Faithful duplication of genetic material during every cell division is essential to ensure accurate transmission of genetic information to daughter cells. DNA helicases play a crucial role in promoting this process through by facilitating almost all transactions occurring on DNA, including DNA replication and repair. They are responsible not only for DNA double helix unwinding ahead of progressing replication forks but also for resolution of secondary structures like G4 quadruplexes, HJ branch migration, double HJ dissolution, protein displacement, strand annealing and many more. Their importance in maintaining genome stability is underscored by the fact that many human disorders, including cancer, are associated with mutations in helicase ...
Completion of genome duplication by DNA replication catalyzed at stable replisomes is essential for ...
In all organisms, genetic information is locked within a double helix formed by the two antiparallel...
R-loop proteins present a stable and robust blockade to the progression of a DNA replication fork du...
Maintenance of replication fork stability is of utmost importance for dividing cells to preserve via...
Helicases are molecular motors that translocate along single-stranded DNA and unwind duplex DNA. The...
DNA replication is an essential process conducted by the replisome. This large protein complex is co...
DNA helicases are motor proteins that unwind double-stranded DNA (dsDNA) to reveal single-stranded D...
In Escherichia coli, the DnaB helicase forms the basis for the assembly of the DNA replication compl...
DNA helicases are motor proteins that catalyze the unwinding of double-stranded DNA into single-stra...
International audienceHelicases are ubiquitous molecular motor proteins that utilize the energy deri...
Hexameric helicases are motor proteins that unwind double-stranded DNA (dsDNA) during DNA replicatio...
AbstractDNA is very stable in its double-stranded form. For many processes of DNA metabolism, such a...
The fragile X syndrome (FXS) is caused by a CGG repeat expansion at the fragile X mental retardation...
The maintenance of DNA integrity is a highly involved and regulated process, requiring the coordinat...
Replication of chromosomal DNA is an intricate process carefully orchestrated in all living organism...
Completion of genome duplication by DNA replication catalyzed at stable replisomes is essential for ...
In all organisms, genetic information is locked within a double helix formed by the two antiparallel...
R-loop proteins present a stable and robust blockade to the progression of a DNA replication fork du...
Maintenance of replication fork stability is of utmost importance for dividing cells to preserve via...
Helicases are molecular motors that translocate along single-stranded DNA and unwind duplex DNA. The...
DNA replication is an essential process conducted by the replisome. This large protein complex is co...
DNA helicases are motor proteins that unwind double-stranded DNA (dsDNA) to reveal single-stranded D...
In Escherichia coli, the DnaB helicase forms the basis for the assembly of the DNA replication compl...
DNA helicases are motor proteins that catalyze the unwinding of double-stranded DNA into single-stra...
International audienceHelicases are ubiquitous molecular motor proteins that utilize the energy deri...
Hexameric helicases are motor proteins that unwind double-stranded DNA (dsDNA) during DNA replicatio...
AbstractDNA is very stable in its double-stranded form. For many processes of DNA metabolism, such a...
The fragile X syndrome (FXS) is caused by a CGG repeat expansion at the fragile X mental retardation...
The maintenance of DNA integrity is a highly involved and regulated process, requiring the coordinat...
Replication of chromosomal DNA is an intricate process carefully orchestrated in all living organism...
Completion of genome duplication by DNA replication catalyzed at stable replisomes is essential for ...
In all organisms, genetic information is locked within a double helix formed by the two antiparallel...
R-loop proteins present a stable and robust blockade to the progression of a DNA replication fork du...