Literature DB >> 17889664

An interlocked dimer of the protelomerase TelK distorts DNA structure for the formation of hairpin telomeres.

Hideki Aihara1, Wai Mun Huang, Tom Ellenberger.   

Abstract

The termini of linear chromosomes are protected by specialized DNA structures known as telomeres that also facilitate the complete replication of DNA ends. The simplest type of telomere is a covalently closed DNA hairpin structure found in linear chromosomes of prokaryotes and viruses. Bidirectional replication of a chromosome with hairpin telomeres produces a catenated circular dimer that is subsequently resolved into unit-length chromosomes by a dedicated DNA cleavage-rejoining enzyme known as a hairpin telomere resolvase (protelomerase). Here we report a crystal structure of the protelomerase TelK from Klebsiella oxytoca phage varphiKO2, in complex with the palindromic target DNA. The structure shows the TelK dimer destabilizes base pairing interactions to promote the refolding of cleaved DNA ends into two hairpin ends. We propose that the hairpinning reaction is made effectively irreversible by a unique protein-induced distortion of the DNA substrate that prevents religation of the cleaved DNA substrate.

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Year:  2007        PMID: 17889664      PMCID: PMC2041798          DOI: 10.1016/j.molcel.2007.07.026

Source DB:  PubMed          Journal:  Mol Cell        ISSN: 1097-2765            Impact factor:   17.970


  83 in total

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5.  The pKO2 linear plasmid prophage of Klebsiella oxytoca.

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  18 in total

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8.  DNA target sequence identification mechanism for dimer-active protein complexes.

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9.  Control of directionality in the DNA strand-exchange reaction catalysed by the tyrosine recombinase TnpI.

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10.  The carboxy-terminal αN helix of the archaeal XerA tyrosine recombinase is a molecular switch to control site-specific recombination.

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Journal:  PLoS One       Date:  2013-05-07       Impact factor: 3.240

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