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Crystal structure of a thermostable type B DNA polymerase from Thermococcus gorgonarius.


ABSTRACT: Most known archaeal DNA polymerases belong to the type B family, which also includes the DNA replication polymerases of eukaryotes, but maintain high fidelity at extreme conditions. We describe here the 2.5 A resolution crystal structure of a DNA polymerase from the Archaea Thermococcus gorgonarius and identify structural features of the fold and the active site that are likely responsible for its thermostable function. Comparison with the mesophilic B type DNA polymerase gp43 of the bacteriophage RB69 highlights thermophilic adaptations, which include the presence of two disulfide bonds and an enhanced electrostatic complementarity at the DNA-protein interface. In contrast to gp43, several loops in the exonuclease and thumb domains are more closely packed; this apparently blocks primer binding to the exonuclease active site. A physiological role of this "closed" conformation is unknown but may represent a polymerase mode, in contrast to an editing mode with an open exonuclease site. This archaeal B DNA polymerase structure provides a starting point for structure-based design of polymerases or ligands with applications in biotechnology and the development of antiviral or anticancer agents.

SUBMITTER: Hopfner KP 

PROVIDER: S-EPMC22340 | biostudies-literature | 1999 Mar

REPOSITORIES: biostudies-literature

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Crystal structure of a thermostable type B DNA polymerase from Thermococcus gorgonarius.

Hopfner K P KP   Eichinger A A   Engh R A RA   Laue F F   Ankenbauer W W   Huber R R   Angerer B B  

Proceedings of the National Academy of Sciences of the United States of America 19990301 7


Most known archaeal DNA polymerases belong to the type B family, which also includes the DNA replication polymerases of eukaryotes, but maintain high fidelity at extreme conditions. We describe here the 2.5 A resolution crystal structure of a DNA polymerase from the Archaea Thermococcus gorgonarius and identify structural features of the fold and the active site that are likely responsible for its thermostable function. Comparison with the mesophilic B type DNA polymerase gp43 of the bacteriopha  ...[more]

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