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Items: 1 to 50 of 71

1.

Extracellular vesicles and soluble factors secreted by Escherichia coli Nissle 1917 and ECOR63 protect against enteropathogenic E. coli-induced intestinal epithelial barrier dysfunction.

Alvarez CS, Giménez R, Cañas MA, Vera R, Díaz-Garrido N, Badia J, Baldomà L.

BMC Microbiol. 2019 Jul 17;19(1):166. doi: 10.1186/s12866-019-1534-3.

2.

Synthesis, characterization and biological activity of new cyclometallated platinum(iv) complexes containing a para-tolyl ligand.

Solé M, Balcells C, Crespo M, Quirante J, Badia J, Baldomà L, Font-Bardia M, Cascante M.

Dalton Trans. 2018 Jul 10;47(27):8956-8971. doi: 10.1039/c8dt01124a.

PMID:
29922789
3.

A study of the properties, reactivity and anticancer activity of novel N-methylated-3-thiazolyl or 3-thienyl carbazoles and their Pd(II) and Pt(II) complexes.

Reig M, Bosque R, Font-Bardía M, Calvis C, Messeguer R, Baldomà L, Badía J, Velasco D, López C.

J Inorg Biochem. 2018 Jul;184:134-145. doi: 10.1016/j.jinorgbio.2018.03.008. Epub 2018 Mar 15. No abstract available.

PMID:
29751214
4.

Outer Membrane Vesicles From Probiotic and Commensal Escherichia coli Activate NOD1-Mediated Immune Responses in Intestinal Epithelial Cells.

Cañas MA, Fábrega MJ, Giménez R, Badia J, Baldomà L.

Front Microbiol. 2018 Mar 20;9:498. doi: 10.3389/fmicb.2018.00498. eCollection 2018.

5.

Multifunctional Serine Protease Inhibitor-Coated Water-Soluble Gold Nanoparticles as a Novel Targeted Approach for the Treatment of Inflammatory Skin Diseases.

Limón D, Fábrega MJ, Calpena AC, Badia J, Baldomà L, Pérez-García L.

Bioconjug Chem. 2018 Apr 18;29(4):1060-1072. doi: 10.1021/acs.bioconjchem.7b00717. Epub 2018 Feb 23.

PMID:
29406699
6.

Synthesis, characterization and biological activity of new cyclometallated platinum(iv) iodido complexes.

Bauer E, Domingo X, Balcells C, Polat IH, Crespo M, Quirante J, Badía J, Baldomà L, Font-Bardia M, Cascante M.

Dalton Trans. 2017 Nov 7;46(43):14973-14987. doi: 10.1039/c7dt03448b.

PMID:
29048088
7.

Intestinal Anti-inflammatory Effects of Outer Membrane Vesicles from Escherichia coli Nissle 1917 in DSS-Experimental Colitis in Mice.

Fábrega MJ, Rodríguez-Nogales A, Garrido-Mesa J, Algieri F, Badía J, Giménez R, Gálvez J, Baldomà L.

Front Microbiol. 2017 Jul 11;8:1274. doi: 10.3389/fmicb.2017.01274. eCollection 2017.

8.

Microbiological diagnosis and antimicrobial sensitivity profiles in diseased free-living raptors.

Vidal A, Baldomà L, Molina-López RA, Martin M, Darwich L.

Avian Pathol. 2017 Aug;46(4):442-450. doi: 10.1080/03079457.2017.1304529. Epub 2017 Apr 13.

PMID:
28290221
9.

Membrane Vesicles Released by a hypervesiculating Escherichia coli Nissle 1917 tolR Mutant Are Highly Heterogeneous and Show Reduced Capacity for Epithelial Cell Interaction and Entry.

Pérez-Cruz C, Cañas MA, Giménez R, Badia J, Mercade E, Baldomà L, Aguilera L.

PLoS One. 2016 Dec 30;11(12):e0169186. doi: 10.1371/journal.pone.0169186. eCollection 2016.

10.
11.

On the stability and biological behavior of cyclometallated Pt(IV) complexes with halido and aryl ligands in the axial positions.

Escolà A, Crespo M, López C, Quirante J, Jayaraman A, Polat IH, Badía J, Baldomà L, Cascante M.

Bioorg Med Chem. 2016 Nov 15;24(22):5804-5815. doi: 10.1016/j.bmc.2016.09.037. Epub 2016 Sep 15.

PMID:
27670096
12.

Outer Membrane Vesicles from the Probiotic Escherichia coli Nissle 1917 and the Commensal ECOR12 Enter Intestinal Epithelial Cells via Clathrin-Dependent Endocytosis and Elicit Differential Effects on DNA Damage.

Cañas MA, Giménez R, Fábrega MJ, Toloza L, Baldomà L, Badia J.

