Search Results - "Fuhs, Stephen R."

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  1. 1

    Identification of PGAM5 as a Mammalian Protein Histidine Phosphatase that Plays a Central Role to Negatively Regulate CD4+ T Cells by Panda, Saswati, Srivastava, Shekhar, Li, Zhai, Vaeth, Martin, Fuhs, Stephen R., Hunter, Tony, Skolnik, Edward Y.

    Published in Molecular cell (04-08-2016)
    “…Whereas phosphorylation of serine, threonine, and tyrosine is exceedingly well characterized, the role of histidine phosphorylation in mammalian signaling is…”
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    Journal Article
  2. 2

    Histidine phosphorylation relieves copper inhibition in the mammalian potassium channel KCa3.1 by Srivastava, Shekhar, Panda, Saswati, Li, Zhai, Fuhs, Stephen R, Hunter, Tony, Thiele, Dennis J, Hubbard, Stevan R, Skolnik, Edward Y

    Published in eLife (19-08-2016)
    “…KCa2.1, KCa2.2, KCa2.3 and KCa3.1 constitute a family of mammalian small- to intermediate-conductance potassium channels that are activated by…”
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  3. 3

    The protein histidine phosphatase LHPP is a tumour suppressor by Hindupur, Sravanth K., Colombi, Marco, Fuhs, Stephen R., Matter, Matthias S., Guri, Yakir, Adam, Kevin, Cornu, Marion, Piscuoglio, Salvatore, Ng, Charlotte K. Y., Betz, Charles, Liko, Dritan, Quagliata, Luca, Moes, Suzette, Jenoe, Paul, Terracciano, Luigi M., Heim, Markus H., Hunter, Tony, Hall, Michael N.

    Published in Nature (London) (29-03-2018)
    “…Decreased expression of histidine phosphatase LHPP, a novel tumour suppressor, results in increased global histidine phosphorylation and hepatocellular…”
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  4. 4

    Development of a virtual reality platform for effective communication of structural data in drug discovery by Kingsley, Laura J., Brunet, Vincent, Lelais, Gerald, McCloskey, Steve, Milliken, Kelly, Leija, Edgardo, Fuhs, Stephen R., Wang, Kai, Zhou, Edward, Spraggon, Glen

    Published in Journal of molecular graphics & modelling (01-06-2019)
    “…In drug discovery, structural knowledge of a target enables structure-based design approaches and thereby reduces the time and labor required to develop a…”
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  5. 5

    Structural basis for differential recognition of phosphohistidine-containing peptides by 1-pHis and 3-pHis monoclonal antibodies by Kalagiri, Rajasree, Stanfield, Robyn L., Meisenhelder, Jill, La Clair, James J., Fuhs, Stephen R., Wilson, Ian A., Hunter, Tony

    “…In 2015, monoclonal antibodies (mAbs) that selectively recognize the 1-pHis or 3-pHis isoforms of phosphohistidine were developed by immunizing rabbits with…”
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  6. 6
  7. 7

    Caveolin-3 undergoes SUMOylation by the SUMO E3 ligase PIASy: sumoylation affects G-protein-coupled receptor desensitization by Fuhs, Stephen R, Insel, Paul A

    Published in The Journal of biological chemistry (29-04-2011)
    “…Caveolin (Cav) proteins in the plasma membrane have numerous binding partners, but the determinants of these interactions are poorly understood. We show here…”
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  8. 8

    Caveolin-3 Undergoes SUMOylation by the SUMO E3 Ligase PIASy by Fuhs, Stephen R., Insel, Paul A.

    Published in The Journal of biological chemistry (29-04-2011)
    “…Caveolin (Cav) proteins in the plasma membrane have numerous binding partners, but the determinants of these interactions are poorly understood. We show here…”
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    Journal Article
  9. 9

    SUMOylation of caveolin‐3: SUMO‐specific proteases SENP1 and SENP2 regulate deconjugation of SUMO‐3 and poly‐SUMO‐3 chains by Busija, Anna Rebecca, Fuhs, Stephen R., Patel, Hemal H., Insel, Paul A.

    Published in The FASEB journal (01-04-2012)
    “…Abstract only Mechanisms that regulate the interaction of caveolins with partners are poorly understood. We recently reported (JBC 286:14830–41 [2011]) the…”
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