🔬El @cib-csic.bsky.social desvela que una enzima detecta eficazmente dichas mutaciones
👨🔬Abre el camino a nuevas aplicaciones biomédicas
🔬El @cib-csic.bsky.social desvela que una enzima detecta eficazmente dichas mutaciones
👨🔬Abre el camino a nuevas aplicaciones biomédicas
A team from @cib-csic.bsky.social discovered that deferiprone, used to eliminate excess iron in the body, protects retinal #photoreceptor cells from degeneration.
🔗https://f.mtr.cool/lsxdqioyig
A team from @cib-csic.bsky.social discovered that deferiprone, used to eliminate excess iron in the body, protects retinal #photoreceptor cells from degeneration.
🔗https://f.mtr.cool/lsxdqioyig
The group of Jorge Barriuso at @cib-csic.bsky.social has developed an innovative method to produce bioplastics from agro-industrial waste using a synthetic microbial consortium. The work has been published in ACS Sustainable Chemistry & Engineering.
More info 🔗t.ly/jBN6L
The group of Jorge Barriuso at @cib-csic.bsky.social has developed an innovative method to produce bioplastics from agro-industrial waste using a synthetic microbial consortium. The work has been published in ACS Sustainable Chemistry & Engineering.
More info 🔗t.ly/jBN6L
Researchers at the @cib-csic.bsky.social present a new bacterium capable of transforming plastic waste into high-value bioproducts
More info 🔗https://cib.csic.es/news/research/researchers-cib-margarita-salas-present-new-bacterium-capable-transforming-plastic
Researchers at the @cib-csic.bsky.social present a new bacterium capable of transforming plastic waste into high-value bioproducts
More info 🔗https://cib.csic.es/news/research/researchers-cib-margarita-salas-present-new-bacterium-capable-transforming-plastic
A team led by Dr. Nuria E. Campillo (@CIB-CSIC) has developed a tool based on generative artificial intelligence (AI) capable of designing molecules with therapeutic potential tailored to specific proteins involved in diseases such as Alzheimer’s.
More info 🔗t.ly/pLGTD
A team led by Dr. Nuria E. Campillo (@CIB-CSIC) has developed a tool based on generative artificial intelligence (AI) capable of designing molecules with therapeutic potential tailored to specific proteins involved in diseases such as Alzheimer’s.
More info 🔗t.ly/pLGTD
A new publication in EMBO J by Dr. Jorge Montesinos (@cib-csic.bsky.social) identifies a new mechanism that enables cells to regulate the energy they produce and opens avenues for future research into neurodegenerative and metabolic diseases.
🔗t.ly/eeyDs
A new publication in EMBO J by Dr. Jorge Montesinos (@cib-csic.bsky.social) identifies a new mechanism that enables cells to regulate the energy they produce and opens avenues for future research into neurodegenerative and metabolic diseases.
🔗t.ly/eeyDs
An international team of researchers led by Dr. Marian Oliva (@cib-csic.bsky.social) has uncovered a new principle governing how the widely used anticancer drug Taxol (paclitaxel) affects cells.
🔗 t.ly/3TjcJ
An international team of researchers led by Dr. Marian Oliva (@cib-csic.bsky.social) has uncovered a new principle governing how the widely used anticancer drug Taxol (paclitaxel) affects cells.
🔗 t.ly/3TjcJ
Provided an atomic model for FAK force activation characterizing all interactions of the force transmitting tether to FAK. A work in Cell Commun Signal by Daniel Lietha
🔗https://f.mtr.cool/rermynrkyn
Provided an atomic model for FAK force activation characterizing all interactions of the force transmitting tether to FAK. A work in Cell Commun Signal by Daniel Lietha
🔗https://f.mtr.cool/rermynrkyn
A new study in Aspergillus nidulans, led by the group of Miguel Peñalva and Eduardo Espeso at @cib-csic.bsky.social, provided an answer to the question of how the same molecular machinery controls different membrane trafficking pathways.
Link to the paper 🔗t.ly/Ij46q
A new study in Aspergillus nidulans, led by the group of Miguel Peñalva and Eduardo Espeso at @cib-csic.bsky.social, provided an answer to the question of how the same molecular machinery controls different membrane trafficking pathways.
Link to the paper 🔗t.ly/Ij46q
Un trabajo publicado por el grupo de la Dra Nuria Campillo en el @cib-csic.bsky.social muestra que ciertos fármacos actúan como moduladores de la localización del receptor D2 de dopamina (D2R) mediante la interrupción de la interacción NCS-1.