PLoS One. 2016 Aug 3;11(8):e0160374. doi: 10.1371/journal.pone.0160374. eCollection 2016.

13.

Activation of Immune and Defense Responses in the Intestinal Mucosa by Outer Membrane Vesicles of Commensal and Probiotic Escherichia coli Strains.

Fábrega MJ, Aguilera L, Giménez R, Varela E, Alexandra Cañas M, Antolín M, Badía J, Baldomà L.

Front Microbiol. 2016 May 11;7:705. doi: 10.3389/fmicb.2016.00705. eCollection 2016.

14.

The secreted autotransporter toxin (Sat) does not act as a virulence factor in the probiotic Escherichia coli strain Nissle 1917.

Toloza L, Giménez R, Fábrega MJ, Alvarez CS, Aguilera L, Cañas MA, Martín-Venegas R, Badia J, Baldomà L.

BMC Microbiol. 2015 Oct 30;15:250. doi: 10.1186/s12866-015-0591-5.

15.

Neutral and ionic platinum compounds containing a cyclometallated chiral primary amine: synthesis, antitumor activity, DNA interaction and topoisomerase I-cathepsin B inhibition.

Albert J, Bosque R, Crespo M, Granell J, López C, Martín R, González A, Jayaraman A, Quirante J, Calvis C, Badía J, Baldomà L, Font-Bardia M, Cascante M, Messeguer R.

Dalton Trans. 2015 Aug 14;44(30):13602-14. doi: 10.1039/c5dt01713k.

PMID:
26140359
16.

Glyceraldehyde-3-phosphate dehydrogenase is required for efficient repair of cytotoxic DNA lesions in Escherichia coli.

Ferreira E, Giménez R, Cañas MA, Aguilera L, Aguilar J, Badia J, Baldomà L.

Int J Biochem Cell Biol. 2015 Mar;60:202-12. doi: 10.1016/j.biocel.2015.01.008. Epub 2015 Jan 17.

17.

Cyclopalladated primary amines: a preliminary study of antiproliferative activity through apoptosis induction.

Albert J, Bosque R, Crespo M, García G, Granell J, López C, Lovelle MV, Qadir R, González A, Jayaraman A, Mila E, Cortés R, Quirante J, Calvis C, Messeguer R, Badía J, Baldomà L, Cascante M.

Eur J Med Chem. 2014 Sep 12;84:530-6. doi: 10.1016/j.ejmech.2014.07.046. Epub 2014 Jul 15.

PMID:
25063943
18.

Cyclopalladated and cycloplatinated benzophenone imines: antitumor, antibacterial and antioxidant activities, DNA interaction and cathepsin B inhibition.

Albert J, D'Andrea L, Granell J, Pla-Vilanova P, Quirante J, Khosa MK, Calvis C, Messeguer R, Badía J, Baldomà L, Font-Bardia M, Calvet T.

J Inorg Biochem. 2014 Nov;140:80-8. doi: 10.1016/j.jinorgbio.2014.07.001. Epub 2014 Jul 15. Erratum in: J Inorg Biochem. 2015 Sep;150:189.

PMID:
25063911
19.

Characterization of the gene cluster involved in allantoate catabolism and its transcriptional regulation by the RpiR-type repressor HpxU in Klebsiella pneumoniae.

Guzmán K, Campos E, Aguilera L, Toloza L, Giménez R, Aguilar J, Baldoma L, Badia J.

Int Microbiol. 2013 Sep;16(3):165-76.

20.

Proteomic analysis of outer membrane vesicles from the probiotic strain Escherichia coli Nissle 1917.

Aguilera L, Toloza L, Giménez R, Odena A, Oliveira E, Aguilar J, Badia J, Baldomà L.

Proteomics. 2014 Feb;14(2-3):222-9. doi: 10.1002/pmic.201300328. Epub 2014 Jan 6.

PMID:
24307187
21.

Pt(II) complexes with (N,N') or (C,N,E)(-) (E=N,S) ligands: cytotoxic studies, effect on DNA tertiary structure and structure-activity relationships.

Albert J, Bosque R, Crespo M, Granell J, López C, Cortés R, Gonzalez A, Quirante J, Calvis C, Messeguer R, Baldomà L, Badia J, Cascante M.

Bioorg Med Chem. 2013 Jul 15;21(14):4210-7. doi: 10.1016/j.bmc.2013.05.005. Epub 2013 May 14.

PMID:
23735827
22.

Protein interaction studies point to new functions for Escherichia coli glyceraldehyde-3-phosphate dehydrogenase.

Ferreira E, Giménez R, Aguilera L, Guzmán K, Aguilar J, Badia J, Baldomà L.

Res Microbiol. 2013 Feb-Mar;164(2):145-54. doi: 10.1016/j.resmic.2012.11.002. Epub 2012 Nov 27.

23.

