2021
Transcriptional network orchestrating regional patterning of cortical progenitors
Ypsilanti AR, Pattabiraman K, Catta-Preta R, Golonzhka O, Lindtner S, Tang K, Jones IR, Abnousi A, Juric I, Hu M, Shen Y, Dickel DE, Visel A, Pennachio LA, Hawrylycz M, Thompson CL, Zeng H, Barozzi I, Nord AS, Rubenstein JL. Transcriptional network orchestrating regional patterning of cortical progenitors. Proceedings Of The National Academy Of Sciences Of The United States Of America 2021, 118: e2024795118. PMID: 34921112, PMCID: PMC8713794, DOI: 10.1073/pnas.2024795118.Peer-Reviewed Original ResearchConceptsRegional patterningEnhancer-gene interactionsTranscription factor networkTF ChIP-seqExpression of hundredsCortical progenitorsVentricular zoneRadial glial stem cellsMutant miceEpigenomic marksTF networksDNA accessibilityGenomic programmingTranscriptional networksGlial stem cellsFactor networkChIP-seqStem cellsVZ cellsPatterningProgenitorsEnhancerMouse cortexExpressionCells
2016
Subpallial Enhancer Transgenic Lines: a Data and Tool Resource to Study Transcriptional Regulation of GABAergic Cell Fate
Silberberg SN, Taher L, Lindtner S, Sandberg M, Nord AS, Vogt D, Mckinsey GL, Hoch R, Pattabiraman K, Zhang D, Ferran JL, Rajkovic A, Golonzhka O, Kim C, Zeng H, Puelles L, Visel A, Rubenstein JLR. Subpallial Enhancer Transgenic Lines: a Data and Tool Resource to Study Transcriptional Regulation of GABAergic Cell Fate. Neuron 2016, 92: 59-74. PMID: 27710791, PMCID: PMC5063253, DOI: 10.1016/j.neuron.2016.09.027.Peer-Reviewed Original ResearchConceptsGABAergic cell fateEnhancer activityTranscriptional regulationCell fateNovel molecular mechanismStable transgenic mouse linesTranscriptional circuitryTransgenic linesTranscription factorsTranscriptional mechanismsDifferent enhancer elementsFate mapEnhancer elementsMolecular mechanismsTransgenic mouse lineForebrain developmentDistinct domainsMouse linesRegulationAmygdala neuronsBasal gangliaFateSpecific subtypesMutantsUnique tool