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Neural Regeneration Research|December 15, 2017
Regulation of neuronal survival by DNA methyltransferasesJudit Symmank, Geraldine ZimmerFrontiers in Neuroscience|November 22, 2021
The Epigenome in Neurodevelopmental DisordersJulia Reichard, Geraldine Zimmer-BenschFrontiers in Neuroscience|October 12, 2020
DNA Methylation-Dependent Dysregulation of GABAergic Interneuron Functionality in Neuropsychiatric DiseasesJenice Linde, Geraldine Zimmer-BenschCells|November 27, 2021
DNA Methylation in Genetic and Sporadic Forms of Neurodegeneration: Lessons from Alzheimer's, Related Tauopathies and Genetic TauopathiesGeraldine Zimmer-Bensch, Hans ZempelEpigenetics & Chromatin|October 26, 2023
EphrinA5 regulates cell motility by modulating Snhg15/DNA triplex-dependent targeting of DNMT1 to the Ncam1 promoterCan Bora Yildiz, Tathagata Kundu, Julia Gehrmann, et al.Cerebral Cortex (New York, N.Y. : 1991)|November 9, 2017
The DNA Methyltransferase 1 (DNMT1) Controls the Shape and Dynamics of Migrating POA-Derived Interneurons Fated for the Murine Cerebral CortexDaniel Pensold, Judit Symmank, Anne Hahn, et al.Advances in Experimental Medicine and Biology|November 9, 2022
Role of DNMTs in the BrainCan Bora Yildiz, Geraldine Zimmer-BenschFrontiers in Cell and Developmental Biology|August 15, 2020
DNA Methyltransferase 1 (DNMT1) Function Is Implicated in the Age-Related Loss of Cortical InterneuronsAnne Hahn, Daniel Pensold, Cathrin Bayer, et al.Scientific Reports|March 26, 2021
The difficulty to model Huntington's disease in vitro using striatal medium spiny neurons differentiated from human induced pluripotent stem cellsKim Le Cann, Alec Foerster, Corinna Rösseler, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 25, 2007
Multiple effects of ephrin-A5 on cortical neurons are mediated by SRC family kinasesGeraldine Zimmer, Bettina Kästner, Franco Weth, et al.Pageof 5