seizure-related phenotypes by reshaping the synaptic proteome. Cell Reports. 42: 112784
Piguel NH, Sanders SS, De Simone FI, et al. (2023) Palmitoylation controls the stability of 190 kDa ankyrin-G in dendritic spines and is regulated by ZDHHC8 and lithium. Frontiers in Molecular Neuroscience. 16: 1144066
Forrest MP, Dos Santos M, Piguel NH, et al. (2023) Rescue of neuropsychiatric phenotypes in a mouse model of 16p11.2 duplication syndrome by genetic correction of an epilepsy network hub. Nature Communications. 14: 825
Zaccard CR, Gippo I, Song A, et al. (2023) Dendritic spinule-mediated structural synaptic plasticity: Implications for development, aging, and psychiatric disease. Frontiers in Molecular Neuroscience. 16: 1059730
Unda BK, Chalil L, Yoon S, et al. (2023) Impaired OTUD7A-dependent Ankyrin regulation mediates neuronal dysfunction in mouse and human models of the 15q13.3 microdeletion syndrome. Molecular Psychiatry
Parnell E, Culotta L, Forrest MP, et al. (2022) Excitatory Dysfunction Drives Network and Calcium Handling Deficits in 16p11.2 Duplication Schizophrenia Induced Pluripotent Stem Cell-Derived Neurons. Biological Psychiatry
Parnell E, Voorn RA, Martin-de-Saavedra MD, et al. (2022) A developmental delay linked missense mutation in Kalirin-7 disrupts protein function and neuronal morphology. Frontiers in Molecular Neuroscience. 15: 994513
Burgdorf JS, Yoon S, Dos Santos M, et al. (2022) An IGFBP2-derived peptide promotes neuroplasticity and rescues deficits in a mouse model of Phelan-McDermid syndrome. Molecular Psychiatry
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