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Neuron|April 8, 2021
Tackling neurodegenerative diseases with genomic engineering: A new stem cell initiative from the NIHDaniel M Ramos, William C Skarnes, Andrew B Singleton, et al.Human Molecular Genetics|October 2, 2003
RING finger 1 mutations in Parkin produce altered localization of the proteinMark R Cookson, Paul J Lockhart, Chris McLendon, et al.Biorxiv : the Preprint Server for Biology|June 21, 2024
Opposing actions of JIP4 and RILPL1 provide antagonistic motor force to dynamically regulate membrane reformation during lysosomal tubulation/sorting driven by LRRK2Luis Bonet-Ponce, Tsion Tegicho, Alexandra Beilina, et al.Molecular Genetics and Metabolism|July 12, 2011
Aggregation of α-synuclein in brain samples from subjects with glucocerebrosidase mutationsJae Hyuk Choi, Barbara Stubblefield, Mark R Cookson, et al.Human Molecular Genetics|November 28, 2017
LRRK2 phosphorylates membrane-bound Rabs and is activated by GTP-bound Rab7L1 to promote recruitment to the trans-Golgi networkZhiyong Liu, Nicole Bryant, Ravindran Kumaran, et al.Journal of Neurochemistry|November 7, 2019
Leucine-rich repeat kinase 2 and lysosomal dyshomeostasis in Parkinson diseaseSusanna Cogo, Claudia Manzoni, Patrick A Lewis, et al.Journal of Neurochemistry|September 17, 2015
Leucine-rich repeat kinase 2 interacts with p21-activated kinase 6 to control neurite complexity in mammalian brainLaura Civiero, Maria Daniela Cirnaru, Alexandra Beilina, et al.Chemistry & Biology|July 2, 2014
Genetic, structural, and molecular insights into the function of ras of complex proteins domainsLaura Civiero, Sybille Dihanich, Patrick A Lewis, et al.Frontiers in Aging|May 11, 2023
Variant biomarker discovery using mass spectrometry-based proteogenomicsLuke Reilly, Sahba Seddighi, Andrew B Singleton, et al.Journal of Parkinson'S Disease|August 14, 2013
LRRK2: cause, risk, and mechanismCoro Paisán-Ruiz, Patrick A Lewis, Andrew B SingletonPageof 39