Epidermal differentiation: basal vs. suprabasal keratinocytes
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Epidermal differentiation: basal vs. suprabasal keratinocytes
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2010-12-15
相关数据集
Glucose dissociates DDX21 dimers to regulate mRNA processing and promote epidermal differentiation (RNA-Seq I)
Glucose is an important cellular energy source, however, glucose's function as a second messenger remains relatively unexplored. Here, we find that glucose binds directly to DDX21 to regulate its func
NIAID Data Ecosystem90
Dynamic and stable enhancer-promoter contacts regulate terminal differentiation [ChIP-Seq]. Homo sapiens
Genome-wide chromosome conformation capture (Hi-C) and promoter-capture Hi-C (CHi-C) were performed during epidermal differentiation. These data indicate that dynamic and constitutive enhancer-promote
NIAID Data Ecosystem30
Gene expression signature of the three major epidermal differentiation compartments: interfollicular epidermis (IFE), hair follicle (HF) and sebaceous gland (SG).
There are multiple stem cells in adult mammalian epidermis, but the mechanisms controlling lineage specification are poorly understood. To identify gene expression signatures of the three major epider
NIAID Data Ecosystem30
Glucose Binds and Activates NSUN2 to Promote Translation and Epidermal Differentiation
This study was undertaken to determine the role of NSUN2 in epidermal homeostasis. Primary neonatal foreskin keratinocytes were obtained from discarded surgical samples at a California hospital. Sampl
NIAID Data Ecosystem60
SPT6 Promotes Epidermal Differentiation and Blockade of an Intestinal Phenotype through Control of Transcriptional Elongation. SPT6 Promotes Epidermal Differentiation and Blockade of an Intestinal Phenotype through Control of Transcriptional Elongation
In adult tissue, stem and progenitor cells must tightly regulate the balance between proliferation and differentiation to sustain homeostasis. It is assumed that the rate-limiting step during the indu
NIAID Data Ecosystem30



