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Albert Sorribas
Albert Sorribas
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Titel
Zitiert von
Zitiert von
Jahr
Grx5 glutaredoxin plays a central role in protection against protein oxidative damage in Saccharomyces cerevisiae
MT Rodríguez-Manzaneque, J Ros, E Cabiscol, A Sorribas, E Herrero
Molecular and cellular biology, 1999
3891999
Saccharomyces cerevisiae as a model organism: a comparative study
H Karathia, E Vilaprinyo, A Sorribas, R Alves
PloS one 6 (2), e16015, 2011
2782011
Mathematical models of purine metabolism in man
R Curto, EO Voit, A Sorribas, M Cascante
Mathematical biosciences 151 (1), 1-49, 1998
1121998
Comparative characterization of the fermentation pathway of Saccharomyces cerevisiae using biochemical systems theory and metabolic control analysis: model definition and …
R Curto, A Sorribas, M Cascante
Mathematical Biosciences 130 (1), 25-50, 1995
1111995
A comparison of variant theories of intact biochemical systems. I. Enzyme-enzyme interactions and biochemical systems theory
A Sorribas, MA Savageau
Mathematical biosciences 94 (2), 161-193, 1989
941989
Constraints among molecular and systemic properties: implications for physiological genetics
MA Savageau, A Sorribas
Journal of theoretical biology 141 (1), 93-115, 1989
851989
An in vitro system for the rapid functional characterization of genes involved in carotenoid biosynthesis and accumulation
C Bai, SM Rivera, V Medina, R Alves, E Vilaprinyo, A Sorribas, R Canela, ...
The Plant Journal 77 (3), 464-475, 2014
832014
Cooperativity and saturation in biochemical networks: a saturable formalism using Taylor series approximations
A Sorribas, B Hernández‐Bermejo, E Vilaprinyo, R Alves
Biotechnology and bioengineering 97 (5), 1259-1277, 2007
822007
Calcitonin gene-related peptide in rat spinal cord motoneurons: subcellular distribution and changes induced by axotomy
J Caldero, A Casanovas, A Sorribas, JE Esquerda
Neuroscience 48 (2), 449-461, 1992
821992
Strategies for representing metabolic pathways within biochemical systems theory: reversible pathways
A Sorribas, MA Savageau
Mathematical Biosciences 94 (2), 239-269, 1989
791989
A comparison of variant theories of intact biochemical systems. II. Flux-oriented and metabolic control theories
A Sorribas, MA Savageau
Mathematical biosciences 94 (2), 195-238, 1989
771989
Regulation of Motoneuronal Calcitonin Gene–related Peptide (CGRP) During Axonal Growth and Neuromuscular Synaptic Plasticity Induced by Botulinum Toxin in Rats
O Tarabal, J Calderó, J Ribera, A Sorribas, R López, J Molgó, ...
European Journal of Neuroscience 8 (4), 829-836, 1996
751996
Validation and steady-state analysis of a power-law model of purine metabolism in man
R CURTO, EO VOIT, A SORRIBAS, M CASCANTE
Biochemical Journal 324 (3), 761-775, 1997
601997
Comparative characterization of the fermentation pathway of Saccharomyces cerevisiae using biochemical systems theory and metabolic control analysis: model validation and …
A Sorribas, R Curto, M Cascante
Mathematical biosciences 130 (1), 71-84, 1995
561995
Predictive reconstruction of the mitochondrial iron‐sulfur cluster assembly metabolism. II. Role of glutaredoxin Grx5
R Alves, E Herrero, A Sorribas
Proteins: Structure, Function, and Bioinformatics 57 (3), 481-492, 2004
532004
Use of physiological constraints to identify quantitative design principles for gene expression in yeast adaptation to heat shock
E Vilaprinyo, R Alves, A Sorribas
BMC bioinformatics 7, 1-20, 2006
522006
Evolution based on domain combinations: the case of glutaredoxins
R Alves, E Vilaprinyo, A Sorribas, E Herrero
BMC Evolutionary Biology 9, 1-14, 2009
502009
Aproximación metodológica al uso de redes neuronales artificiales para la predicción de resultados en medicina
J Trujillano, J March, A Sorribas
Med Clin (Barc) 122 (Supl 1), 59-67, 2004
492004
Comparative characterization of the fermentation pathway of Saccharomyces cerevisiae using biochemical systems theory and metabolic control analysis: steady-state analysis
M Cascante, R Curto, A Sorribas
Mathematical biosciences 130 (1), 51-69, 1995
491995
Identifying quantitative operation principles in metabolic pathways: a systematic method for searching feasible enzyme activity patterns leading to cellular adaptive responses
G Guillén-Gosálbez, A Sorribas
BMC bioinformatics 10, 1-20, 2009
452009
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