ACTIVATION DOMAIN OF THE PHAGE T4 TRANSCRIPTION FACTOR MOTA
收藏NIAID Data Ecosystem2026-05-01 收录
数据链接:
官方服务:
资源简介:
ACTIVATION DOMAIN OF THE PHAGE T4 TRANSCRIPTION FACTOR MOTA
应用场景:
创建时间:
2024-02-07
相关数据集
Epigenetic and transcriptional regulation of starvation-induced atrophy and autophagy programs by Foxk1 and Sin3A
Autophagy is the primary catabolic process triggered in response to starvation. Although autophagic regulation within the cytosolic compartment is well established, it is becoming clear that nuclear e
NIAID Data Ecosystem70
A Complex Control System for Transcriptional Activation from the sid Promoter of Bacteriophage P4
The sid gene promoter (P(sid)), which controls expression of the late genes from satellite phage P4, is activated by a unique class of small DNA-binding proteins. The activators from both satellite an
PubMed Central60
PHF20 Activates Autophagy Genes through Enhancer Activation via H3K36me2 Binding Activity [ChIP-seq]
Autophagy is a catabolic pathway that maintains cellular homeostasis under various stress conditions, including nutrient-deprived conditions. To elevate autophagic flux to a sufficient level under str
NIAID Data Ecosystem50
ZKSCAN3 in the transcriptional regulation of autophagy in human cells
Transcription factors can affect autophagy activity by promoting or inhibiting the expression of autophagy and lysosomal related genes. As a zinc finger family DNA-binding protein, ZKSCAN3 has been re
NIAID Data Ecosystem60
Additional file 3 of RNA-seq analysis and gene expression dynamics in the salivary glands of the argasid tick Ornithodoros erraticus along the trophogonic cycle
Additional file 3: Table S3. Pfam domain occurrences in the O. erraticus predicted proteins. A total of 9828 Pfam domains were observed in the O. erraticus proteins, of which 2458 were unique. Up to 6
NIAID Data Ecosystem50



