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Recognition of DNA damage by the Rad4 nucleotide excision repair protein

Authors :
Nikola P. Pavletich
Jung Hyun Min
Source :
Nature. 449:570-575
Publication Year :
2007
Publisher :
Springer Science and Business Media LLC, 2007.

Abstract

Mutations in the nucleotide excision repair (NER) pathway can cause the xeroderma pigmentosum skin cancer predisposition syndrome. NER lesions are limited to one DNA strand, but otherwise they are chemically and structurally diverse, being caused by a wide variety of genotoxic chemicals and ultraviolet radiation. The xeroderma pigmentosum C (XPC) protein has a central role in initiating global-genome NER by recognizing the lesion and recruiting downstream factors. Here we present the crystal structure of the yeast XPC orthologue Rad4 bound to DNA containing a cyclobutane pyrimidine dimer (CPD) lesion. The structure shows that Rad4 inserts a β-hairpin through the DNA duplex, causing the two damaged base pairs to flip out of the double helix. The expelled nucleotides of the undamaged strand are recognized by Rad4, whereas the two CPD-linked nucleotides become disordered. These findings indicate that the lesions recognized by Rad4/XPC thermodynamically destabilize the Watson–Crick double helix in a manner that facilitates the flipping-out of two base pairs. A lasing effect with a single artificial atom (a Josephson-junction charge qubit) that is embedded in a superconducting resonator is demonstrated, making use of the property that such artificial atoms are strongly and controllably coupled to resonator modes. The device is essentially different from existing lasers and masers; one and the same artificial atom excited by current injection produces many photons.

Details

ISSN :
14764687 and 00280836
Volume :
449
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....3f055836f156c476e73e84ee079689e7
Full Text :
https://doi.org/10.1038/nature06155