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IID00524
UniprotO14893
ProteinGem-associated protein 2
GeneGEMIN2
OrganismHomo sapiens
Sequence LLPS PhaSepDB
PhaSePro
LLPSDB
DrLLPS
Network xml rdf
Structure
Experiment
  :order   disorder   conflict   PDB cluster   ProS   Pfam Domain   SEG
280
 order/disorder by at least rule
     disorder by at least rule
     order by at least rule
 order/disorder by majority rule
Seq 95-280 Hetero dimer : IID00569Complex
 Evidence NMR 2leh A Reference
       Region 2leh A 95-280 order
       Region 2leh A 95-97 high_rmsd
       Region 2leh A 132-132 high_rmsd
       Region 2leh A 156-174 high_rmsd
       Region 2leh A 279-280 high_rmsd
Seqphosphorylation
    166-166 Phosphoserine
    81-81 Phosphoserine
 
Prediction
NeProc
Disorder 1-23,126-130,158-169,277-280
Order 24-125,131-157,170-276
ProS 1-16,164-169,277-280
AlphaFold
Disorder 1-40,131-131,152-169,172-172,280-280
Order 41-130,132-151,170-171,173-279
Pfam Hmmer
PF04938 28-274 1.8e-175
Function
Function in SwissProt
The 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.