The human Rad52 protein exists as a heptameric ring
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S. West | E. Egelman | S. Müller | A. Engel | A. Stasiak | E. Larquet | E. V. Dyck | A. Stasiak | E. Dyck
[1] S. West,et al. Human Dmc1 protein binds DNA as an octameric ring. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[2] S. West,et al. Binding of double-strand breaks in DNA by human Rad52 protein , 1999, Nature.
[3] E. Egelman,et al. Rings and filaments of β protein from bacteriophage λ suggest a superfamily of recombination proteins , 1999 .
[4] M. Botchan,et al. Biochemical and Electron Microscopic Image Analysis of the Hexameric E1 Helicase* , 1999, The Journal of Biological Chemistry.
[5] E. Egelman,et al. Rings and filaments of beta protein from bacteriophage lambda suggest a superfamily of recombination proteins. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[6] S. West,et al. Binding of double-strand breaks in DNA by human Rad52 protein , 1999, Nature.
[7] S. West,et al. Visualisation of human rad52 protein and its complexes with hRad51 and DNA. , 1998, Journal of molecular biology.
[8] S. Kowalczykowski,et al. DNA annealing by RAD52 protein is stimulated by specific interaction with the complex of replication protein A and single-stranded DNA. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[9] M. Jezewska,et al. Does Single-stranded DNA Pass through the Inner Channel of the Protein Hexamer in the Complex with the Escherichia coli DnaB Helicase? , 1998, The Journal of Biological Chemistry.
[10] A. Shinohara,et al. Rad52 forms ring structures and co‐operates with RPA in single‐strand DNA annealing , 1998, Genes to cells : devoted to molecular & cellular mechanisms.
[11] L. Bird,et al. Helicases: a unifying structural theme? , 1998, Current opinion in structural biology.
[12] P. Baumann,et al. Synergistic actions of Rad51 and Rad52 in recombination and DNA repair , 1998, Nature.
[13] A. Shinohara,et al. Stimulation by Rad52 of yeast Rad51- mediated recombination , 1998, Nature.
[14] S. Kowalczykowski,et al. Rad52 protein stimulates DNA strand exchange by Rad51 and replication protein A , 1998, Nature.
[15] K. Johnson,et al. A hexameric helicase encircles one DNA strand and excludes the other during DNA unwinding. , 1997, Biochemistry.
[16] P. Sung. Function of Yeast Rad52 Protein as a Mediator between Replication Protein A and the Rad51 Recombinase* , 1997, The Journal of Biological Chemistry.
[17] Andrej Sali,et al. Crystal Structure of the δ′ Subunit of the Clamp-Loader Complex of E. coli DNA Polymerase III , 1997, Cell.
[18] G. Reddy,et al. Human Rad52 protein promotes single-strand DNA annealing followed by branch migration. , 1997, Mutation research.
[19] J M Carazo,et al. Six molecules of SV40 large T antigen assemble in a propeller-shaped particle around a channel. , 1997, Journal of molecular biology.
[20] Edward H. Egelman,et al. The RecA hexamer is a structural homologue of ring helicases , 1997, Nature Structural Biology.
[21] A. Sali,et al. Crystal structure of the delta' subunit of the clamp-loader complex of E. coli DNA polymerase III. , 1997, Cell.
[22] C. Bendixen,et al. DNA strand annealing is promoted by the yeast Rad52 protein. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[23] E. Egelman,et al. DNA is bound within the central hole to one or two of the six subunits of the T7 DNA helicase , 1996, Nature Structural Biology.
[24] J. Frank,et al. A common-lines based method for determining orientations for N > 3 particle projections simultaneously. , 1996, Ultramicroscopy.
[25] Edward H. Egelman,et al. The hexameric E. coli DnaB helicase can exist in different Quaternary states. , 1996, Journal of molecular biology.
[26] A Leith,et al. SPIDER and WEB: processing and visualization of images in 3D electron microscopy and related fields. , 1996, Journal of structural biology.
[27] J M Carazo,et al. A structural model for the Escherichia coli DnaB helicase based on electron microscopy data. , 1995, Journal of structural biology.
[28] E. Egelman,et al. Bacteriophage T7 helicase/primase proteins form rings around single-stranded DNA that suggest a general structure for hexameric helicases. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[29] J. Haber,et al. DNA structure-dependent requirements for yeast RAD genes in gene conversion , 1995, Nature.
[30] L. Symington,et al. Multiple pathways for homologous recombination in Saccharomyces cerevisiae. , 1995, Genetics.
[31] L. Symington,et al. Use of a chromosomal inverted repeat to demonstrate that the RAD51 and RAD52 genes of Saccharomyces cerevisiae have different roles in mitotic recombination. , 1994, Genetics.
[32] A. Engel,et al. Factors influencing the precision of quantitative scanning transmission electron microscopy , 1992 .
[33] F. Dean,et al. The simian virus 40 T antigen double hexamer assembles around the DNA at the replication origin. , 1992, The Journal of biological chemistry.
[34] J Frank,et al. Three-dimensional reconstruction of single particles embedded in ice. , 1992, Ultramicroscopy.
[35] P. V. von Hippel,et al. Interactions of Escherichia coli transcription termination factor rho with RNA. I. Binding stoichiometries and free energies. , 1988, Journal of molecular biology.
[36] P. V. von Hippel,et al. Interactions of Escherichia coli transcription termination factor rho with RNA. II. Electron microscopy and nuclease protection experiments. , 1988, Journal of molecular biology.
[37] R. Sauer,et al. Domain structure and quaternary organization of the bacteriophage P22 Erf protein. , 1983, Journal of molecular biology.
[38] Joachim Frank,et al. Use of multivariate statistics in analysing the images of biological macromolecules , 1981 .
[39] R. Mortimer,et al. A genetic study of x-ray sensitive mutants in yeast. , 1974, Mutation research.
[40] R A Crowther,et al. Harmonic analysis of electron microscope images with rotational symmetry. , 1971, Journal of molecular biology.