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Crystal structure of Bacillus subtilis SPP1 phage gp23.1, a putative chaperone
Article first published online: 27 JUL 2010
DOI: 10.1002/pro.464
Copyright © 2010 The Protein Society
Additional Information
How to Cite
Veesler, D., Blangy, S., Lichière, J., Ortiz-Lombardía, M., Tavares, P., Campanacci, V. and Cambillau, C. (2010), Crystal structure of Bacillus subtilis SPP1 phage gp23.1, a putative chaperone. Protein Science, 19: 1812–1816. doi: 10.1002/pro.464
Publication History
- Issue published online: 23 AUG 2010
- Article first published online: 27 JUL 2010
- Manuscript Accepted: 23 JUN 2010
- Manuscript Received: 20 MAY 2010
Funded by
- ANR. Grant Numbers: BLAN07-1_191968, ANR-07-BLAN-0095
- Ministère français de l'Enseignement Supérieur et de la Recherche. Grant Number: 22976-2006
References
- 1, ( 2002) Phage genomics: small is beautiful. Cell 108: 13–16.
- 2, , , , , , , ( 2007) Structure of bacteriophage SPP1 tail reveals trigger for DNA ejection. EMBO J 26: 3720–3728.
- 3, , , , , ( 1992) Identification of a gene in Bacillus subtilis bacteriophage SPP1 determining the amount of packaged DNA. J Mol Biol 225: 81–92.
- 4, , ( 2004) Bacillus subtilis operon encoding a membrane receptor for bacteriophage SPP1. J Bacteriol 186: 8337–8346.
- 5, , , , , , ( 2006) The ectodomain of the viral receptor YueB forms a fiber that triggers ejection of bacteriophage SPP1 DNA. J Biol Chem 281: 11464–11470.
- 6, , , , , , , (in review) Crystal structure of bacteriophage SPP1 Dit (gp 19.1): a paradigm for the adsorption apparatus hub in gram+ infecting phages. J Biol Chem (in review).
- 7, , , , , (2010) Crystal structure of the gene 22 product of the Bacillus subtilis SPP1 phage. Prot Sci 19: 1439–1443.Direct Link:
- 8, , , , ( 2008) In vitro self-assembly of tailorable nanotubes from a simple protein building block. Proc Natl Acad Sci USA 105: 3733–3738.
- 9, , , , , , , , , , , ( 2009) Structure of bacteriophage SPP1 head-to-tail connection reveals mechanism for viral DNA gating. Proc Natl Acad Sci USA 106: 8507–8512.
- 10, , , , , , , ( 2003) Medium-scale structural genomics: strategies for protein expression and crystallization. Acc Chem Res 36: 165–172.
- 11( 1997) Preparation of selenomethionyl proteins for phase determination. Methods Enzymol 276: 523–530.
- 12, , , , , , , , , , , , , , , , , , , , , , , , ( 2002) A medium-throughput crystallization approach. Acta Cryst D58: 2109–2115.
- 13
- 14
- 15, , , , , , , , ( 2009) Decision-making in structure solution using Bayesian estimates of map quality: the PHENIX AutoSol wizard. Acta Cryst D65: 582–601.
- 16
- 17
- 18( 2002) Automated structure solution, density modification and model building. Acta Cryst D58: 1937–1940.
- 19
- 20, , , , , ( 2007) Phaser crystallographic software. J Appl Cryst 40: 658–674.Direct Link:
- 21
- 22, , , ( 2009) Automatic multiple-zone rigid-body refinement with a large convergence radius. J Appl Cryst 42: 607–615.Direct Link:
- 23, , , , ( 2004) Refinement of severely incomplete structures with maximum likelihood in BUSTER-TNT. Acta Cryst D60: 2210–2221.
- 24, ( 2006) Optimal description of a protein structure in terms of multiple groups undergoing TLS motion. Acta Cryst D62: 439–450.
- 25, ( 2007) Inference of macromolecular assemblies from crystalline state. J Mol Biol 372: 774–797.
- 26, , , ( 2008) Searching protein structure databases with DaliLite v.3. Bioinformatics 24: 2780–2781.
- 27, , , ( 2004) PDB 2PQR: an automated pipeline for the setup of Poisson-Boltzmann electrostatics calculations. Nucleic Acids Res 32: W665–W667.
- 28, ( 1993) Multigrid solution of the Poisson-Boltzmann equation. J Comput Chem 14: 105–113.Direct Link:
- 29, , , , , , ( 2004) UCSF Chimera—a visualization system for exploratory research and analysis. J Comput Chem 25: 1605–1612.Direct Link:
- 30, et al. (in press) Solution and electron microscopy characterization of lactococcal phage baseplates expressed in Escherichia coli. J Struct Biol.
- 31, , , , , ( 2009) Production and biophysical characterization of the CorA transporter from Methanosarcina mazei. Anal Biochem 388: 115–121.
- 32, , , , , , , , , , ( 2009) Crystal structure and function of a DARPin neutralizing inhibitor of lactococcal phage TP901-1: comparison of DARPin and camelid VHH binding mode. J Biol Chem 284: 30718–30726.

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