The histone demethylase Kdm6b regulates subtype diversification of mouse spinal motor neurons during development
暂无分享,去创建一个
[1] Sangeetha Hareendran,et al. Single nucleus RNA-sequencing defines unexpected diversity of cholinergic neuron types in the adult mouse spinal cord , 2020, Nature Communications.
[2] J. Mathias,et al. Program , 1970, 2021 Symposium on VLSI Technology.
[3] Helena L. Crowell,et al. muscat detects subpopulation-specific state transitions from multi-sample multi-condition single-cell transcriptomics data , 2020, Nature Communications.
[4] Sangsoo Kim,et al. PRC2 Acts as a Critical Timer That Drives Oligodendrocyte Fate over Astrocyte Identity by Repressing the Notch Pathway , 2020, Cell reports.
[5] G. Pan,et al. JMJD3 and UTX determine fidelity and lineage specification of human neural progenitor cells , 2020, Nature Communications.
[6] Yang Shi,et al. Roles and regulation of histone methylation in animal development , 2019, Nature Reviews Molecular Cell Biology.
[7] S. Pfaff,et al. Cell type and circuit modules in the spinal cord , 2019, Current Opinion in Neurobiology.
[8] Raphael Gottardo,et al. Orchestrating single-cell analysis with Bioconductor , 2019, Nature Methods.
[9] Beisi Xu,et al. Differentiation of human pluripotent stem cells into neurons or cortical organoids requires transcriptional co-regulation by UTX and 53BP1 , 2019, Nature Neuroscience.
[10] K. Ampatzis,et al. Large-Scale Analysis of the Diversity and Complexity of the Adult Spinal Cord Neurotransmitter Typology , 2019, bioRxiv.
[11] James Briscoe,et al. Single cell transcriptomics reveals spatial and temporal dynamics of gene expression in the developing mouse spinal cord , 2018, Development.
[12] L. Croci,et al. An ancient role for collier/Olf/Ebf (COE)-type transcription factors in axial motor neuron development , 2018, bioRxiv.
[13] Zev J. Gartner,et al. DoubletFinder: Doublet detection in single-cell RNA sequencing data using artificial nearest neighbors , 2018, bioRxiv.
[14] J. Dasen,et al. Development, functional organization, and evolution of vertebrate axial motor circuits , 2018, Neural Development.
[15] Paul Hoffman,et al. Integrating single-cell transcriptomic data across different conditions, technologies, and species , 2018, Nature Biotechnology.
[16] Jae W. Lee,et al. The Isl1-Lhx3 Complex Promotes Motor Neuron Specification by Activating Transcriptional Pathways that Enhance Its Own Expression and Formation , 2017, eNeuro.
[17] T. Jessell,et al. Divergent Hox Coding and Evasion of Retinoid Signaling Specifies Motor Neurons Innervating Digit Muscles , 2017, Neuron.
[18] L. Buzanska,et al. Epigenetic Modulation of Stem Cells in Neurodevelopment: The Role of Methylation and Acetylation , 2017, Front. Cell. Neurosci..
[19] E. Mazzoni,et al. A Multi-step Transcriptional and Chromatin State Cascade Underlies Motor Neuron Programming from Embryonic Stem Cells. , 2017, Cell stem cell.
[20] Grace X. Y. Zheng,et al. Massively parallel digital transcriptional profiling of single cells , 2016, Nature Communications.
[21] D. Gifford,et al. Expression of Terminal Effector Genes in Mammalian Neurons Is Maintained by a Dynamic Relay of Transient Enhancers , 2016, Neuron.
[22] J. Dasen,et al. Parallel Pbx-Dependent Pathways Govern the Coalescence and Fate of Motor Columns , 2016, Neuron.
[23] Jae W. Lee,et al. Chx10 Consolidates V2a Interneuron Identity through Two Distinct Gene Repression Modes. , 2016, Cell reports.
[24] Jae W. Lee,et al. Single-stranded DNA binding proteins are required for LIM complexes to induce transcriptionally active chromatin and specify spinal neuronal identities , 2016, Development.
[25] J. Dasen,et al. Hox Proteins Coordinate Motor Neuron Differentiation and Connectivity Programs through Ret/Gfrα Genes. , 2016, Cell reports.
[26] P. Ntziachristos,et al. Histone demethylases in physiology and cancer: a tale of two enzymes, JMJD3 and UTX. , 2016, Current opinion in genetics & development.
[27] Rongkun Shen,et al. miR-218 is Essential to Establish Motor Neuron Fate as a Downstream Effector of Isl1-Lhx3 , 2015, Nature Communications.
[28] Evan Z. Macosko,et al. Highly Parallel Genome-wide Expression Profiling of Individual Cells Using Nanoliter Droplets , 2015, Cell.
