Area of research
Molecular Biology
Research interest
Research focused on Epigenetics and Cell biology, with related work in Replication timing, Induced pluripotent stem cell, Wnt signaling pathway. Notable publications include 'Signaling Network Crosstalk in Human Pluripotent Cells: A Smad2/3-Regulated Switch that Controls the Balance between Self-Renewal and Differentiation', 'Replication timing maintains the global epigenetic state in human cells', and 'Cell-Cycle Control of Developmentally Regulated Transcription Factors Accounts for Heterogeneity in Human Pluripotent Cells'.
Replication timing maintains the global epigenetic state in human cells
Human beige adipocytes for drug discovery and cell therapy in metabolic diseases
Replication timing maintains the global epigenetic state in human cells
Label-Free Relative Quantitation of Isobaric and Isomeric Human Histone H2A and H2B Variants by Fourier Transform Ion Cyclotron Resonance Top-Down MS/MS
Cell-Cycle Control of Bivalent Epigenetic Domains Regulates the Exit from Pluripotency
Cell-Cycle Control of Developmentally Regulated Transcription Factors Accounts for Heterogeneity in Human Pluripotent Cells
Cell-Cycle Control of Developmentally Regulated Transcription Factors Accounts for Heterogeneity in Human Pluripotent Cells
Signaling Network Crosstalk in Human Pluripotent Cells: A Smad2/3-Regulated Switch that Controls the Balance between Self-Renewal and Differentiation
<i>Xenopus</i>Nanos1 is required to prevent endoderm gene expression and apoptosis in primordial germ cells
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