We used mESC neural differentiation, genome editing and bulk & single-cell approaches to uncover how ZIC2 controls early neural fate by playing a dual and sequential regulatory role as a promiscous pioneer and a selective lineage-specific activator.
We used mESC neural differentiation, genome editing and bulk & single-cell approaches to uncover how ZIC2 controls early neural fate by playing a dual and sequential regulatory role as a promiscous pioneer and a selective lineage-specific activator.
We used mESC neural differentiation, genome editing and bulk & single-cell approaches to uncover how ZIC2 controls early neural fate by playing a dual and sequential regulatory role as a promiscous pioneer and a selective lineage-specific activator.
Wrap up the week exploring how mobile genetic elements (MGEs) drive pangenome structure: Salmonella enterica serovar Typhi.
journals.asm.org/doi/full/10....
#Plasmid #MGEs #Salmonella
Wrap up the week exploring how mobile genetic elements (MGEs) drive pangenome structure: Salmonella enterica serovar Typhi.
journals.asm.org/doi/full/10....
#Plasmid #MGEs #Salmonella
A week packed with exciting science, valuable discussions (not always about science), and new friendships. 👨👩👧👦
#Plasmid #MGEs #EMBOWorkshop
A week packed with exciting science, valuable discussions (not always about science), and new friendships. 👨👩👧👦
#Plasmid #MGEs #EMBOWorkshop