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“Cytoplasmic and extracellular expression of pharmaceutical-grade mycobacterial 65-kDa heat shock protein in Lactococcus lactis”, vol. 11, pp. 1146-1157, 2012.
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Bermudez-Humaran LG, Langella P, Commissaire J, Gilbert S, et al. (2003). Controlled intra- or extracellular production of staphylococcal nuclease and ovine omega interferon in Lactococcus lactis. FEMS Microbiol. Lett. 224: 307-313.
http://dx.doi.org/10.1016/S0378-1097(03)00475-0
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http://dx.doi.org/10.1016/0003-2697(76)90527-3
Brondyk WH (2009). Selecting an appropriate method for expressing a recombinant protein. Methods Enzymol. 463: 131-147.
http://dx.doi.org/10.1016/S0076-6879(09)63011-1
Bryant CE, Spring DR, Gangloff M and Gay NJ (2010). The molecular basis of the host response to lipopolysaccharide. Nat. Rev. Microbiol. 8: 8-14.
PMid:19946286
Cardoso LS, Araujo MI, Goes AM, Pacifico LG, et al. (2007). Polymyxin B as inhibitor of LPS contamination of Schistosoma mansoni recombinant proteins in human cytokine analysis. Microb. Cell Fact. 6: 1.
http://dx.doi.org/10.1186/1475-2859-6-1
PMid:17201926 PMCid:1766364
Demain AL and Vaishnav P (2009). Production of recombinant proteins by microbes and higher organisms. Biotechnol. Adv. 27: 297-306.
http://dx.doi.org/10.1016/j.biotechadv.2009.01.008
PMid:19500547
Du Y, Gisselberg JE, Johnson JD, Lee PJ, et al. (2010). Lactococcus lactis fabH, encoding beta-ketoacyl-acyl carrier protein synthase, can be functionally replaced by the Plasmodium falciparum congener. Appl. Environ. Microbiol. 76: 3959-3966.
http://dx.doi.org/10.1128/AEM.00170-10
PMid:20418430 PMCid:2893474
Frelet-Barrand A, Boutigny S, Kunji ER and Rolland N (2010). Membrane protein expression in Lactococcus lactis. Methods Mol. Biol. 601: 67-85.
http://dx.doi.org/10.1007/978-1-60761-344-2_5
PMid:20099140
Gao B and Tsan MF (2003). Endotoxin contamination in recombinant human heat shock protein 70 (Hsp70) preparation is responsible for the induction of tumor necrosis factor alpha release by murine macrophages. J. Biol. Chem. 278: 174-179.
http://dx.doi.org/10.1074/jbc.M208742200
PMid:12403778
Jamet E (2001). Etude de L'expression et de la Régulation des Gènes Impliqués Dans le Métabolisme Carboné Chez Lactococcus lactis. Institut National Agronomique de Paris-Grignon, Paris.
PMCid:99637
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http://dx.doi.org/10.1038/227680a0
PMid:5432063
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PMid:8051029 PMCid:196356
Le Loir Y, Gruss A, Ehrlich SD and Langella P (1998). A nine-residue synthetic propeptide enhances secretion efficiency of heterologous proteins in Lactococcus lactis. J. Bacteriol. 180: 1895-1903.
PMid:9537390 PMCid:107105
Le Loir Y, Azevedo V, Oliveira SC, Freitas DA, et al. (2005). Protein secretion in Lactococcus lactis: an efficient way to increase the overall heterologous protein production. Microb. Cell Fact. 4: 2.
http://dx.doi.org/10.1186/1475-2859-4-2
PMid:15631634 PMCid:545053
Lindquist S and Craig EA (1988). The heat-shock proteins. Annu. Rev. Genet. 22: 631-677.
http://dx.doi.org/10.1146/annurev.ge.22.120188.003215
PMid:2853609
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http://dx.doi.org/10.1016/S0264-410X(97)00073-X
Magalhaes PO, Lopes AM, Mazzola PG, Rangel-Yagui C, et al. (2007). Methods of endotoxin removal from biological preparations: a review. J. Pharm. Pharm. Sci. 10: 388-404.