Léelo aquí 🔗t.ly/E8ylz
Un trabajo publicado por el grupo de la Dra Nuria Campillo en el @cib-csic.bsky.social muestra que ciertos fármacos actúan como moduladores de la localización del receptor D2 de dopamina (D2R) mediante la interrupción de la interacción NCS-1.
Léelo aquí 🔗t.ly/E8ylz
@tornerolab.bsky.social at @cib-csic.bsky.social has unveiled one of the mechanisms used by eukaryotic cells to detect the most frequent natural #mutation in #DNA.
🔗https://f.mtr.cool/dvxaprqbng
@tornerolab.bsky.social at @cib-csic.bsky.social has unveiled one of the mechanisms used by eukaryotic cells to detect the most frequent natural #mutation in #DNA.
🔗https://f.mtr.cool/dvxaprqbng
A new mechanism involved in disseminating acute lymphoblastic leukemia has been revealed.
A study led by Dr. Javier Redondo published in Biomed & Pharmacother.
More info➡️https://s.mtrbio.com/nahdkljxne
A new mechanism involved in disseminating acute lymphoblastic leukemia has been revealed.
A study led by Dr. Javier Redondo published in Biomed & Pharmacother.
More info➡️https://s.mtrbio.com/nahdkljxne
The collaboration of four scientific teams from the @csic.es, led by Eduardo Rial (@cib-csic.bsky.social), has allowed for the identification of dichloroacetate (DCA) as a possible drug for the treatment of viral respiratory diseases.
🔗t.ly/XaZaE
The collaboration of four scientific teams from the @csic.es, led by Eduardo Rial (@cib-csic.bsky.social), has allowed for the identification of dichloroacetate (DCA) as a possible drug for the treatment of viral respiratory diseases.
🔗t.ly/XaZaE
Researchers at @cib-csic.bsky.social, together with @iqf-csic.bsky.social, Università degli Studi di Milano, and UTHealth-Houston, identified a new mechanism related to biomolecular condensation processes that may be useful in combating bacteria resistant to antibiotics.
🔗t.ly/6JFBP
Researchers at @cib-csic.bsky.social, together with @iqf-csic.bsky.social, Università degli Studi di Milano, and UTHealth-Houston, identified a new mechanism related to biomolecular condensation processes that may be useful in combating bacteria resistant to antibiotics.
🔗t.ly/6JFBP
The group led by Dr. Carlos Fernández Tornero at @cib-csic.bsky.social, in collaboration with the company #PharmaMar, has revealed key structural features of ecteinascidins binding to DNA.
🔗https://www.cib.csic.es/news/research/dna-targeting-mechanism-marine-anticancer-drugs-uncovered
The group led by Dr. Carlos Fernández Tornero at @cib-csic.bsky.social, in collaboration with the company #PharmaMar, has revealed key structural features of ecteinascidins binding to DNA.
🔗https://www.cib.csic.es/news/research/dna-targeting-mechanism-marine-anticancer-drugs-uncovered
A team of researchers led by Dolores Pérez-Sala at @cib-csic.bsky.social has demonstrated that pH variations modulate the remodeling of the vimentin network induced by oxidants, enabling highly precise spatial and temporal regulation of complex cellular processes.
More info 🔗t.ly/KCjHm
A team of researchers led by Dolores Pérez-Sala at @cib-csic.bsky.social has demonstrated that pH variations modulate the remodeling of the vimentin network induced by oxidants, enabling highly precise spatial and temporal regulation of complex cellular processes.
More info 🔗t.ly/KCjHm
A new study in Aspergillus nidulans, led by the group of Miguel Peñalva and Eduardo Espeso at @cib-csic.bsky.social, provided an answer to the question of how the same molecular machinery controls different membrane trafficking pathways.
Link to the paper 🔗t.ly/Ij46q
A new study in Aspergillus nidulans, led by the group of Miguel Peñalva and Eduardo Espeso at @cib-csic.bsky.social, provided an answer to the question of how the same molecular machinery controls different membrane trafficking pathways.
Link to the paper 🔗t.ly/Ij46q
Un trabajo del grupo de César Llave en Plant Cell Environ muestra que al sobreexpresar BIR1 en Arabidopsis se activa su sistema inmune aún en ausencia de patógenos, causando muerte celular dependiente de SOBIR1 y EDS1.
