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Structural, functional, and evolutionary relationships between lambda-exonuclease and the type II restriction endonucleases.


ABSTRACT: lambda-exonuclease participates in DNA recombination and repair. It binds a free end of double-stranded DNA and degrades one strand in the 5' to 3' direction. The primary sequence does not appear to be related to any other protein, but the crystal structure shows part of lambda-exonuclease to be similar to the type II restriction endonucleases PvuII and EcoRV. There is also a weaker correspondence with EcoRI, BamHI, and Cfr10I. The structure comparisons not only suggest that these enzymes all share a similar catalytic mechanism and a common structural ancestor but also provide strong evidence that the toroidal structure of lambda-exonuclease encircles its DNA substrate during hydrolysis.

SUBMITTER: Kovall RA 

PROVIDER: S-EPMC20900 | biostudies-literature | 1998 Jul

REPOSITORIES: biostudies-literature

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Structural, functional, and evolutionary relationships between lambda-exonuclease and the type II restriction endonucleases.

Kovall R A RA   Matthews B W BW  

Proceedings of the National Academy of Sciences of the United States of America 19980701 14


lambda-exonuclease participates in DNA recombination and repair. It binds a free end of double-stranded DNA and degrades one strand in the 5' to 3' direction. The primary sequence does not appear to be related to any other protein, but the crystal structure shows part of lambda-exonuclease to be similar to the type II restriction endonucleases PvuII and EcoRV. There is also a weaker correspondence with EcoRI, BamHI, and Cfr10I. The structure comparisons not only suggest that these enzymes all sh  ...[more]

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