PMid:17727802
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http://dx.doi.org/10.1016/0196-9781(93)90155-A
Marinho FA, Pacifico LG, Miyoshi A, Azevedo V, et al. (2010). An intranasal administration of Lactococcus lactis strains expressing recombinant interleukin-10 modulates acute allergic airway inflammation in a murine model. Clin. Exp. Allergy 40: 1541-1551.
http://dx.doi.org/10.1111/j.1365-2222.2010.03502.x
PMid:20412136
Mierau I and Kleerebezem M (2005). 10 years of the nisin-controlled gene expression system (NICE) in Lactococcus lactis. Appl. Microbiol. Biotechnol. 68: 705-717.
http://dx.doi.org/10.1007/s00253-005-0107-6
PMid:16088349
Miyoshi A, Jamet E, Commissaire J, Renault P, et al. (2004). A xylose-inducible expression system for Lactococcus lactis. FEMS Microbiol. Lett. 239: 205-212.
http://dx.doi.org/10.1016/j.femsle.2004.08.018
PMid:15476967
Morello E, Bermudez-Humaran LG, Llull D, Sole V, et al. (2008). Lactococcus lactis, an efficient cell factory for recombinant protein production and secretion. J. Mol. Microbiol. Biotechnol. 14: 48-58.
http://dx.doi.org/10.1159/000106082
PMid:17957110
Osterloh A, Kalinke U, Weiss S, Fleischer B, et al. (2007). Synergistic and differential modulation of immune responses by Hsp60 and lipopolysaccharide. J. Biol. Chem. 282: 4669-4680.
http://dx.doi.org/10.1074/jbc.M608666200
PMid:17164250
Poquet I, Saint V, Seznec E, Simoes N, et al. (2000). HtrA is the unique surface housekeeping protease in Lactococcus lactis and is required for natural protein processing. Mol. Microbiol. 35: 1042-1051.
http://dx.doi.org/10.1046/j.1365-2958.2000.01757.x
PMid:10712686
Rajaiah R and Moudgil KD (2009). Heat-shock proteins can promote as well as regulate autoimmunity. Autoimmun. Rev. 8: 388-393.
http://dx.doi.org/10.1016/j.autrev.2008.12.004
PMid:19121415 PMCid:2668694
Salek-Ardakani S, Stuart AD, Arrand JE, Lyons S, et al. (2002). High level expression and purification of the Epstein-Barr virus encoded cytokine viral interleukin 10: efficient removal of endotoxin. Cytokine 17: 1-13.
http://dx.doi.org/10.1006/cyto.2001.0990
PMid:11886166
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Santos-Junior RR, Sartori A, De Franco M, Filho Ribeiro OG, et al. (2005). Immunomodulation and protection induced by DNA-hsp65 vaccination in an animal model of arthritis. Hum. Gene Ther. 16: 1338-1345.
http://dx.doi.org/10.1089/hum.2005.16.1338
PMid:16259568
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http://dx.doi.org/10.1146/annurev.biochem.67.1.581
PMid:9759498
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http://dx.doi.org/10.1016/S1286-4579(99)80046-X
Terpe K (2006). Overview of bacterial expression systems for heterologous protein production: from molecular and biochemical fundamentals to commercial systems. Appl. Microbiol. Biotechnol. 72: 211-222.
http://dx.doi.org/10.1007/s00253-006-0465-8
PMid:16791589
Tsan MF and Gao B (2009). Heat shock proteins and immune system. J. Leukoc. Biol. 85: 905-910.
http://dx.doi.org/10.1189/jlb.0109005
PMid:19276179
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http://dx.doi.org/10.1016/0378-1119(90)90428-T
Van Huynegem K, Loos M and Steidler L (2009). Immunomodulation by genetically engineered lactic acid bacteria. Front Biosci. 14: 4825-4835.
http://dx.doi.org/10.2741/3571
PMid:19482589
Victora GD, Socorro-Silva A, Volsi EC, Abdallah K, et al. (2009). Immune response to vaccination with DNA-Hsp65 in a phase I clinical trial with head and neck cancer patients. Cancer Gene Ther. 16: 598-608.
http://dx.doi.org/10.1038/cgt.2009.9
PMid:19197326
Wells JM and Mercenier A (2008). Mucosal delivery of therapeutic and prophylactic molecules using lactic acid bacteria. Nat. Rev. Microbiol. 6: 349-362.
http://dx.doi.org/10.1038/nrmicro1840
PMid:18345021