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The cytoplasmic actin proteins, beta- and gamma-actin, are 99% identical but perform non-redundant functions. Genes encoding the cytoplasmic actins, Actb and Actg1, respectively, are less similar but still share 89% of their nucleotide sequences. Knockout (KO) of Actb by deletion of first coding exo...
ORGANISM(S): Mus musculus (Mouse) 
2024-02-19 | PXD039786 | Pride
Next-generation sequencing analysis of chemically induced neurons from wild type (WT), Actb+/- (HET) and Actb-/- (KO) mouse embryonic fibroblasts (MEFs)
ACTB is a cytoskeletal protein involved in intracellular trafficking. In recent years, it has become evident that, in addition to its established roles in these compartments, ACTB also participates in the regulation of transcription. However, the molecular mechanisms underlying this function remain ...
ORGANISM(S): Homo sapiens 
2026-01-29 | GSE308375 | GEO
ACTB is a cytoskeletal protein involved in intracellular trafficking. In recent years, it has become evident that, in addition to its established roles in these compartments, ACTB also participates in the regulation of transcription. However, the molecular mechanisms underlying this function remain ...
ORGANISM(S): Homo sapiens 
2026-01-29 | GSE308376 | GEO
Using Chromatin-immunoprecipitation and NGS, we investigated the binding of TFAM protein at mitochondrial genome between Actb+/+ Wild Type (WT) and Actb-/- (KO) Mouse Embryonic Fibroblast
ORGANISM(S): Mus musculus 
2018-01-24 | GSE109532 | GEO
TFAM binding analysis at mitochondrial genome between Wild Type (Wt) and Actb-/- (KNO) Mouse Embryonic Fibroblast
Purpose: The goals of this study are to use NGS to perform transcriptome profiling (RNA-seq) to find the difference of the transcriptomes of chemically induced neurons from wild type (WT), Actb+/- (HET) and Actb-/- (KO) mouse embryonic fibroblasts. Methods: MEFs were reprogramed into neurons by smal...
ORGANISM(S): Mus musculus 
2018-04-27 | GSE113733 | GEO
ACTB methylation regulates SMARCA4 genomic occupancy to promote translation and reduce adhesion in colorectal cancer cells
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