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Search results 201 to 210 out of 210 for Med16

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0.016s
Type Details Score
Publication        
First Author: Mouse Genome Informatics Scientific Curators
Year: 2005
Title: Obtaining and Loading Genome Assembly Coordinates from Ensembl Annotations
Publication      
First Author: Mouse Genome Informatics
Year: 2010
Journal: Database Release
Title: Protein Ontology Association Load.
Publication        
First Author: Mouse Genome Informatics Scientific Curators
Year: 2005
Title: Obtaining and loading genome assembly coordinates from NCBI annotations
Protein
Organism: Mus musculus/domesticus
Length: 864  
Fragment?: false
Protein Domain
Type: Family
Description: Mediator is a large complex of up to 33 proteins that is conserved from plants through fungi to humans - the number and representation of individual subunits varying with species [, ]. It is arranged into four different sections, a core, a head, a tail and a kinase-activity part, and the number of subunits within each of these is what varies with species. Overall, Mediator regulates the transcriptional activity of RNA polymerase II but it would appear that each of the four different sections has a slightly different function. Med16 is one of the subunits of the Tail portion of the Mediator complex and is required for lipopolysaccharide gene-expression []. Several members including the human protein, , have one or more WD40 domains on them.
Publication
First Author: Sato S
Year: 2004
Journal: Mol Cell
Title: A set of consensus mammalian mediator subunits identified by multidimensional protein identification technology.
Volume: 14
Issue: 5
Pages: 685-91
Protein
Organism: Mus musculus/domesticus
Length: 104  
Fragment?: true
Protein
Organism: Mus musculus/domesticus
Length: 828  
Fragment?: false
Publication
First Author: Bourbon HM
Year: 2004
Journal: Mol Cell
Title: A unified nomenclature for protein subunits of mediator complexes linking transcriptional regulators to RNA polymerase II.
Volume: 14
Issue: 5
Pages: 553-7
Publication  
First Author: Lu Y
Year: 2020
Journal: Sci Transl Med
Title: Activation of NRF2 ameliorates oxidative stress and cystogenesis in autosomal dominant polycystic kidney disease.
Volume: 12
Issue: 554