Helicase: Difference between revisions

From Proteopedia
Jump to navigationJump to search
Michal Harel (talk | contribs)
No edit summary
Michal Harel (talk | contribs)
No edit summary
Line 5: Line 5:
*'''ATP-dependent helicase Rho''' is a protein involved in termination of transcription in prokaryotes.  Rho binds to the transcription terminator site on single-stranded RNA.  Rho forms a ring-shaped hexamer and advances along the mRNA until it reaches the RNA polymerase and causing it to dissociate from the DNA and end transcription.<br />
*'''ATP-dependent helicase Rho''' is a protein involved in termination of transcription in prokaryotes.  Rho binds to the transcription terminator site on single-stranded RNA.  Rho forms a ring-shaped hexamer and advances along the mRNA until it reaches the RNA polymerase and causing it to dissociate from the DNA and end transcription.<br />
*'''ATP-dependent helicase RuvB-like 1''' (RuvBL1) or '''TIP49''' is a human protein which forms hexamers.  The hexamer forms dodecamer upon association with RuvBL2 or '''TIP48''' and the complex possesses single-stranded DNA-stimulated ATPase and helicase activities.
*'''ATP-dependent helicase RuvB-like 1''' (RuvBL1) or '''TIP49''' is a human protein which forms hexamers.  The hexamer forms dodecamer upon association with RuvBL2 or '''TIP48''' and the complex possesses single-stranded DNA-stimulated ATPase and helicase activities.
*'''ATP-dependent DNA helicase RecG''' or '''RecG''' is an ''E. coli'' protein which acts in recombination and repair of damaged DNA<ref>PMID:8428576</ref> .  RecG processes Holliday junctions to mature products.  See details in [[RecG Bound to Three-Way DNA Junction]].
*'''DnaB''' and '''DinG''' exhibit helicase and ATPase activities<ref>PMID:24387047</ref>.
*'''DnaB''' and '''DinG''' exhibit helicase and ATPase activities<ref>PMID:24387047</ref>.
*'''BLM helicase''' or '''Bloom syndrome protein''' can unwind DNA secondary structures<ref>PMID:37503837</ref>.
*'''BLM helicase''' or '''Bloom syndrome protein''' can unwind DNA secondary structures<ref>PMID:37503837</ref>.
Line 13: Line 14:
*'''Cas3 helicase''' exhibits helicase, nuclease and ATPase activities<ref>PMID:25981480</ref>.
*'''Cas3 helicase''' exhibits helicase, nuclease and ATPase activities<ref>PMID:25981480</ref>.
*'''Aquarius helicase''' is an RNA helicase that binds pre-mRNA introns to defined position<ref>PMID:25599396</ref>.
*'''Aquarius helicase''' is an RNA helicase that binds pre-mRNA introns to defined position<ref>PMID:25599396</ref>.
For details of PcrA helicase see<br />
For details of PcrA helicase see<br />
*[[Molecular Playground/PcrA Helicase]]<br />e
*[[Molecular Playground/PcrA Helicase]]<br />e