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Catalog No: OPCD07075
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OPCD07075
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Datasheets/ManualsPrintable datasheet for SMN1 Recombinant Protein (OPCD07075)
Product Info
Predicted Species ReactivityHomo sapiens|Human
Product FormatFreeze-dried Powder. PBS, pH7.4, containing 0.01% SKL, 5% Trehalose.
HostE.coli
ConjugationUnconjugated
ApplicationPositive control|Sodium sodecyl sulfate - polyacrylamide gel electrophoresis|Western blot
Additional InformationEndotoxin Level: < 1.0 EU per 1 ug (determined by the LAL method)
::Residues: Glu16-Pro251
Reconstitution and Storage2°C to 8°C|-80°C
Concentration200 ug/mL (prior to lyoph)
Purity> 95%
SourceE.coli
TagN-terminal His Tag
Gene SymbolSMN1|SMN2
Gene Full Namesurvival of motor neuron 1, telomeric|survival of motor neuron 2, centromeric
Alias SymbolsBCD541;C-BCD541;component of gems 1;gemin-1;GEMIN1;SMA;SMA@;SMA1;SMA2;SMA3;SMA4;SMN;SMNC;SMNT;survival motor neuron 1 protein;survival motor neuron protein;T-BCD541;TDRD16A;TDRD16B;tudor domain containing 16A;tudor domain containing 16B.
NCBI Gene Id6606|6607
Protein NameSurvival motor neuron protein
Description of TargetThe SMN complex plays a catalyst role in the assembly of small nuclear ribonucleoproteins (snRNPs), the building blocks of the spliceosome. Thereby, plays an important role in the splicing of cellular pre-mRNAs. Most spliceosomal snRNPs contain a common set of Sm proteins SNRPB, SNRPD1, SNRPD2, SNRPD3, SNRPE, SNRPF and SNRPG that assemble in a heptameric protein ring on the Sm site of the small nuclear RNA to form the core snRNP. In the cytosol, the Sm proteins SNRPD1, SNRPD2, SNRPE, SNRPF and SNRPG are trapped in an inactive 6S pICln-Sm complex by the chaperone CLNS1A that controls the assembly of the core snRNP. Dissociation by the SMN complex of CLNS1A from the trapped Sm proteins and their transfer to an SMN-Sm complex triggers the assembly of core snRNPs and their transport to the nucleus. Ensures the correct splicing of U12 intron-containing genes that may be important for normal motor and proprioceptive neurons development. Also required for resolving RNA-DNA hybrids created by RNA polymerase II, that form R-loop in transcription terminal regions, an important step in proper transcription termination. May also play a role in the metabolism of small nucleolar ribonucleoprotein (snoRNPs).
Uniprot IDQ16637
Protein Accession #NP_000335.1
Nucleotide Accession #NM_000344.3
Protein Size (# AA)Glu16~Pro251
Molecular Weight33kDa
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