[29] A. Regev,et al. Spatial reconstruction of single-cell gene expression data , 2015 .
[30] H. Rohrer,et al. Prox1 Regulates Olig2 Expression to Modulate Binary Fate Decisions in Spinal Cord Neurons , 2014, The Journal of Neuroscience.
[31] Nicolas Stifani,et al. Motor neurons and the generation of spinal motor neuron diversity , 2014, Front. Cell. Neurosci..
[32] D. Lim,et al. Activation of neuronal gene expression by the JMJD3 demethylase is required for postnatal and adult brain neurogenesis. , 2014, Cell reports.
[33] Rongkun Shen,et al. Isl1 Directly Controls a Cholinergic Neuronal Identity in the Developing Forebrain and Spinal Cord by Forming Cell Type-Specific Complexes , 2014, PLoS genetics.
[34] M. Matzuk,et al. H3K27 Demethylase, JMJD3, Regulates Fragmentation of Spermatogonial Cysts , 2013, PloS one.
[35] Carolyn A. Morrison,et al. Synergistic binding of transcription factors to cell-specific enhancers programs motor neuron identity , 2013, Nature Neuroscience.
[36] Rongkun Shen,et al. STAT3 promotes motor neuron differentiation by collaborating with motor neuron-specific LIM complex , 2013, Proceedings of the National Academy of Sciences.
[37] Thomas R. Gingeras,et al. STAR: ultrafast universal RNA-seq aligner , 2013, Bioinform..
[38] D. Huylebroeck,et al. Onecut transcription factors act upstream of Isl1 to regulate spinal motoneuron diversification , 2012, Development.
[39] T. Magnuson,et al. UTX and UTY Demonstrate Histone Demethylase-Independent Function in Mouse Embryonic Development , 2012, PLoS genetics.
[40] X. de la Cruz,et al. Genome-wide analysis reveals that Smad3 and JMJD3 HDM co-activate the neural developmental program , 2012, Development.
[41] Silvia Arber,et al. Motor Circuits in Action: Specification, Connectivity, and Function , 2012, Neuron.
[42] R. Gronostajski,et al. Sox9 and NFIA Coordinate a Transcriptional Regulatory Cascade during the Initiation of Gliogenesis , 2012, Neuron.
[43] Rongkun Shen,et al. Fusion protein Isl1–Lhx3 specifies motor neuron fate by inducing motor neuron genes and concomitantly suppressing the interneuron programs , 2012, Proceedings of the National Academy of Sciences.
[44] Jae W. Lee,et al. UTX, a histone H3-lysine 27 demethylase, acts as a critical switch to activate the cardiac developmental program. , 2012, Developmental cell.
[45] Tegy J. Vadakkan,et al. LMO4 functions as a co-activator of neurogenin 2 in the developing cortex , 2011, Development.
[46] T. Kameyama,et al. Myt/NZF family transcription factors regulate neuronal differentiation of P19 cells , 2011, Neuroscience Letters.
[47] Jonathan D. Grinstein,et al. Global Control of Motor Neuron Topography Mediated by the Repressive Actions of a Single Hox Gene , 2010, Neuron.
[48] Seunghee Lee,et al. Crucial roles of histone-modifying enzymes in mediating neural cell-type specification , 2010, Current Opinion in Neurobiology.
[49] S. Hochman,et al. Heterogeneity of membrane properties in sympathetic preganglionic neurons of neonatal mice: evidence of four subpopulations in the intermediolateral nucleus. , 2010, Journal of neurophysiology.
[50] Turgay Akay,et al. A Cluster of Cholinergic Premotor Interneurons Modulates Mouse Locomotor Activity , 2009, Neuron.
[51] Hadley Wickham,et al. ggplot2 - Elegant Graphics for Data Analysis (2nd Edition) , 2017 .
[52] Yunfu Sun,et al. Islet-to-LMO stoichiometries control the function of transcription complexes that specify motor neuron and V2a interneuron identity , 2009, Development.
[53] Jae W. Lee,et al. Retinoid Signaling and Neurogenin2 Function Are Coupled for the Specification of Spinal Motor Neurons through a Chromatin Modifier CBP , 2009, Neuron.
[54] K. Helin,et al. The H3K27me3 demethylase JMJD3 contributes to the activation of the INK4A-ARF locus in response to oncogene- and stress-induced senescence. , 2009, Genes & development.
[55] Jae W. Lee,et al. LMO4 Controls the Balance between Excitatory and Inhibitory Spinal V2 Interneurons , 2009, Neuron.
[56] E. Morrisey,et al. Coordinated Actions of the Forkhead Protein Foxp1 and Hox Proteins in the Columnar Organization of Spinal Motor Neurons , 2008, Neuron.
