Search Results

Overview

Uniprot IDD3ZCL3
Protein NameU1 small nuclear ribonucleoprotein C
Gene NameSnrpc
OrganismRattus norvegicus

Kla Sites from experimental identification

Position Flanking peptide
35 RKHKENVKDYYQKWM

Function

Component of the spliceosomal U1 snRNP, which is essential for recognition of the pre-mRNA 5' splice-site and the subsequent assembly of the spliceosome. SNRPC/U1-C is directly involved in initial 5' splice-site recognition for both constitutive and regulated alternative splicing. The interaction with the 5' splice-site seems to precede base-pairing between the pre-mRNA and the U1 snRNA. Stimulates commitment or early (E) complex formation by stabilizing the base pairing of the 5' end of the U1 snRNA and the 5' splice-site region

Protein Sequence

10 MPKFYCDYCD 20 TYLTHDSPSV 30 RKTHCSGRKH 40 KENVKDYYQK 50 WMEEQAQSLI 60 DKTTAAFQQG 70 KIPPAPFSAP 80 PPAGAMIPPP 90 PSLPGPPRPG 100 MMPAPHMGGP 110 PMMPMMGPPP 120 PGMMPVGPAP 130 GMRPPMGGHM 140 PMMPGPPMMR 150 PPARPMMVPT RPGMTRPDR

Gene Ontology

Classification GO ID Description
Cellular Component GO:0015030 Cajal body
Cellular Component GO:0000243 commitment complex
Cellular Component GO:0005654 nucleoplasm
Cellular Component GO:0071011 precatalytic spliceosome
Cellular Component GO:0005681 spliceosomal complex
Cellular Component GO:0005685 U1 snRNP
Cellular Component GO:0071004 U2-type prespliceosome
Molecular Function GO:0003729 mRNA binding
Molecular Function GO:0030627 pre-mRNA 5'-splice site binding
Molecular Function GO:0042803 protein homodimerization activity
Molecular Function GO:0003727 single-stranded RNA binding
Molecular Function GO:1990446 U1 snRNP binding
Molecular Function GO:0008270 zinc ion binding
Biological Process GO:0000395 mRNA 5'-splice site recognition
Biological Process GO:0000398 mRNA splicing, via spliceosome
Biological Process GO:0000387 spliceosomal snRNP assembly

Reference

[1] Sheng L, Xu H, Wang Y, Ni J, Xiang T et al.. Systematic analysis of lysine lactylation in nucleus pulposus cells.. iScience 27(11):111157. 2024 Nov 15. PMID: 39524337.