Interaction of the Cysteine-Rich Domain of the Paramecium domesticated transposase PiggyMac with histone H3

Archive ouverte

Bessa, Luiza Mamigonian | Guérineau, Marc | Moriau, Séverine | Assrir, Nadine | Lescop, Ewen | Bontems, François | van Heijenoort, Carine | Guittet, Éric | Bétermier, Mireille | Bischerour, Julien | Morellet, Nelly

Edité par CCSD -

International audience. The piggyBac transposase (PB) is distinguished by its activity and utility in genome engineering, especially in humans where it has highly promising therapeutic potential. Little is known, however, about the structure-function relationships of the different domains of PB. Here, we demonstrate in vitro and in vivo that its C-terminal Cysteine-Rich Domain (CRD) is essential for DNA breakage, joining and transposition and that it binds to specific DNA sequences in the left and right transposon ends, and to an additional unexpectedly internal site at the left end. Using NMR, we show that the CRD adopts the specific fold of the cross-brace zinc finger protein family. We determine the interaction interfaces between the CRD and its target, the 5-TGCGT-3 /3-ACGCA-5 motifs found in the left, left internal and right transposon ends, and use NMR results to propose docking models for the complex, which are consistent with our site-directed mutagenesis data. Our results provide support for a model of the PB/DNA interactions in the context of the transpososome, which will be useful for the rational design of PB mutants with increased activity.

Suggestions

Du même auteur

$^1$H, $^{13}$C and $^{15}$N Backbone chemical shift assignments of the n-terminal and central intrinsically disordered domains of SARS-CoV-2 nucleoprotein

Archive ouverte | Guseva, Serafima | CCSD

International audience. The nucleoprotein (N) from SARS-CoV-2 is an essential cofactor of the viral replication transcription complex and as such represents an important target for viral inhibition. It has also been...

A specific phosphorylation-dependent conformational switch in SARS-CoV-2 nucleocapsid protein inhibits RNA binding

Archive ouverte | Botova, Maiia | CCSD

International audience. The nucleocapsid protein of severe acute respiratory syndrome coronavirus 2 encapsidates the viral genome and is essential for viral function. The central disordered domain comprises a serine...

1H, 13C and 15N backbone chemical shift assignments of SARS-CoV-2 nsp3a

Archive ouverte | Salvi, Nicola | CCSD

International audience. The non-structural protein nsp3 from SARS-CoV-2 plays an essential role in the viral replication transcription complex. Nsp3a constitutes the N-terminal domain of nsp3, comprising a ubiquitin...

Chargement des enrichissements...