Structure of human Rad51 protein filament from molecular modeling and site-specific linear dichroism spectroscopy

Archive ouverte

Reymer, A. | Frykholm, K. | Morimatsu, K. | Takahashi, M. | Norden, B.

Edité par CCSD ; National Academy of Sciences -

International audience. To get mechanistic insight into the DNA strand-exchange reaction of homologous recombination, we solved a filament structure of a human Rad51 protein, combining molecular modeling with experimental data. We build our structure on reported structures for central and N-terminal parts of pure (uncomplexed) Rad51 protein by aid of linear dichroism spectroscopy, providing angular orientations of substituted tyrosine residues of Rad51-dsDNA filaments in solution. The structure, validated by comparison with an electron microscopy density map and results from mutation analysis, is proposed to represent an active solution structure of the nucleo-protein complex. An inhomogeneously stretched double-stranded DNA fitted into the filament emphasizes the strategic positioning of 2 putative DNA-binding loops in a way that allows us speculate about their possibly distinct roles in nucleo-protein filament assembly and DNA strand-exchange reaction. The model suggests that the extension of a single-stranded DNA molecule upon binding of Rad51 is ensured by intercalation of Tyr-232 of the L1 loop, which might act as a docking tool, aligning protein monomers along the DNA strand upon filament assembly. Arg-235, also sitting on L1, is in the right position to make electrostatic contact with the phosphate backbone of the other DNA strand. The L2 loop position and its more ordered compact conformation makes us propose that this loop has another role, as a binding site for an incoming double-stranded DNA. Our filament structure and spectroscopic approach open the possibility of analyzing details along the multistep path of the strand-exchange reaction.

Consulter en ligne

Suggestions

Du même auteur

Calorimetric analysis of binding of two consecutive DNA strands to RecA protein illuminates mechanism for recognition of homology.

Archive ouverte | Takahashi, M. | CCSD

International audience. RecA protein recognises two complementary DNA strands for homologous recombination. To gain insight into the molecular mechanism, the thermodynamic parameters of the DNA binding have been cha...

Design of potent inhibitors of human RAD51 recombinase based onBRC motifs of BRCA2 protein: modelling and experimental validation of a chimera peptide

Archive ouverte | Nomme, J. | CCSD

International audience

Adenovirus type 5 fiber knob domain has a critical role in fiber protein synthesis and encapsidation

Archive ouverte | Henning, P. | CCSD

International audience

Chargement des enrichissements...