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#phosphatase — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #phosphatase, aggregated by home.social.

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  1. Apicomplexan #parasite division: @MGissot &co show that the #phosphatase TgPP1 in #Toxoplasma regulates the #CellCycle & amylopectin accumulation by dephosphorylating inner membrane complex & starch-binding domain proteins #PLOSBiology plos.io/3XwMYgj

  2. Apicomplexan #parasite division: @MGissot &co show that the #phosphatase TgPP1 in #Toxoplasma regulates the #CellCycle & amylopectin accumulation by dephosphorylating inner membrane complex & starch-binding domain proteins #PLOSBiology plos.io/3XwMYgj

  3. Apicomplexan #parasite division: @MGissot &co show that the #phosphatase TgPP1 in #Toxoplasma regulates the #CellCycle & amylopectin accumulation by dephosphorylating inner membrane complex & starch-binding domain proteins #PLOSBiology plos.io/3XwMYgj

  4. Apicomplexan #parasite division: @MGissot &co show that the #phosphatase TgPP1 in #Toxoplasma regulates the #CellCycle & amylopectin accumulation by dephosphorylating inner membrane complex & starch-binding domain proteins #PLOSBiology plos.io/3XwMYgj

  5. Apicomplexan #parasite division: @MGissot &co show that the #phosphatase TgPP1 in #Toxoplasma regulates the #CellCycle & amylopectin accumulation by dephosphorylating inner membrane complex & starch-binding domain proteins #PLOSBiology plos.io/3XwMYgj

  6. "We show that migrating #neurons in mice possess a growth cone at the tip of their leading process, similar to that of #axons, in terms of the #cytoskeletal dynamics and functional responsivity through protein tyrosine #phosphatase receptor type sigma (PTPσ). Migrating-neuron growth cones respond to chondroitin sulfate (CS) through PTPσ and collapse, which leads to inhibition of #neuronal migration."

    nature.com/articles/s41467-024

  7. "We show that migrating #neurons in mice possess a growth cone at the tip of their leading process, similar to that of #axons, in terms of the #cytoskeletal dynamics and functional responsivity through protein tyrosine #phosphatase receptor type sigma (PTPσ). Migrating-neuron growth cones respond to chondroitin sulfate (CS) through PTPσ and collapse, which leads to inhibition of #neuronal migration."

    nature.com/articles/s41467-024

  8. "We show that migrating #neurons in mice possess a growth cone at the tip of their leading process, similar to that of #axons, in terms of the #cytoskeletal dynamics and functional responsivity through protein tyrosine #phosphatase receptor type sigma (PTPσ). Migrating-neuron growth cones respond to chondroitin sulfate (CS) through PTPσ and collapse, which leads to inhibition of #neuronal migration."

    nature.com/articles/s41467-024

  9. "We show that migrating #neurons in mice possess a growth cone at the tip of their leading process, similar to that of #axons, in terms of the #cytoskeletal dynamics and functional responsivity through protein tyrosine #phosphatase receptor type sigma (PTPσ). Migrating-neuron growth cones respond to chondroitin sulfate (CS) through PTPσ and collapse, which leads to inhibition of #neuronal migration."

    nature.com/articles/s41467-024

  10. "We show that migrating #neurons in mice possess a growth cone at the tip of their leading process, similar to that of #axons, in terms of the #cytoskeletal dynamics and functional responsivity through protein tyrosine #phosphatase receptor type sigma (PTPσ). Migrating-neuron growth cones respond to chondroitin sulfate (CS) through PTPσ and collapse, which leads to inhibition of #neuronal migration."

    nature.com/articles/s41467-024

  11. The EGFR #phosphatase RPTPγ is a #redox-regulated suppressor of promigratory signaling
    Maitreyi Joshi, Philippe Bastiaens et al show that #RPTPγ is coupled to autocatalytic, ligandless #EGFR #phosphorylation by a ROS-mediated toggle-switch, enabling ultrasensitive EGFR activation at the plasma membrane
    embopress.org/doi/10.15252/emb