🔗https://onlinelibrary.wiley.com/doi/10.1111/pce.70036?af=R
Un trabajo del grupo de César Llave en Plant Cell Environ muestra que al sobreexpresar BIR1 en Arabidopsis se activa su sistema inmune aún en ausencia de patógenos, causando muerte celular dependiente de SOBIR1 y EDS1.
🔗https://onlinelibrary.wiley.com/doi/10.1111/pce.70036?af=R
A team led by Javier Cañada (@cib-csic.bsky.social) has uncovered the minimal structural scaffold that enables the immune lectin DC-SIGN to recognize sugars with high stereoselectivity.
🔗https://chemistry-europe-onlinelibrary-wiley-com.csic.idm.oclc.org/doi/epdf/10.1002/chem.202501420
A team led by Javier Cañada (@cib-csic.bsky.social) has uncovered the minimal structural scaffold that enables the immune lectin DC-SIGN to recognize sugars with high stereoselectivity.
🔗https://chemistry-europe-onlinelibrary-wiley-com.csic.idm.oclc.org/doi/epdf/10.1002/chem.202501420
A study with the collaboration of Dr. Marian Oliva at @cib-csic.bsky.social has mapped the deep evolutionary roots of the eukaryotic cytoskeleton, showing that microtubules, the intracellular “railway system” of our cells, emerged before the origin of complex life.
More info 🔗t.ly/dsgQ4
A study with the collaboration of Dr. Marian Oliva at @cib-csic.bsky.social has mapped the deep evolutionary roots of the eukaryotic cytoskeleton, showing that microtubules, the intracellular “railway system” of our cells, emerged before the origin of complex life.
More info 🔗t.ly/dsgQ4
A team led by Fernando Díaz (@cib-csic.bsky.social ) has developed a structural atlas that reveals how drugs used in #chemotherapy alter the organization of microtubules.
Info ➡️https://cib.csic.es/news/research/study-reveals-cancer-drugs-reshape-internal-structure-cellular-microtubules
A team led by Fernando Díaz (@cib-csic.bsky.social ) has developed a structural atlas that reveals how drugs used in #chemotherapy alter the organization of microtubules.
Info ➡️https://cib.csic.es/news/research/study-reveals-cancer-drugs-reshape-internal-structure-cellular-microtubules
Bioconversion of lignin into a new monomer (2,5-CPDCA) for the synthesis of bio-based plastics
A study published in Green Chemistry by the group of Prof. Eduardo Díaz (@cib-csic.bsky.social)
More info 🔗 t.ly/CmjVn
Bioconversion of lignin into a new monomer (2,5-CPDCA) for the synthesis of bio-based plastics
A study published in Green Chemistry by the group of Prof. Eduardo Díaz (@cib-csic.bsky.social)
More info 🔗 t.ly/CmjVn
Reconstruction and characterization of fungal lacase ancestors reveal key evolutionary events in acquisition of their ligninolytic capacity and offer promising new biocatalysts
A new publication in ACS Catalysis by the group led by Dr. Susana Camarero @cib-csic.bsky.social
🔗t.ly/HxBrE
Reconstruction and characterization of fungal lacase ancestors reveal key evolutionary events in acquisition of their ligninolytic capacity and offer promising new biocatalysts
A new publication in ACS Catalysis by the group led by Dr. Susana Camarero @cib-csic.bsky.social
🔗t.ly/HxBrE
The 3D extracellular environment “reprograms” #leukemia cells by persistently altering their nucleus, genetic activity, and behavior.
A new paper was published by the group of Dr. Javier Redondo in Cell Reports Physical Science.
🔗t.ly/tHGZ8
The 3D extracellular environment “reprograms” #leukemia cells by persistently altering their nucleus, genetic activity, and behavior.
A new paper was published by the group of Dr. Javier Redondo in Cell Reports Physical Science.
🔗t.ly/tHGZ8
Our colleague Rodrigo Sánchez-Tarjuelo (Flow Cytometry) writes the book chapter "The genetic regulation of immune cells upon activation".
It's been published in the Advances in Genetics volume "Genetic Regulation of Immune Response Pathways".
🔗t.ly/x_SJ9
Our colleague Rodrigo Sánchez-Tarjuelo (Flow Cytometry) writes the book chapter "The genetic regulation of immune cells upon activation".
It's been published in the Advances in Genetics volume "Genetic Regulation of Immune Response Pathways".
🔗t.ly/x_SJ9