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Sep. 10, 2014:
A total of 174 experimentally verified S-nitrosylation sites on 94 S-nitrosylated proteins from individualized human colorectal cancer tissues using a label-free quantitation strategy.

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Protein Name: Speckle targeted PIP5K1A-regulated poly(A) polymerase

UniprotKB/SwissProt ID: Q9H6E5 (Q9H6E5)

Gene Name: TUT1

Organism: Homo sapiens (Human)

Function: Poly(A) polymerase that creates the 3'-poly(A) tail of specific pre-mRNAs (PubMed:18288197, PubMed:21102410). Localizes to nuclear speckles together with PIP5K1A and mediates polyadenylation of a select set of mRNAs, such as HMOX1 (PubMed:18288197). In addition to polyadenylation, it is also required for the 3'-end cleavage of pre-mRNAs: binds to the 3'UTR of targeted pre-mRNAs and promotes the recruitment and assembly of the CPSF complex on the 3'UTR of pre-mRNAs (PubMed:21102410). In addition to adenylyltransferase activity, also has uridylyltransferase activity (PubMed:16790842, PubMed:18288197, PubMed:28589955). However, the ATP ratio is higher than UTP in cells, suggesting that it functions primarily as a poly(A) polymerase (PubMed:18288197). Acts as a specific terminal uridylyltransferase for U6 snRNA in vitro: responsible for a controlled elongation reaction that results in the restoration of the four 3'-terminal UMP-residues found in newly transcribed U6 snRNA (PubMed:16790842, PubMed:18288197, PubMed:28589955). Not involved in replication-dependent histone mRNA degradation

Other Modifications: View all modification sites in dbPTM

Protein Subcellular Localization: Nucleus, nucleolus. Nucleus speckle

Graphical Visualization of S-nitrosylation Sites:
InterPro ID Domain Name
IPR054708 MTPAP-like_central
IPR043519 NT_sf
IPR012677 Nucleotide-bd_a/b_plait_sf
IPR002058 PAP_assoc
IPR035979 RBD_domain_sf
IPR000504 RRM_dom
IPR034388 Star-PAP_RRM
IPR036236 Znf_C2H2_sf
IPR013087 Znf_C2H2_type

The S-nitrosylation sites of Q9H6E5

No. Position S-nitrosylated Peptide Secondary Structure of S-nitrosylated Peptide Solvent Accessibility of nitrosylated Site PubMed ID
1 473 GEQVEVDGWD C SFPRDASRLE   
2 768 ASLPSSASWR C ALWHRVWQGR