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Ricard Albalat
Ricard Albalat
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Evolution by gene loss
R Albalat, C Cañestro
Nature Reviews Genetics 17 (7), 379-391, 2016
6942016
The amphioxus genome illuminates vertebrate origins and cephalochordate biology
LZ Holland, R Albalat, K Azumi, È Benito-Gutiérrez, MJ Blow, ...
Genome research 18 (7), 1100-1111, 2008
5692008
A novel effector domain from the RNA-binding protein TLS or EWS is required for oncogenic transformation by CHOP.
H Zinszner, R Albalat, D Ron
Genes & development 8 (21), 2513-2526, 1994
3411994
Amphioxus functional genomics and the origins of vertebrate gene regulation
F Marlétaz, PN Firbas, I Maeso, JJ Tena, O Bogdanovic, M Perry, ...
Nature 564 (7734), 64-70, 2018
2502018
Evolution of the nitric oxide synthase family in metazoans
N Andreakis, S D’Aniello, R Albalat, FP Patti, J Garcia-Fernandez, ...
Molecular Biology and Evolution 28 (1), 163-179, 2011
1462011
Insights into spawning behavior and development of the european amphioxus (Branchiostoma lanceolatum)
M Fuentes, E Benito, S Bertrand, M Paris, A Mignardot, L Godoy, ...
Journal of Experimental Zoology Part B: Molecular and Developmental …, 2007
1352007
Impact of gene gains, losses and duplication modes on the origin and diversification of vertebrates
C Cañestro, R Albalat, M Irimia, J Garcia-Fernàndez
Seminars in cell & developmental biology 24 (2), 83-94, 2013
1152013
Preliminary observations on the spawning conditions of the European amphioxus (Branchiostoma lanceolatum) in captivity
M Fuentes, M Schubert, D Dalfo, S Candiani, E Benito, J Gardenyes, ...
Journal of Experimental Zoology Part B: Molecular and Developmental …, 2004
982004
The retinoic acid machinery in invertebrates: ancestral elements and vertebrate innovations
R Albalat
Molecular and cellular endocrinology 313 (1-2), 23-35, 2009
932009
Is retinoic acid genetic machinery a chordate innovation?
C Cañestro, JH Postlethwait, R Gonzàlez‐Duarte, R Albalat
Evolution & development 8 (5), 394-406, 2006
872006
Identification of Aldh1a, Cyp26 and RAR orthologs in protostomes pushes back the retinoic acid genetic machinery in evolutionary time to the bilaterian ancestor
R Albalat, C Cañestro
Chemico-biological interactions 178 (1-3), 188-196, 2009
852009
Ascidian and Amphioxus Adh Genes Correlate Functional and Molecular Features of the ADH Family Expansion During Vertebrate Evolution
C Canestro, R Albalat, L Hjelmqvist, L Godoy, H Jörnvall, ...
Journal of Molecular Evolution 54, 81-89, 2002
672002
Protein engineering of Drosophila alcohol dehydrogenase The hydroxyl group of Tyr152 is involved in the active site of the enzyme
RA Gonzålez-Duarte, S Atrian
FEBS letters 308 (3), 235-239, 1992
641992
DNA methylation in amphioxus: from ancestral functions to new roles in vertebrates
R Albalat, J Martí-Solans, C Cañestro
Briefings in functional genomics 11 (2), 142-155, 2012
582012
Evolution of retinoid and steroid signaling: vertebrate diversification from an amphioxus perspective
R Albalat, F Brunet, V Laudet, M Schubert
Genome biology and evolution 3, 985-1005, 2011
522011
Evolution of the genetic machinery of the visual cycle: a novelty of the vertebrate eye?
R Albalat
Molecular biology and evolution 29 (5), 1461-1469, 2012
492012
Merging protein, gene and genomic data: the evolution of the MDR-ADH family
R Gonzalez-Duarte, R Albalat
Heredity 95 (3), 184-197, 2005
482005
Amphioxus alcohol dehydrogenase is a class 3 form of single type and of structural conservation but with unique developmental expression
C Cañestro, L Hjelmqvist, R Albalat, J Garcia‐Fernàndez, ...
European Journal of Biochemistry 267 (22), 6511-6518, 2000
462000
Wnt evolution and function shuffling in liberal and conservative chordate genomes
IML Somorjai, J Martí-Solans, M Diaz-Gracia, H Nishida, KS Imai, ...
Genome biology 19, 1-17, 2018
452018
The ancestral retinoic acid receptor was a low-affinity sensor triggering neuronal differentiation
M Handberg-Thorsager, J Gutierrez-Mazariegos, ST Arold, ...
Science Advances 4 (2), eaao1261, 2018
452018
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