Genética del Control de la División Celular
CDCGEN
Yale School of Medicine
New Haven, Estados UnidosPublicacions en col·laboració amb investigadors/es de Yale School of Medicine (13)
2022
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Genome editing in animals with minimal PAM CRISPR-Cas9 enzymes
Nature Communications, Vol. 13, Núm. 1
2019
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Brd4 and P300 Confer Transcriptional Competency during Zygotic Genome Activation
Developmental Cell, Vol. 49, Núm. 6, pp. 867-881.e8
2018
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Optimized CRISPR-Cpf1 system for genome editing in zebrafish
Methods, Vol. 150, pp. 11-18
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RES complex is associated with intron definition and required for zebrafish early embryogenesis
PLoS Genetics, Vol. 14, Núm. 7
2017
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CRISPR-Cpf1 mediates efficient homology-directed repair and temperature-controlled genome editing
Nature Communications, Vol. 8, Núm. 1
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MicroRNAs Establish Uniform Traits during the Architecture of Vertebrate Embryos
Developmental Cell, Vol. 40, Núm. 6, pp. 552-565.e5
2016
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Codon identity regulates mRNA stability and translation efficiency during the maternal-to-zygotic transition
EMBO Journal, Vol. 35, Núm. 19, pp. 2087-2103
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Erratum to: Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition) (Autophagy, 12, 1, 1-222, 10.1080/15548627.2015.1100356
Autophagy
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Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)
Autophagy, Vol. 12, Núm. 1, pp. 1-222
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Optimization strategies for the CRISPR-Cas9 genome-editing system
Cold Spring Harbor Protocols, Vol. 2016, Núm. 10, pp. 829-832
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Optimized CRISPR-Cas9 system for genome editing in zebrafish
Cold Spring Harbor Protocols, Vol. 2016, Núm. 10, pp. 856-870
2015
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CRISPRscan: Designing highly efficient sgRNAs for CRISPR-Cas9 targeting in vivo
Nature Methods, Vol. 12, Núm. 10, pp. 982-988
2013
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Novel small RNA expression libraries uncover hsa-miR-30b and hsa-miR-30c as important factors in anoikis resistance
RNA, Vol. 19, Núm. 12, pp. 1711-1725