Diastereomerically pure platinum(II) complexes as antitumoral agents.: The influence of the mode of binding {(N), (N,O)- or (C,N)}- of (1S,2R)[(η5-C5H5)Fe{(η5-C5H4)CHNCH(Me)CH(OH)C6H5}] and the arrangement of the auxiliary ligands.

Talancón D, López C, Font-Bardía M, Calvet T, Quirante J, Calvis C, Messeguer R, Cortés R, Cascante M, Baldomà L, Badia J.

J Inorg Biochem. 2013 Jan;118:1-12. doi: 10.1016/j.jinorgbio.2012.09.007. Epub 2012 Sep 13.

PMID:
23123334
24.

Seven-membered cycloplatinated complexes as a new family of anticancer agents. X-ray characterization and preliminary biological studies.

Cortés R, Crespo M, Davin L, Martín R, Quirante J, Ruiz D, Messeguer R, Calvis C, Baldomà L, Badia J, Font-Bardía M, Calvet T, Cascante M.

Eur J Med Chem. 2012 Aug;54:557-66. doi: 10.1016/j.ejmech.2012.06.002. Epub 2012 Jun 12.

PMID:
22770537
25.

Secretion of the housekeeping protein glyceraldehyde-3-phosphate dehydrogenase by the LEE-encoded type III secretion system in enteropathogenic Escherichia coli.

Aguilera L, Ferreira E, Giménez R, Fernández FJ, Taulés M, Aguilar J, Vega MC, Badia J, Baldomà L.

Int J Biochem Cell Biol. 2012 Jun;44(6):955-62. doi: 10.1016/j.biocel.2012.03.002. Epub 2012 Mar 12.

26.

Platinum(II) and palladium(II) complexes with (N,N') and (C,N,N')- ligands derived from pyrazole as anticancer and antimalarial agents: synthesis, characterization and in vitro activities.

Quirante J, Ruiz D, Gonzalez A, López C, Cascante M, Cortés R, Messeguer R, Calvis C, Baldomà L, Pascual A, Guérardel Y, Pradines B, Font-Bardía M, Calvet T, Biot C.

J Inorg Biochem. 2011 Dec;105(12):1720-8. doi: 10.1016/j.jinorgbio.2011.09.021. Epub 2011 Sep 22.

PMID:
22104300
27.

The UlaG protein family defines novel structural and functional motifs grafted on an ancient RNase fold.

Fernandez FJ, Garces F, López-Estepa M, Aguilar J, Baldomà L, Coll M, Badia J, Vega MC.

BMC Evol Biol. 2011 Sep 26;11:273. doi: 10.1186/1471-2148-11-273.

28.

Transcriptional regulation of the gene cluster encoding allantoinase and guanine deaminase in Klebsiella pneumoniae.

Guzmán K, Badia J, Giménez R, Aguilar J, Baldoma L.

J Bacteriol. 2011 May;193(9):2197-207. doi: 10.1128/JB.01450-10. Epub 2011 Feb 25.

29.

Molecular architecture of the Mn2+-dependent lactonase UlaG reveals an RNase-like metallo-beta-lactamase fold and a novel quaternary structure.

Garces F, Fernández FJ, Montellà C, Penya-Soler E, Prohens R, Aguilar J, Baldomà L, Coll M, Badia J, Vega MC.

J Mol Biol. 2010 May 21;398(5):715-29. doi: 10.1016/j.jmb.2010.03.041. Epub 2010 Mar 30.

PMID:
20359483
30.

Role of YiaX2 in L-ascorbate transport in Klebsiella pneumoniae 13882.

Campos E, Aguilera L, Giménez R, Aguilar J, Baldoma L, Badia J.

Can J Microbiol. 2009 Nov;55(11):1319-22. doi: 10.1139/w09-090.

PMID:
19940941
31.

NAD+-dependent post-translational modification of Escherichia coli glyceraldehyde-3-phosphate dehydrogenase.

Aguilera L, Giménez R, Badia J, Aguilar J, Baldoma L.

Int Microbiol. 2009 Sep;12(3):187-92.

32.

The hpx genetic system for hypoxanthine assimilation as a nitrogen source in Klebsiella pneumoniae: gene organization and transcriptional regulation.

de la Riva L, Badia J, Aguilar J, Bender RA, Baldoma L.

J Bacteriol. 2008 Dec;190(24):7892-903. doi: 10.1128/JB.01022-08. Epub 2008 Oct 10.

33.

Quaternary structural transitions in the DeoR-type repressor UlaR control transcriptional readout from the L-ascorbate utilization regulon in Escherichia coli.

Garces F, Fernández FJ, Gómez AM, Pérez-Luque R, Campos E, Prohens R, Aguilar J, Baldomà L, Coll M, Badía J, Vega MC.

