Structural biology of human DPPA3 has been published in Communications Biology (Nao Shiraishi’s, M.S., 2023). We revealed a different binding mode from mouse DPPA3 and elucidated the molecular mechanism of the inhibition of UHRF1 function by human DPPA3 in oogenesis.
Communications Biology: Structural study of hDPPA3 bound to UHRF1 PHD finger is accepted.
Structural biology of human DPPA3 has been published in Communications Biology (Nao Shiraishi’s, M.S., 2023). We revealed a different binding mode from mouse DPPA3 and elucidated the molecular mechanism of the inhibition of UHRF1 function by human DPPA3 in oogenesis.
Link
Communications Biology: Structural study of hDPPA3 bound to UHRF1 PHD finger is accepted.
Structural biology of human DPPA3 has been published in Communications Biology (Nao Shiraishi’s, M.S., 2023). We revealed a different binding mode from mouse DPPA3 and elucidated the molecular mechanism of the inhibition of UHRF1 function by human DPPA3 in oogenesis.
Link
Communications Biology: Structural study of hDPPA3 bound to UHRF1 PHD finger is accepted.
Structural biology of human DPPA3 has been published in Communications Biology (Nao Shiraishi’s, M.S., 2023). We revealed a different binding mode from mouse DPPA3 and elucidated the molecular mechanism of the inhibition of UHRF1 function by human DPPA3 in oogenesis.
