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Thraustochytrid PUFA synthase ER domains form a stable heterodimerThraustochytrid PUFA synthase ER domains form a stable heterodimerGabriel Moncalián (IP), Nahuel Lofeudo523<p></p><p><a href="https://doi.org/10.1016/j.yjsbx.2026.100150" target="_blank">Journal of Structural Biology: X</a> 2026 Dec<a href="https://doi.org/10.1016/j.yjsbx.2026.100150">​</a><br></p><p><br></p>
CTCF Regulates Erythroid Differentiation Through Control of Core Erythroid Transcription FactorsCTCF Regulates Erythroid Differentiation Through Control of Core Erythroid Transcription FactorsGarcía-Gaipo, L; Junco, V; García-Gutiérrez, L; Torrano, V; Blanco, R; Wiesinger, A; Pradeep, R; Jose Luis Arroyo, J.L.; Batlle-López, A; León, J; Rosa , M; Delgado, M.D.520<p>​Biomolecules 2026, 16, 549​ (doi.org/10.3390/biom16040549​​)<br></p>
Characterization of the Lipidome of Neurons in Mouse Brain Nuclei Using Imaging Mass SpectrometryCharacterization of the Lipidome of Neurons in Mouse Brain Nuclei Using Imaging Mass SpectrometryHuergo C, de Las Heras-García L, Razquin J, Rueda Y, Miguélez C, Fernández JA516<p><a href="https://pubs.acs.org/doi/10.1021/acs.analchem.5c08016">​Anal Chem. 2026 Jan 27;98(3):2579-2588​</a><br></p>
Proteomics Analysis of Human Mesenchymal Stromal/Stem Cell Sarcomagenesis Model Identifies ALDH1A3 and CD99 as Potential Targets in the Transformation ProcessProteomics Analysis of Human Mesenchymal Stromal/Stem Cell Sarcomagenesis Model Identifies ALDH1A3 and CD99 as Potential Targets in the Transformation ProcessJonathan M. Gobin, Jun Gao, Veronica Rey, Juan Tornín, Gauri Muradia, Clara Bueno, Mercedes Guerrero-Murillo, Belen Lopez-Millan, Pablo Menendez, Michael Rosu-Myles, Rene Rodriguez*, Jessie R. Lavoie515<p>​<a href="https://link.springer.com/article/10.1186/s12915-025-02498-z">BMC BIOLOGY, 2026</a>. Online ahead of print<br></p>
Loss of p62 Binding Allows TIF-IA Accumulation in Senescence, Which Promotes Phenotypic Changes to Nucleoli and the Senescence Associated Secretory PhenotypeLoss of p62 Binding Allows TIF-IA Accumulation in Senescence, Which Promotes Phenotypic Changes to Nucleoli and the Senescence Associated Secretory PhenotypeThoms HC, Brant TS, Duckett K, Yang Y, Dong J, Wang H, Derby F, Akeke OF, Al-Alayeen F, Newell A, Manasterski P, Gopalakrishnan A, Mann D, Millar FR, Von Kriegsheim A, Acosta JC, Oakley F, Stark LA511<p><a href="https://onlinelibrary.wiley.com/doi/10.1111/acel.70334">​Aging Cell. 2026 Jan;25(1):e70334.​​​​</a>​<br><br></p>
Bacterial metabolic signatures in MASLD predicted through gene-centric studies in stool metagenomesBacterial metabolic signatures in MASLD predicted through gene-centric studies in stool metagenomesMedina-Méndez JM, Iruzubieta P, Fernández-López R, Crespo J, de la Cruz F. 507<p><a href="https://link.springer.com/article/10.1186/s12866-025-04549-5">​BMC Microbiol. 2025 Dec 18.​</a><br></p>
Therapeutic p63 isoform switching rescues epidermal defects in AEC syndromeTherapeutic p63 isoform switching rescues epidermal defects in AEC syndromeDi Girolamo D, Urciuoli G, Sol S, Ferniani M, Antonini D, Marchese E, Palumbo S, De Stefano MA, Baltissen MPA, Ros MA, Dixon J, Hadj-Rabia S, Missero C.510<p><a href="https://www.sciencedirect.com/science/article/pii/S1525001625010688">​Mol Ther. 2025 Dec 24:S1525-0016(25)01068-8</a>. Online ahead of print.​<br></p>
Dorsoventral limb patterning in paired appendages emerged via regulatory repurposing of an ancestral posterior fin moduleDorsoventral limb patterning in paired appendages emerged via regulatory repurposing of an ancestral posterior fin moduleSofía Zdral, Simone Giulio Bordignon, Axel Meyer, Marian A Ros, Joost M Woltering509<p><a href="https://academic.oup.com/mbe/article/43/1/msaf331/8403997">​Molecular Biology and Evolution, Volume 43, Issue 1, January 2026, msaf331,</a><br></p>
Specialized signaling centers direct cell fate and spatial organization in a mesodermal organoid modelSpecialized signaling centers direct cell fate and spatial organization in a mesodermal organoid modelSkoufa E, Zhong J, Hu K, Kahre O, Tsissios G, Carrau L, Herrera A, Dominguez Mantes A, Leleu M, Castilla-Ibeas A, Jang H, Weigert M, La Manno G, Lutolf M, Ros M, Aztekin C.508<p><a href="https://www.science.org/doi/10.1126/sciadv.ady7682">​Sci Adv. 2025 Nov 28;11(48):eady7682​</a>. Epub 2025 Nov 28.<br></p>
Seed-directed growth of gold nanostars on paper via inkjet-printing for the development of a sensitive glucose sensorSeed-directed growth of gold nanostars on paper via inkjet-printing for the development of a sensitive glucose sensorOrtiz-Gómez I, Calderón Celis F, Costa-Fernández JM, Fernández-Lodeiro C, Lodeiro C, Fernández-Lodeiro J.521<p>​Fuente: Green Anal. Chem. 2025 Oct 11, Vol 15, 100305</p><p>Doi: 10.1016/j.greeac.2025.100305​<br></p><p><br><br></p>
Siderophore-Dependent and -Independent Iron Acquisition Pathways in Marinobacter Nauticus SP17Siderophore-Dependent and -Independent Iron Acquisition Pathways in Marinobacter Nauticus SP17Ducos K, Hakil F, Yin NH, Kinska K, Angaïts A, Calderon Celis F, Lobinski R, Nolivos S, Grimaud R.522<p>​​Environ. Microbiol. 2025 Sep 13, 27:9, e70176</p><div>Doi: 10.1111/1462-2920.70176​</div><div><br></div><div>PubmedID: 40944437</div><div><br></div><div>https://enviromicro-journals.onlinelibrary.wiley.com/doi/full/10.1111/1462-2920.70176 ​<br></div><p><br><br></p>
Cardiac fibrosis inhibitor CTPR390 prevents structural and morphological changes in human engineered cardiac connective tissueCardiac fibrosis inhibitor CTPR390 prevents structural and morphological changes in human engineered cardiac connective tissueMaestro D, Palanca A, Soto H, Llarena I, DeGrave AN, Guedes G, Henrique de Oliveira G, Coelho Conceição AL, Mieites V, Icardo JM, Sanchez-Cano C, Conde OM, Lutz S, Cortajarena AL, Villar AV.496<p>​iScience. 2025 Jun 26;28(8):113013.​​<br></p>