Gata2 Gfi1b Cfos Etv6

Gata2, Gfi1b, Cfos, and Etv6 are genes encoding transcription factors that help regulate cell identity, proliferation, and differentiation during development, particularly in blood-forming tissues. Their protein products act through sequence-specific DNA binding and transcriptional regulation: GATA2 and ETV6 influence developmental gene programs, GFI1B commonly represses target genes through corepressor recruitment, and c-FOS partners with JUN in AP-1 complexes to respond to cellular signals. Studying their expression and interactions helps researchers map regulatory networks controlling hematopoietic stem and progenitor cells, blood-cell lineage specification, and vascular-to-blood transitions, providing insight into normal development and disorders caused by disrupted gene regulation.

Gata2 Gfi1b Cfos Etv6 - Related Videos

Research

JoVE Journal - Developmental Biology

Reprogramming Mouse Embryonic Fibroblasts with Transcription Factors to Induce a Hemogenic Program

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Cited by 1 •

2016

The protocol described here details the induction of a hemogenic program in mouse embryonic fibroblasts via overexpression of a minimal set of transcription factors. This technology may be translated to the human system to provide platforms for future study of hematopoiesis, hematologic disease, and hematopoietic stem cell transplant.

Comprehensive Analysis of Transcription Dynamics from Brain Samples Following Behavioral Experience

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Cited by 6 •

2014

This manuscript describes a protocol that applies comprehensive profiling for analysis of transcriptional programs induced in specific brain nuclei of rodents following behavioral paradigms. Herein, this approach is illustrated in the context of profiling genes induced in the nucleus accumbens (NAc) of mice following acute cocaine exposure, utilizing microfluidic qPCR arrays.

Combining Peripheral Nerve Grafting and Matrix Modulation to Repair the Injured Rat Spinal Cord

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Cited by 21 •

2009

Traumatic injury to the spinal cord disrupts communication with the brain. To restore lost connectivity we utilize a peripheral nerve graft to provide a substratum for regenerating fibers in combination with neurotrophic factors and matrix-modulating enzymes to remove inhibitory molecules to promote long distance growth.

Selective Viral Transduction of Adult-born Olfactory Neurons for Chronic in vivo Optogenetic Stimulation

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Cited by 7 •

2011

Adult-born neurons of the olfactory bulb can be optogenetically controlled using Channelrhodopsin2-expressing lentiviral injection in the rostral migratory stream and chronic photostimulation with an implanted miniature LED.

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