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    PPP1R8 protein phosphatase 1 regulatory subunit 8 [ Homo sapiens (human) ]

    Gene ID: 5511, updated on 2-May-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    PP1 regulatory subunit NIPP1 regulates transcription of E2F1 target genes following DNA damage.

    PP1 regulatory subunit NIPP1 regulates transcription of E2F1 target genes following DNA damage.
    Hanaki S, Habara M, Masaki T, Maeda K, Sato Y, Nakanishi M, Shimada M., Free PMC Article

    07/10/2021
    PP1-NIPP1 expression resulted in the build up of RNA-DNA hybrids (R-loops), enhanced chromatin compaction and a diminished repair of DNA double-strand breaks.

    Overexpression of PP1-NIPP1 limits the capacity of cells to repair DNA double-strand breaks.
    Winkler C, Rouget R, Wu D, Beullens M, Van Eynde A, Bollen M.

    11/23/2019
    NIPP1 could be activated by hypoxia and contributed to hypoxia-induced invasive and metastatic potential in hepatocellular carcinoma.

    Hypoxia-induced NIPP1 activation enhances metastatic potential and predicts poor prognosis in hepatocellular carcinoma.
    Huang Y, Tao Y, Hu K, Lin F, Li X, Feng T, Wang ZM.

    03/4/2017
    Data suggest overexpression of NIPP1 in HeLa cells causes induction of genes of mesenchymal lineage with reduction in cell proliferation; thus, key dephosphorylation events may be involved in epithelial-mesenchymal transition or transdifferentiation.

    Protein phosphatase PP1-NIPP1 activates mesenchymal genes in HeLa cells.
    Van Dessel N, Boens S, Lesage B, Winkler C, Görnemann J, Van Eynde A, Bollen M.

    08/1/2015
    PP1/NIPP1 is a novel molecular compass that controls directed cell migration.

    A role for PP1/NIPP1 in steering migration of human cancer cells.
    Martin-Granados C, Prescott AR, Van Dessel N, Van Eynde A, Arocena M, Klaska IP, Görnemann J, Beullens M, Bollen M, Forrester JV, McCaig CD., Free PMC Article

    03/23/2013
    The molecular basis by which NIPP1 directs PP1 substrate specificity in the nucleus.

    The molecular basis for substrate specificity of the nuclear NIPP1:PP1 holoenzyme.
    O'Connell N, Nichols SR, Heroes E, Beullens M, Bollen M, Peti W, Page R., Free PMC Article

    03/23/2013
    NIPP1 works as a molecular sensor for PP1 to recognize phosphorylated Sap155.

    Nuclear inhibitor of protein phosphatase-1 (NIPP1) directs protein phosphatase-1 (PP1) to dephosphorylate the U2 small nuclear ribonucleoprotein particle (snRNP) component, spliceosome-associated protein 155 (Sap155).
    Tanuma N, Kim SE, Beullens M, Tsubaki Y, Mitsuhashi S, Nomura M, Kawamura T, Isono K, Koseki H, Sato M, Bollen M, Kikuchi K, Shima H.

    01/21/2010
    NMR structure of the NIPP1 FHA domain.

    The NMR structure of the NIPP1 FHA domain.
    Kumeta H, Ogura K, Adachi S, Fujioka Y, Tanuma N, Kikuchi K, Inagaki F.

    01/21/2010
    Required for the global trimethylation of histone3 at lysine27 and is implicated in gene silencing by enhancer of zeste homolog (EZH)2.

    The transcriptional repressor NIPP1 is an essential player in EZH2-mediated gene silencing.
    Nuytten M, Beke L, Van Eynde A, Ceulemans H, Beullens M, Van Hummelen P, Fuks F, Bollen M.

    01/21/2010
    NIPP1 is present in a complex with EED and EZH2 in vivo and has distinct binding sites for these proteins.

    The transcriptional repression by NIPP1 is mediated by Polycomb group proteins.
    Roy N, Van Eynde A, Beke L, Nuytten M, Bollen M.

    01/21/2010
    NIPP1 has a role in the nuclear targeting and/or retention of PP1

    Interactor-mediated nuclear translocation and retention of protein phosphatase-1.
    Lesage B, Beullens M, Nuytten M, Van Eynde A, Keppens S, Himpens B, Bollen M.

    01/21/2010
    The protein phosphatase-1 regulator NIPP1 is also a splicing factor involved in a late step of spliceosome assembly

    The protein phosphatase-1 regulator NIPP1 is also a splicing factor involved in a late step of spliceosome assembly.
    Beullens M, Bollen M.

    01/21/2010
    We demonstrate that interaction with NIPP1 mediates decreased PP1gamma activity in hypoxia, an event which may constitute an inherent part of the cellular oxygen-sensing machinery and may play a role in physiologic adaptation to hypoxia.

    Regulation of protein phosphatase 1gamma activity in hypoxia through increased interaction with NIPP1: implications for cellular metabolism.
    Comerford KM, Leonard MO, Cummins EP, Fitzgerald KT, Beullens M, Bollen M, Taylor CT.

    01/21/2010
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