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GEMIN5 encodes a WD repeat protein that is a component of the survival of motor neurons (SMN) complex. Additionally we are shipping GEMIN5 Proteins (4) and many more products for this protein.
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Gemin5 is dispensable for snRNA identification and snRNP (show LSM2 Antibodies) assembly.
This work both reveals a new autoregulatory pathway governing SMN (show STMN1 Antibodies) expression, and identifies a new mechanism through which SMN (show STMN1 Antibodies) can modulate specific mRNA expression via Gemin5.
The C-terminal region of Gemin5 bears two non-canonical bipartite RNA-binding sites.
The Gemin5's function in delivering pre-snRNAs as substrates for Sm core assembly and processing.
gemin5 has a role as a novel cap-binding protein (show EIF4E Antibodies) and WD repeat domains are involved in m(7)G recognition
we report the identification of an additional component of the SMN (show STMN1 Antibodies) complex, a novel WD repeat protein (show BRWD3 Antibodies) termed Gemin5. Gemin5 binds SMN (show STMN1 Antibodies) directly and is a component of the SMN (show STMN1 Antibodies) complex
Gemin5 is the snRNA binding protein of the SMN (show STMN1 Antibodies) complex, binding directly and specifically to the unique features of snRNAs and is the factor that allows the SMN (show STMN1 Antibodies) complex to distinguish snRNAs from other cellular RNAs for snRNP (show LSM2 Antibodies) biogenesis
Gemin5 functions as a scaffold protein (show HOMER1 Antibodies) for the ASK1 (show MAP3K5 Antibodies)-JNK1 (show MAPK8 Antibodies) signaling module and thereby potentiates ASK1 (show MAP3K5 Antibodies)-mediated signaling events.
Absence of GEMIN5 from SMN (show STMN1 Antibodies) complexes in nuclear Cajal bodies is demonstrated.
Gemin5-containing subunits bind small nuclear RNA independently of the SMN (show STMN1 Antibodies) complex and without a requirement for exogenous ATP
This gene encodes a WD repeat protein that is a component of the survival of motor neurons (SMN) complex. The SMN complex plays a critical role in mRNA splicing through the assembly of spliceosomal small nuclear ribonucleoproteins (snRNPs), and may also mediate the assembly and transport of other classes of ribonucleoproteins. The encoded protein is the snRNA-binding component of the SMN complex. Dysregulation of this gene may play a role in alternative mRNA splicing and tumor cell motility. Alternatively spliced transcript variants encoding multiple isoforms have been observed for this gene.
gem-associated protein 5