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Daria Bunina

Showing results (1-10 of 11) with videos related to

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Cell Systems|June 20, 2020
Genomic Rewiring of SOX2 Chromatin Interaction Network during Differentiation of ESCs to Postmitotic NeuronsDaria Bunina, Nade Abazova, Nichole Diaz, et al.
Cell Reports|June 14, 2016
Protein Abundance Control by Non-coding Antisense TranscriptionFlorian Huber, Daria Bunina, Ishaan Gupta, et al.
Epigenetics|December 6, 2011
The inactivation of the π gene in chicken erythroblasts of adult lineage is not mediated by packaging of the embryonic part of the α-globin gene domain into a repressive heterochromatin-like structureElena S Ioudinkova, Sergey V Ulianov, Daria Bunina, et al.
Plos One|December 11, 2014
PCR Duplication: A One-Step Cloning-Free Method to Generate Duplicated Chromosomal Loci and Interference-Free Expression Reporters in YeastFlorian Huber, Matthias Meurer, Daria Bunina, et al.
Science Advances|September 19, 2025
A noncanonical role of glycolytic metabolites controlling the timing of mouse embryo segmentationHidenobu Miyazawa, Jona Rada, Nicole Prior, et al.
Nucleic Acids Research|October 5, 2017
Upregulation of SPS100 gene expression by an antisense RNA via a switch of mRNA isoforms with different stabilitiesDaria Bunina, Martin Štefl, Florian Huber, et al.
Nature Genetics|March 7, 2020
Lysine 4 of histone H3.3 is required for embryonic stem cell differentiation, histone enrichment at regulatory regions and transcription accuracyMaja Gehre, Daria Bunina, Simone Sidoli, et al.
Nature Communications|August 30, 2024
Histone H3.3 lysine 9 and 27 control repressive chromatin at cryptic enhancers and bivalent promotersMatteo Trovato, Daria Bunina, Umut Yildiz, et al.
Molecular Systems Biology|April 19, 2023
GRaNIE and GRaNPA: inference and evaluation of enhancer-mediated gene regulatory networksAryan Kamal, Christian Arnold, Annique Claringbould, et al.
Molecular Psychiatry|February 13, 2026
Distinct roles for MNK1 and MNK2 in social and cognitive behavior through kinase-specific regulation of the synaptic proteome and phosphoproteomeRosalba Olga Proce, Maria Steinecker, Chiara Giacomelli, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Cell Systems|June 20, 2020
Genomic Rewiring of SOX2 Chromatin Interaction Network during Differentiation of ESCs to Postmitotic NeuronsDaria Bunina, Nade Abazova, Nichole Diaz, et al.
Cell Reports|June 14, 2016
Protein Abundance Control by Non-coding Antisense TranscriptionFlorian Huber, Daria Bunina, Ishaan Gupta, et al.
Epigenetics|December 6, 2011
The inactivation of the π gene in chicken erythroblasts of adult lineage is not mediated by packaging of the embryonic part of the α-globin gene domain into a repressive heterochromatin-like structureElena S Ioudinkova, Sergey V Ulianov, Daria Bunina, et al.
Plos One|December 11, 2014
PCR Duplication: A One-Step Cloning-Free Method to Generate Duplicated Chromosomal Loci and Interference-Free Expression Reporters in YeastFlorian Huber, Matthias Meurer, Daria Bunina, et al.
Science Advances|September 19, 2025
A noncanonical role of glycolytic metabolites controlling the timing of mouse embryo segmentationHidenobu Miyazawa, Jona Rada, Nicole Prior, et al.
Nucleic Acids Research|October 5, 2017
Upregulation of SPS100 gene expression by an antisense RNA via a switch of mRNA isoforms with different stabilitiesDaria Bunina, Martin Štefl, Florian Huber, et al.
Nature Genetics|March 7, 2020
Lysine 4 of histone H3.3 is required for embryonic stem cell differentiation, histone enrichment at regulatory regions and transcription accuracyMaja Gehre, Daria Bunina, Simone Sidoli, et al.
Nature Communications|August 30, 2024
Histone H3.3 lysine 9 and 27 control repressive chromatin at cryptic enhancers and bivalent promotersMatteo Trovato, Daria Bunina, Umut Yildiz, et al.
Molecular Systems Biology|April 19, 2023
GRaNIE and GRaNPA: inference and evaluation of enhancer-mediated gene regulatory networksAryan Kamal, Christian Arnold, Annique Claringbould, et al.
Molecular Psychiatry|February 13, 2026
Distinct roles for MNK1 and MNK2 in social and cognitive behavior through kinase-specific regulation of the synaptic proteome and phosphoproteomeRosalba Olga Proce, Maria Steinecker, Chiara Giacomelli, et al.
Pageof 2