Pages that link to "Q42828165"
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The following pages link to SUMO modification of repression domains modulates function of nuclear receptor 5A1 (steroidogenic factor-1). (Q42828165):
Displaying 50 items.
- Sumoylation of forkhead L2 by Ubc9 is required for its activity as a transcriptional repressor of the Steroidogenic Acute Regulatory gene (Q24315137) (← links)
- Purification of proteins associated with specific genomic Loci (Q24315634) (← links)
- Negative modulation of androgen receptor transcriptional activity by Daxx (Q24318233) (← links)
- Cyclic AMP-stimulated interaction between steroidogenic factor 1 and diacylglycerol kinase theta facilitates induction of CYP17 (Q24323350) (← links)
- The Molecular Biology, Biochemistry, and Physiology of Human Steroidogenesis and Its Disorders (Q24613957) (← links)
- Nuclear PI3K signaling in cell growth and tumorigenesis (Q26859127) (← links)
- Sumoylated NHR-25/NR5A regulates cell fate during C. elegans vulval development (Q27318485) (← links)
- Structure of SF-1 Bound by Different Phospholipids: Evidence for Regulatory Ligands (Q27652795) (← links)
- Silencing diacylglycerol kinase-theta expression reduces steroid hormone biosynthesis and cholesterol metabolism in human adrenocortical cells (Q28115074) (← links)
- cAMP-stimulated transcription of DGKθ requires steroidogenic factor 1 and sterol regulatory element binding protein 1 (Q28115537) (← links)
- Eliminating SF-1 (NR5A1) sumoylation in vivo results in ectopic hedgehog signaling and disruption of endocrine development (Q28513287) (← links)
- The small ubiquitin-like modifier-deconjugating enzyme sentrin-specific peptidase 1 switches IFN regulatory factor 8 from a repressor to an activator during macrophage activation (Q28593689) (← links)
- Minireview: steroidogenic factor 1: its roles in differentiation, development, and disease (Q33637467) (← links)
- Phosphorylation-dependent sumoylation regulates estrogen-related receptor-alpha and -gamma transcriptional activity through a synergy control motif (Q33643260) (← links)
- The crystal structures of human steroidogenic factor-1 and liver receptor homologue-1. (Q33836243) (← links)
- The DEAD-box protein DP103 (Ddx20 or Gemin-3) represses orphan nuclear receptor activity via SUMO modification (Q33861451) (← links)
- Multiple roles for sphingolipids in steroid hormone biosynthesis (Q33923721) (← links)
- Sumoylation of p45/NF-E2: nuclear positioning and transcriptional activation of the mammalian beta-like globin gene locus (Q34150764) (← links)
- SF-1 (nuclear receptor 5A1) activity is activated by cyclic AMP via p300-mediated recruitment to active foci, acetylation, and increased DNA binding. (Q34150815) (← links)
- Knockdown of SF-1 and RNF31 affects components of steroidogenesis, TGFβ, and Wnt/β-catenin signaling in adrenocortical carcinoma cells. (Q34199703) (← links)
- The LIM domain protein FHL2 interacts with the NR5A family of nuclear receptors and CREB to activate the inhibin-α subunit gene in ovarian granulosa cells (Q34317218) (← links)
- NR5A1 prevents centriole splitting by inhibiting centrosomal DNA-PK activation and β-catenin accumulation (Q34670969) (← links)
- Scavenger receptors mediate the role of SUMO and Ftz-f1 in Drosophila steroidogenesis (Q34699820) (← links)
- Coactivation of SF-1-mediated transcription of steroidogenic enzymes by Ubc9 and PIAS1 (Q35001325) (← links)
- The competence factor beta Ftz-F1 potentiates ecdysone receptor activity via recruiting a p160/SRC coactivator (Q35221387) (← links)
- Steroidogenic factor-1 is a sphingolipid binding protein (Q35748392) (← links)
- Death-associated protein 6 (Daxx) mediates cAMP-dependent stimulation of Cyp11a1 (P450scc) transcription (Q35774114) (← links)
- Adrenocortical stem and progenitor cells: Unifying model of two proposed origins (Q36096827) (← links)
- Histone deacetylase inhibitors reduce steroidogenesis through SCF-mediated ubiquitination and degradation of steroidogenic factor 1 (NR5A1). (Q36315304) (← links)
- Acid ceramidase (ASAH1) represses steroidogenic factor 1-dependent gene transcription in H295R human adrenocortical cells by binding to the receptor (Q36362832) (← links)
- Nutritional conditions regulate transcriptional activity of SF-1 by controlling sumoylation and ubiquitination (Q36448863) (← links)
- Steroidogenic factor 1 (NR5A1) maintains centrosome homeostasis in steroidogenic cells by restricting centrosomal DNA-dependent protein kinase activation (Q36560035) (← links)
- Hedgehog signaling and steroidogenesis (Q36765180) (← links)
- Decreased recognition of SUMO-sensitive target genes following modification of SF-1 (NR5A1). (Q36994911) (← links)
- SUMOylation inhibits SF-1 activity by reducing CDK7-mediated serine 203 phosphorylation. (Q37072165) (← links)
- SUMO-mediated inhibition of glucocorticoid receptor synergistic activity depends on stable assembly at the promoter but not on DAXX. (Q37073920) (← links)
- In search of adrenocortical stem and progenitor cells (Q37305066) (← links)
- Complex assembly on the human CYP17 promoter (Q37325136) (← links)
- Transcriptional Suppression by Transient Recruitment of ARIP4 to Sumoylated nuclear receptor Ad4BP/SF-1. (Q37369891) (← links)
- Multiple Signaling Pathways Coordinate CYP17 Gene Expression in the Human Adrenal Cortex (Q37680693) (← links)
- Transcriptional control of metabolic and inflammatory pathways by nuclear receptor SUMOylation (Q37822520) (← links)
- Steroidogenic factor 1 and the central nervous system. (Q37888755) (← links)
- Identification and Characterization of Steroidogenic Factor-1 Inverse Agonists (Q39635750) (← links)
- E3 ubiquitin ligase RNF31 cooperates with DAX-1 in transcriptional repression of steroidogenesis (Q39880486) (← links)
- Importin alpha1 is involved in the nuclear localization of Zac1 and the induction of p21WAF1/CIP1 by Zac1. (Q40207765) (← links)
- Nuclear speckles: molecular organization, biological function and role in disease (Q41924562) (← links)
- Acidic residue Glu199 increases SUMOylation level of nuclear hormone receptor NR5A1. (Q42144598) (← links)
- Timing of adrenal regression controlled by synergistic interaction between Sf1 SUMOylation and Dax1. (Q45977030) (← links)
- Liver receptor homolog-1 localization in the nuclear body is regulated by sumoylation and cAMP signaling in rat granulosa cells. (Q46173814) (← links)
- Sumoylation of histone deacetylase 1 regulates MyoD signaling during myogenesis (Q50069863) (← links)