Home  >  Products  >  RBMS2 (RNA binding motif, single stranded interacting protein 2) Blocking Peptide (the N terminal of protein) (100ug)
RBMS2 (RNA binding motif, single stranded interacting protein 2) Blocking Peptide (the N terminal of protein) (100ug)

RBMS2 (RNA binding motif, single stranded interacting protein 2) Blocking Peptide (the N terminal of protein) (100ug)


Supplier: Aviva Systems Biology Incorporated
Star_fadedStar_fadedStar_fadedStar_fadedStar_faded
0 reviews | Write a Review Pencil
This is a synthetic peptide designed for use in combination with anti-RBMS2 antibody (Catalogue #: ARP40429_P050) made by Aviva Systems Biology. It may block above mentioned antibody from binding to its target protein in western blot and/or immunohistochecmistry under proper experimental settings. There is no guarantee for its use in other applications. Please inquire for more details.
Presku: AAP40429
Size: 100 ug
Weight: 44kDa
Gene: 5939
Format: Lyophilized powder
Target: RBMS2 is a member of a small family of proteins which bind single stranded DNA/RNA. These proteins are characterized by the presence of two sets of ribonucleoprotein consensus sequence (RNP-CS) that contain conserved motifs, RNP1 and RNP2, originally described in RNA binding proteins, and required for DNA binding. The RBMS proteins have been implicated in such diverse functions as DNA replication, gene transcription, cell cycle progression and apoptosis. This protein was isolated by phenotypic complementation of cdc2 and cdc13 mutants of yeast and is thought to suppress cdc2 and cdc13 mutants through the induction of translation of cdc2.The protein encoded by this gene is a member of a small family of proteins which bind single stranded DNA/RNA. These proteins are characterized by the presence of two sets of ribonucleoprotein consensus sequence (RNP-CS) that contain conserved motifs, RNP1 and RNP2, originally described in RNA binding proteins, and required for DNA binding. The RBMS proteins have been implicated in such diverse functions as DNA replication, gene transcription, cell cycle progression and apoptosis. This protein was isolated by phenotypic complementation of cdc2 and cdc13 mutants of yeast and is thought to suppress cdc2 and cdc13 mutants through the induction of translation of cdc2. PRIMARYREFSEQ_SPAN PRIMARY_IDENTIFIER PRIMARY_SPAN COMP 1-1696 CR594007.1 14-1709 1697-1779 BC027863.1 1623-1705 1780-1787 BM929514.1 270-277 1788-1997 AL698629.1 378-587
Alternative names: SCR3