The Mobility of an HIV-1 Integrase Active Site Loop Is Correlated with Catalytic Activity,
- 18 June 1999
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 38 (28) , 8892-8898
- https://doi.org/10.1021/bi9907173
Abstract
Replication of HIV-1 requires the covalent integration of the viral cDNA into the host chromosomal DNA directed by the virus-encoded integrase protein. Here we explore the importance of a protein surface loop near the integrase active site using protein engineering and X-ray crystallography. We have redetermined the structure of the integrase catalytic domain (residues 50−212) using an independent phase set at 1.7 Å resolution. The structure extends helix α4 on its N-terminal side (residues 149−154), thus defining the position of the three conserved active site residues. Evident in this and in previous structures is a conformationally flexible loop composed of residues 141−148. To probe the role of flexibility in this loop, we replaced Gly 140 and Gly 149, residues that appear to act as conformational hinges, with Ala residues. X-ray structures of the catalytic domain mutants G149A and G140A/G149A show further rigidity of α4 and the adjoining loop. Activity assays in vitro revealed that these mutants are impaired in catalysis. The DNA binding affinity, however, is minimally affected by these mutants as assayed by UV cross-linking. We propose that the conformational flexibility of this active site loop is important for a postbinding catalytic step.Keywords
This publication has 12 references indexed in Scilit:
- Sequence specificity of viral end DNA binding by HIV-1 integrase reveals critical regions for protein-DNA interactionThe EMBO Journal, 1998
- Crystal structures of the catalytic domain of HIV-1 integrase free and complexed with its metal cofactor: high level of similarity of the active site with other viral integrases 1 1Edited by R. HuberJournal of Molecular Biology, 1998
- The catalytic domain of human immunodeficiency virus integrase: ordered active site in the F185H mutantFEBS Letters, 1996
- The catalytic domain of avian sarcoma virus integrase: conformation of the active-site residues in the presence of divalent cationsStructure, 1996
- High-resolution Structure of the Catalytic Domain of Avian Sarcoma Virus IntegraseJournal of Molecular Biology, 1995
- SETOR: Hardware-lighted three-dimensional solid model representations of macromoleculesJournal of Molecular Graphics, 1993
- X-ray structure of the DNase I-d(GGTATACC)2 complex at 2·3Å resolutionJournal of Molecular Biology, 1992
- Crystal Structure of the Ribonuclease H Domain of HIV-1 Reverse TranscriptaseScience, 1991
- Structural basis for the 3′-5′ exonuclease activity of Escherichia coli DNA polymerase I: a two metal ion mechanism.The EMBO Journal, 1991
- The avian retroviral integration protein cleaves the terminal sequences of linear viral DNA at the in vivo sites of integrationJournal of Virology, 1989