DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
about
The DGCR8 RNA-binding heme domain recognizes primary microRNAs by clamping the hairpinProcessing of microRNA primary transcripts requires heme in mammalian cellsBiogenesis and mechanism of action of small non-coding RNAs: insights from the point of view of structural biologyDimerization and Heme Binding Are Conserved in Amphibian and Starfish Homologues of the microRNA Processing Protein DGCR8Unusual Spectroscopic and Ligand Binding Properties of the Cytochrome P450-Flavodoxin Fusion Enzyme XplAA heme-binding domain controls regulation of ATP-dependent potassium channels.MicroRNAs as potential therapeutics for treating spinal cord injury.Deformability in the cleavage site of primary microRNA is not sensed by the double-stranded RNA binding domains in the microprocessor component DGCR8Ferric, not ferrous, heme activates RNA-binding protein DGCR8 for primary microRNA processing.Caspases cleave and inhibit the microRNA processing protein DiGeorge Critical Region 8.Cobalt(III) Protoporphyrin Activates the DGCR8 Protein and Can Compensate microRNA Processing Deficiency.Primary microRNA processing assay reconstituted using recombinant Drosha and DGCR8.The heme-p53 interaction: Linking iron metabolism to p53 signaling and tumorigenesis.The core microprocessor component DiGeorge syndrome critical region 8 (DGCR8) is a nonspecific RNA-binding protein.Phosphorylation of DGCR8 increases its intracellular stability and induces a progrowth miRNA profile.Regulation of iron homeostasis by microRNAs.Heme sensor proteins.Human RNAi pathway: crosstalk with organelles and cells.Regulatory Fe(II/III) heme: the reconstruction of a molecule's biography.Epigenetics-related genes in prostate cancer: expression profile in prostate cancer tissues, androgen-sensitive and -insensitive cell lines.CO and NO bind to Fe(II) DiGeorge critical region 8 heme but do not restore primary microRNA processing activity.Fractional transfer of a free unpaired electron to overcome energy barriers in the formation of Fe(4+) from Fe(3+) during the core contraction of macrocycles: implication for heme distortion.Heme enables proper positioning of Drosha and DGCR8 on primary microRNAs.Impairing the microRNA biogenesis pathway induces proteome modifications characterized by size bias and enrichment in antioxidant proteins.Microprocessor depends on hemin to recognize the apical loop of primary microRNA.
P2860
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P2860
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
description
2011 nî lūn-bûn
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2011 թուականի Մարտին հրատարակուած գիտական յօդուած
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2011 թվականի մարտին հրատարակված գիտական հոդված
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2011年の論文
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2011年論文
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2011年論文
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2011年論文
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2011年論文
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2011年論文
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2011年论文
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name
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@ast
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@en
DiGeorge critical region 8
@nl
type
label
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@ast
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@en
DiGeorge critical region 8
@nl
prefLabel
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@ast
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@en
DiGeorge critical region 8
@nl
P2093
P2860
P356
P1476
DiGeorge critical region 8 (DGCR8) is a double-cysteine-ligated heme protein
@en
P2093
Aaron T Smith
Brooke D Scheidemantle
Judith N Burstyn
Rachel Senturia
Yanqiu Chen
P2860
P304
16716-16725
P356
10.1074/JBC.M110.180844
P407
P577
2011-03-21T00:00:00Z