[57] J. Whitsett,et al. Kruppel-like factor 5 is required for perinatal lung morphogenesis and function , 2008, Development.
[58] T. Jessell,et al. Hox Repertoires for Motor Neuron Diversity and Connectivity Gated by a Single Accessory Factor, FoxP1 , 2008, Cell.
[59] S. Pfaff,et al. A regulatory network to segregate the identity of neuronal subtypes. , 2008, Developmental cell.
[60] Geoffrey E. Hinton,et al. Visualizing Data using t-SNE , 2008 .
[61] James Briscoe,et al. Interpretation of the sonic hedgehog morphogen gradient by a temporal adaptation mechanism , 2007, Nature.
[62] T. Veenstra,et al. Identification of JmjC domain-containing UTX and JMJD3 as histone H3 lysine 27 demethylases , 2007, Proceedings of the National Academy of Sciences.
[63] O. Hermanson,et al. SMRT-mediated repression of an H3K27 demethylase in progression from neural stem cell to neuron , 2007, Nature.
[64] Howard Y. Chang,et al. A histone H3 lysine 27 demethylase regulates animal posterior development , 2007, Nature.
[65] M. Krüger,et al. NSCL‐1 and ‐2 control the formation of precerebellar nuclei by orchestrating the migration of neuronal precursor cells , 2007, Journal of neurochemistry.
[66] L. Luo,et al. A global double‐fluorescent Cre reporter mouse , 2007, Genesis.
[67] Christine L Mummery,et al. Isl1Cre reveals a common Bmp pathway in heart and limb development , 2006, Development.
[68] S. Pfaff,et al. Olig2 and Ngn2 function in opposition to modulate gene expression in motor neuron progenitor cells. , 2005, Genes & development.
[69] Samuel L. Pfaff,et al. Analysis of embryonic motoneuron gene regulation: derepression of general activators function in concert with enhancer factors , 2004, Development.
[70] A. Kania,et al. A Postmitotic Role for Isl-Class LIM Homeodomain Proteins in the Assignment of Visceral Spinal Motor Neuron Identity , 2004, Neuron.
[71] Samuel L. Pfaff,et al. Synchronization of Neurogenesis and Motor Neuron Specification by Direct Coupling of bHLH and Homeodomain Transcription Factors , 2003, Neuron.
[72] A. Kania,et al. Topographic Motor Projections in the Limb Imposed by LIM Homeodomain Protein Regulation of Ephrin-A:EphA Interactions , 2003, Neuron.
[73] Samuel L. Pfaff,et al. LIM Factor Lhx3 Contributes to the Specification of Motor Neuron and Interneuron Identity through Cell-Type-Specific Protein-Protein Interactions , 2002, Cell.
[74] S. Pfaff,et al. Transcriptional networks regulating neuronal identity in the developing spinal cord , 2001, Nature Neuroscience.
[75] Shankar Srinivas,et al. Cre reporter strains produced by targeted insertion of EYFP and ECFP into the ROSA26 locus , 2001, BMC Developmental Biology.
[76] S. Pfaff,et al. Genetic and epigenetic mechanisms contribute to motor neuron pathfinding , 2000, Nature.
[77] Artur Kania,et al. Coordinate Roles for LIM Homeobox Genes in Directing the Dorsoventral Trajectory of Motor Axons in the Vertebrate Limb , 2000, Cell.
[78] David J Anderson,et al. Identification of a Novel Family of Oligodendrocyte Lineage-Specific Basic Helix–Loop–Helix Transcription Factors , 2000, Neuron.
[79] Silvia Arber,et al. Requirement for the Homeobox Gene Hb9 in the Consolidation of Motor Neuron Identity , 1999, Neuron.
[80] S. Pfaff,et al. Active Suppression of Interneuron Programs within Developing Motor Neurons Revealed by Analysis of Homeodomain Factor HB9 , 1999, Neuron.
[81] S. Pfaff,et al. LIM Homeodomain Factors Lhx3 and Lhx4 Assign Subtype Identities for Motor Neurons , 1998, Cell.
[82] T. Jessell,et al. Requirement for LIM Homeobox Gene Isl1 in Motor Neuron Generation Reveals a Motor Neuron– Dependent Step in Interneuron Differentiation , 1996, Cell.
[83] T. Jessell,et al. Topographic organization of embryonic motor neurons defined by expression of LIM homeobox genes , 1994, Cell.
[84] T. Jessell,et al. Early stages of motor neuron differentiation revealed by expression of homeobox gene Islet-1. , 1992, Science.
[85] R. B. Redmon,et al. Identity , 2021, Notre Dame J. Formal Log..