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Azman Embarc-Buh

Showing results (1-10 of 18) with videos related to

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International Journal of Molecular Sciences|June 4, 2020
Emerging Roles of Gemin5: From snRNPs Assembly to Translation ControlEncarnacion Martinez-Salas, Azman Embarc-Buh, Rosario Francisco-Velilla
Viruses|June 2, 2021
RNA-Binding Proteins at the Host-Pathogen Interface Targeting Viral Regulatory ElementsAzman Embarc-Buh, Rosario Francisco-Velilla, Encarnacion Martinez-Salas
FEBS Open Bio|March 21, 2022
Picornavirus translation strategiesRosario Francisco-Velilla, Azman Embarc-Buh, Salvador Abellan, et al.
Cell Death Discovery|June 28, 2024
Oligomerization regulates the interaction of Gemin5 with members of the SMN complex and the translation machineryRosario Francisco-Velilla, Salvador Abellan, Azman Embarc-Buh, et al.
Methods in Molecular Biology (Clifton, N.J.)|June 4, 2021
Identification of RNA-Binding Proteins Associated to RNA Structural ElementsJavier Fernandez-Chamorro, Rosario Francisco-Velilla, Azman Embarc-Buh, et al.
RNA Biology|August 23, 2021
The RBS1 domain of Gemin5 is intrinsically unstructured and interacts with RNA through conserved Arg and aromatic residuesAzman Embarc-Buh, Rosario Francisco-Velilla, Sergio Camero, et al.
RNA Biology|June 2, 2020
RNA-protein coevolution study of Gemin5 uncovers the role of the PXSS motif of RBS1 domain for RNA bindingRosario Francisco-Velilla, Azman Embarc-Buh, Sergio Rangel-Guerrero, et al.
Cellular and Molecular Life Sciences : CMLS|August 20, 2022
Gemin5-dependent RNA association with polysomes enables selective translation of ribosomal and histone mRNAsAzman Embarc-Buh, Rosario Francisco-Velilla, Juan Antonio Garcia-Martin, et al.
Nucleic Acids Research|December 5, 2019
Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation controlMaría Moreno-Morcillo, Rosario Francisco-Velilla, Azman Embarc-Buh, et al.
Computational and Structural Biotechnology Journal|November 24, 2022
Phosphorylation of T897 in the dimerization domain of Gemin5 modulates protein interactions and translation regulationRosario Francisco-Velilla, Azman Embarc-Buh, Salvador Abellan, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
International Journal of Molecular Sciences|June 4, 2020
Emerging Roles of Gemin5: From snRNPs Assembly to Translation ControlEncarnacion Martinez-Salas, Azman Embarc-Buh, Rosario Francisco-Velilla
Viruses|June 2, 2021
RNA-Binding Proteins at the Host-Pathogen Interface Targeting Viral Regulatory ElementsAzman Embarc-Buh, Rosario Francisco-Velilla, Encarnacion Martinez-Salas
FEBS Open Bio|March 21, 2022
Picornavirus translation strategiesRosario Francisco-Velilla, Azman Embarc-Buh, Salvador Abellan, et al.
Cell Death Discovery|June 28, 2024
Oligomerization regulates the interaction of Gemin5 with members of the SMN complex and the translation machineryRosario Francisco-Velilla, Salvador Abellan, Azman Embarc-Buh, et al.
Methods in Molecular Biology (Clifton, N.J.)|June 4, 2021
Identification of RNA-Binding Proteins Associated to RNA Structural ElementsJavier Fernandez-Chamorro, Rosario Francisco-Velilla, Azman Embarc-Buh, et al.
RNA Biology|August 23, 2021
The RBS1 domain of Gemin5 is intrinsically unstructured and interacts with RNA through conserved Arg and aromatic residuesAzman Embarc-Buh, Rosario Francisco-Velilla, Sergio Camero, et al.
RNA Biology|June 2, 2020
RNA-protein coevolution study of Gemin5 uncovers the role of the PXSS motif of RBS1 domain for RNA bindingRosario Francisco-Velilla, Azman Embarc-Buh, Sergio Rangel-Guerrero, et al.
Cellular and Molecular Life Sciences : CMLS|August 20, 2022
Gemin5-dependent RNA association with polysomes enables selective translation of ribosomal and histone mRNAsAzman Embarc-Buh, Rosario Francisco-Velilla, Juan Antonio Garcia-Martin, et al.
Nucleic Acids Research|December 5, 2019
Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation controlMaría Moreno-Morcillo, Rosario Francisco-Velilla, Azman Embarc-Buh, et al.
Computational and Structural Biotechnology Journal|November 24, 2022
Phosphorylation of T897 in the dimerization domain of Gemin5 modulates protein interactions and translation regulationRosario Francisco-Velilla, Azman Embarc-Buh, Salvador Abellan, et al.
Pageof 2