Daniel Raimunda
Daniel Raimunda
Instituto Mercedes y Martín Ferreyra
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Mechanisms of copper homeostasis in bacteria
JM Argüello, D Raimunda, T Padilla-Benavides
Frontiers in cellular and infection microbiology 3, 73, 2013
Distinct functional roles of homologous Cu+ efflux ATPases in Pseudomonas aeruginosa
M González‐Guerrero, D Raimunda, X Cheng, JM Argüello
Molecular microbiology 78 (5), 1246-1258, 2010
Bacterial Transition Metal P1B-ATPases: Transport Mechanism and Roles in Virulence
JM Argüello, M González-Guerrero, D Raimunda
Biochemistry 50 (46), 9940-9949, 2011
The transport mechanism of bacterial Cu+-ATPases: distinct efflux rates adapted to different function
D Raimunda, M González-Guerrero, BW Leeber, JM Argüello
Biometals 24, 467-475, 2011
Metal transport across biomembranes: emerging models for a distinct chemistry
JM Argüello, D Raimunda, M González-Guerrero
Journal of Biological Chemistry 287 (17), 13510-13517, 2012
A novel P1B-type Mn2+-transporting ATPase is required for secreted protein metallation in mycobacteria
T Padilla-Benavides, JE Long, D Raimunda, CM Sassetti, JM Argüello
Journal of Biological Chemistry 288 (16), 11334-11347, 2013
Role in metal homeostasis of CtpD, a Co2+ transporting P1B4‐ATPase of Mycobacterium smegmatis
D Raimunda, JE Long, CM Sassetti, JM Argüello
Molecular microbiology 84 (6), 1139-1149, 2012
Differential roles for the Co2+/Ni2+ transporting ATPases, CtpD and CtpJ, in Mycobacterium tuberculosis virulence
D Raimunda, JE Long, T Padilla‐Benavides, CM Sassetti, JM Argüello
Molecular microbiology 91 (1), 185-197, 2014
A novel zinc binding system, ZevAB, is critical for survival of nontypeable Haemophilus influenzae in a murine lung infection model
CV Rosadini, JD Gawronski, D Raimunda, JM Argüello, BJ Akerley
Infection and immunity 79 (8), 3366-3376, 2011
Periplasmic response upon disruption of transmembrane Cu transport in Pseudomonas aeruginosa
D Raimunda, T Padilla-Benavides, S Vogt, S Boutigny, KN Tomkinson, ...
Metallomics 5 (2), 144-151, 2013
A tetrahedral coordination of zinc during transmembrane transport by P-type Zn2+-ATPases
D Raimunda, P Subramanian, T Stemmler, JM Argüello
Biochimica et Biophysica Acta (BBA)-Biomembranes 1818 (5), 1374-1377, 2012
Defining the Roles of the Cation Diffusion Facilitators in Fe2+/Zn2+ Homeostasis and Establishment of Their Participation in Virulence in Pseudomonas aeruginosa
A Salusso, D Raimunda
Frontiers in cellular and infection microbiology 7, 84, 2017
Identifying metalloproteins through X-ray fluorescence mapping and mass spectrometry
D Raimunda, T Khare, C Giometti, S Vogt, JM Argüello, L Finney
Metallomics 4 (9), 921-927, 2012
Functional characterization of the CDF transporter SMc02724 (SmYiiP) in Sinorhizobium meliloti: Roles in manganese homeostasis and nodulation
D Raimunda, G Elso-Berberián
Biochimica et Biophysica Acta (BBA)-Biomembranes 1838 (12), 3203-3211, 2014
Secreted amyloid precursor protein and holo‐APP bind amyloid β through distinct domains eliciting different toxic responses on hippocampal neurons
G Kedikian, F Heredia, VR Salvador, D Raimunda, N Isoardi, L Heredia, ...
Journal of neuroscience research 88 (8), 1795-1803, 2010
Electrofused giant protoplasts of Saccharomyces cerevisiae as a novel system for electrophysiological studies on membrane proteins
U Terpitz, D Raimunda, M Westhoff, VL Sukhorukov, L Beaugé, ...
Biochimica et Biophysica Acta (BBA)-Biomembranes 1778 (6), 1493-1500, 2008
Transition metal transporters in rhizobia: Tuning the inorganic micronutrient requirements to different living styles
I Abreu, P Mihelj, D Raimunda
Metallomics 11 (4), 735-755, 2019
Squid nerve Na+/Ca2+ exchanger expressed in Saccharomyces cerevisiae: Up-regulation by a phosphorylated cytosolic protein (ReP1–NCXSQ) is identical to that of native exchanger …
D Raimunda, M Bollo, L Beaugé, G Berberián
Cell calcium 45 (5), 499-508, 2009
Pseudomonas Aeruginosa CDF Transporters CzcD and YiiP are Involved in Zn2+ Efflux, Outer Membrane Permeability and Antibiotic Resistance
A Salusso, D Raimunda
Biophysical Journal 112 (3), 16a, 2017
Functional characterization of the Co2+ transporter AitP in Sinorhizobium meliloti: a new player in Fe2+ homeostasis
P Mihelj, I Abreu, T Moreyra, M González-Guerrero, D Raimunda
bioRxiv, 2022.09. 08.507232, 2022
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Artículos 1–20