  12. The EGFR #phosphatase RPTPγ is a #redox-regulated suppressor of promigratory signaling
    Maitreyi Joshi, Philippe Bastiaens et al show that #RPTPγ is coupled to autocatalytic, ligandless #EGFR #phosphorylation by a ROS-mediated toggle-switch, enabling ultrasensitive EGFR activation at the plasma membrane
    embopress.org/doi/10.15252/emb

  13. The EGFR #phosphatase RPTPγ is a #redox-regulated suppressor of promigratory signaling
    Maitreyi Joshi, Philippe Bastiaens et al show that #RPTPγ is coupled to autocatalytic, ligandless #EGFR #phosphorylation by a ROS-mediated toggle-switch, enabling ultrasensitive EGFR activation at the plasma membrane
    embopress.org/doi/10.15252/emb

  14. The EGFR #phosphatase RPTPγ is a #redox-regulated suppressor of promigratory signaling
    Maitreyi Joshi, Philippe Bastiaens et al show that #RPTPγ is coupled to autocatalytic, ligandless #EGFR #phosphorylation by a ROS-mediated toggle-switch, enabling ultrasensitive EGFR activation at the plasma membrane
    embopress.org/doi/10.15252/emb

  15. The first serial synchrotron crystallography structure of apo PTP1B indicates a degree of allosteric decoupling that adds nuance to the previously reported paradigm of allostery in this protein #XRayCrystallography #Phosphatase #Allostery #openaccess doi.org/10.1107/S2053230X22011

  16. The first serial synchrotron crystallography structure of apo PTP1B indicates a degree of allosteric decoupling that adds nuance to the previously reported paradigm of allostery in this protein #XRayCrystallography #Phosphatase #Allostery #openaccess doi.org/10.1107/S2053230X22011

  17. Happy New Year 2023!
    Our first issue brings:

    #Calreticulin conformation changes in cold response

    Mammalian #CDC14 #phosphatase controls #stemness exit in #pluripotent cells

    #Exosomal #interleukin release via #IQGAP1-mediated #gasdermin-#ESCRT bridging

    #Microglial TNFα and cortical protein #phosphorylation during #sleep

    ...and more:
    embopress.org/toc/14602075/202

  18. Happy New Year 2023!
    Our first issue brings:

    #Calreticulin conformation changes in cold response

    Mammalian #CDC14 #phosphatase controls #stemness exit in #pluripotent cells

    #Exosomal #interleukin release via #IQGAP1-mediated #gasdermin-#ESCRT bridging

    #Microglial TNFα and cortical protein #phosphorylation during #sleep

    ...and more:
    embopress.org/toc/14602075/202

  19. Happy New Year 2023!
    Our first issue brings:

    #Calreticulin conformation changes in cold response

    Mammalian #CDC14 #phosphatase controls #stemness exit in #pluripotent cells

    #Exosomal #interleukin release via #IQGAP1-mediated #gasdermin-#ESCRT bridging

    #Microglial TNFα and cortical protein #phosphorylation during #sleep

    ...and more:
    embopress.org/toc/14602075/202

  20. Happy New Year 2023!
    Our first issue brings:

    #Calreticulin conformation changes in cold response

    Mammalian #CDC14 #phosphatase controls #stemness exit in #pluripotent cells

    #Exosomal #interleukin release via #IQGAP1-mediated #gasdermin-#ESCRT bridging

    #Microglial TNFα and cortical protein #phosphorylation during #sleep

    ...and more:
    embopress.org/toc/14602075/202

  21. Happy New Year 2023!
    Our first issue brings:

    #Calreticulin conformation changes in cold response

    Mammalian #CDC14 #phosphatase controls #stemness exit in #pluripotent cells

    #Exosomal #interleukin release via #IQGAP1-mediated #gasdermin-#ESCRT bridging

    #Microglial TNFα and cortical protein #phosphorylation during #sleep

    ...and more:
    embopress.org/toc/14602075/202