Biochemistry. 2008 Nov 4;47(44):11424-33. doi: 10.1021/bi800748x. Epub 2008 Oct 10.

PMID:
18844374
34.

The yiaKLX1X2PQRS and ulaABCDEFG gene systems are required for the aerobic utilization of L-ascorbate in Klebsiella pneumoniae strain 13882 with L-ascorbate-6-phosphate as the inducer.

Campos E, de la Riva L, Garces F, Giménez R, Aguilar J, Baldoma L, Badia J.

J Bacteriol. 2008 Oct;190(20):6615-24. doi: 10.1128/JB.00815-08. Epub 2008 Aug 15.

35.

A critical phosphate concentration in the stationary phase maintains ndh gene expression and aerobic respiratory chain activity in Escherichia coli.

Schurig-Briccio LA, Rintoul MR, Volentini SI, Farías RN, Baldomà L, Badía J, Rodríguez-Montelongo L, Rapisarda VA.

FEMS Microbiol Lett. 2008 Jul;284(1):76-83. doi: 10.1111/j.1574-6968.2008.01188.x. Epub 2008 May 17.

36.

Increased production of the ether-lipid platelet-activating factor in intestinal epithelial cells infected by Salmonella enteritidis.

Egea L, Giménez R, Lúcia D, Modolell I, Badía J, Baldoma L, Aguilar J.

Biochim Biophys Acta. 2008 May;1781(5):270-6. doi: 10.1016/j.bbalip.2008.03.009. Epub 2008 Apr 10.

PMID:
18442488
37.

Dual role of LldR in regulation of the lldPRD operon, involved in L-lactate metabolism in Escherichia coli.

Aguilera L, Campos E, Giménez R, Badía J, Aguilar J, Baldoma L.

J Bacteriol. 2008 Apr;190(8):2997-3005. doi: 10.1128/JB.02013-07. Epub 2008 Feb 8.

38.

Overproduction, crystallization and preliminary X-ray analysis of the putative L-ascorbate-6-phosphate lactonase UlaG from Escherichia coli.

Garces F, Fernández FJ, Pérez-Luque R, Aguilar J, Baldomà L, Coll M, Badía J, Vega MC.

Acta Crystallogr Sect F Struct Biol Cryst Commun. 2008 Jan 1;64(Pt 1):36-8. Epub 2007 Dec 20.

39.

Aerobic L-ascorbate metabolism and associated oxidative stress in Escherichia coli.

Campos E, Montella C, Garces F, Baldoma L, Aguilar J, Badia J.

Microbiology. 2007 Oct;153(Pt 10):3399-408.

PMID:
17906139
40.
41.

Crystal structure of an iron-dependent group III dehydrogenase that interconverts L-lactaldehyde and L-1,2-propanediol in Escherichia coli.

Montella C, Bellsolell L, Pérez-Luque R, Badía J, Baldoma L, Coll M, Aguilar J.

J Bacteriol. 2005 Jul;187(14):4957-66.

42.
43.

The gene yjcG, cotranscribed with the gene acs, encodes an acetate permease in Escherichia coli.

Gimenez R, Nuñez MF, Badia J, Aguilar J, Baldoma L.

J Bacteriol. 2003 Nov;185(21):6448-55.

44.

Role of 2-phosphoglycolate phosphatase of Escherichia coli in metabolism of the 2-phosphoglycolate formed in DNA repair.

Teresa Pellicer M, Felisa Nuñez M, Aguilar J, Badia J, Baldoma L.

J Bacteriol. 2003 Oct;185(19):5815-21.

45.

The glcB locus of Rhizobium leguminosarum VF39 encodes an arabinose-inducible malate synthase.

García-de los Santos A, Morales A, Baldomá L, Clark SR, Brom S, Yost CK, Hernández-Lucas I, Aguilar J, Hynes MF.

Can J Microbiol. 2002 Oct;48(10):922-32.

PMID:
12489782
46.

Regulation of the Escherichia coli allantoin regulon: coordinated function of the repressor AllR and the activator AllS.

Rintoul MR, Cusa E, Baldomà L, Badia J, Reitzer L, Aguilar J.

J Mol Biol. 2002 Dec 6;324(4):599-610.

PMID:
12460564
47.
48.

Transport of L-Lactate, D-Lactate, and glycolate by the LldP and GlcA membrane carriers of Escherichia coli.

Núñez MF, Kwon O, Wilson TH, Aguilar J, Baldoma L, Lin EC.

Biochem Biophys Res Commun. 2002 Jan 18;290(2):824-9.

PMID:
11785976
49.
50.

Biochemical characterization of the 2-ketoacid reductases encoded by ycdW and yiaE genes in Escherichia coli.

Nuñez MF, Pellicer MT, Badia J, Aguilar J, Baldoma L.

Biochem J. 2001 Mar 15;354(Pt 3):707-15.

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