Area of research
Molecular Biology
Research interest
Research interests include Genomics and Chromatin Dynamics, RNA Research and Splicing, RNA and protein synthesis mechanisms, and RNA modifications and cancer.
Bimodal specificity of TF–DNA recognition in embryonic stem cells
The killifish germline regulates longevity and somatic repair in a sex-specific manner
Genome-wide screening reveals essential roles for HOX genes and imprinted genes during caudal neurogenesis of human embryonic stem cells
Esrrb is a cell-cycle-dependent associated factor balancing pluripotency and XEN differentiation
Repetitive DNA symmetry elements negatively regulate gene expression in embryonic stem cells
Delineating the heterogeneity of matrix-directed differentiation toward soft and stiff tissue lineages via single-cell profiling
H3K27Ac modification and gene expression in psoriasis
DNA methylation patterns expose variations in enhancer-chromatin modifications during embryonic stem cell differentiation
CloneSeq: A highly sensitive analysis platform for the characterization of 3D-cultured single-cell-derived clones
Bisection of the X chromosome disrupts the initiation of chromosome silencing during meiosis in Caenorhabditis elegans
CloneSeq - Single-cell clonal 3D culture and analysis protocol
Mass spectrometry reveals the chemistry of formaldehyde cross-linking in structured proteins
Transcription Factor Binding in Embryonic Stem Cells Is Constrained by DNA Sequence Repeat Symmetry
TrypOx, a Novel Eukaryotic Homolog of the Redox-Regulated Chaperone Hsp33 in Trypanosoma brucei
Direct Induction of the Three Pre-implantation Blastocyst Cell Types from Fibroblasts
Fine-Resolution Mapping of TF Binding and Chromatin Interactions
The G-rich Repeats in <i>FMR1</i> and <i>C9orf72</i> Loci Are Hotspots for Local Unpairing of DNA
Single-cell ChIP-seq reveals cell subpopulations defined by chromatin state
A Multiplexed System for Quantitative Comparisons of Chromatin Landscapes
High-Throughput Single-Cell Labeling (Hi-SCL) for RNA-Seq Using Drop-Based Microfluidics
Locus-specific editing of histone modifications at endogenous enhancers
The Histone Deacetylase SIRT6 Is a Tumor Suppressor that Controls Cancer Metabolism
A High-Throughput Chromatin Immunoprecipitation Approach Reveals Principles of Dynamic Gene Regulation in Mammals
The Histone Deacetylase SIRT6 Is a Tumor Suppressor that Controls Cancer Metabolism
CONICET Digital (CONICET) 2012cited by 18position: middle
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