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Diabetes|December 17, 2017
SRp55 Regulates a Splicing Network That Controls Human Pancreatic β-Cell Function and SurvivalJonàs Juan-Mateu, Maria Inês Alvelos, Jean-Valéry Turatsinze, et al.Diabetes|October 15, 2016
MicroRNAs miR-23a-3p, miR-23b-3p, and miR-149-5p Regulate the Expression of Proapoptotic BH3-Only Proteins DP5 and PUMA in Human Pancreatic β-CellsFabio Arturo Grieco, Guido Sebastiani, Jonas Juan-Mateu, et al.Nature Metabolism|February 9, 2023
Pancreatic microexons regulate islet function and glucose homeostasisJonàs Juan-Mateu, Simon Bajew, Marta Miret-Cuesta, et al.Life Science Alliance|December 30, 2020
The RNA-binding profile of the splicing factor SRSF6 in immortalized human pancreatic β-cellsMaria Inês Alvelos, Mirko Brüggemann, Fx Reymond Sutandy, et al.Nucleic Acids Research|April 14, 2026
Nuclear speckle dynamics are controlled by polyphosphate inhibition of CLK proteinsBlanca Lázaro, Francisco J Tadeo, Andrea Rodríguez, et al.Cell Reports|July 19, 2025
An SRRM3-regulated neural alternative splicing program is subverted to promote tumor progression in pancreatic neuroendocrine cellsMyrto Potiri, Charikleia Moschou, Zoi Erpapazoglou, et al.Plos One|March 29, 2013
Interplay between DMD point mutations and splicing signals in Dystrophinopathy phenotypesJonàs Juan-Mateu, Lidia González-Quereda, Maria José Rodríguez, et al.The Journal of Biological Chemistry|January 13, 2017
Neuron-enriched RNA-binding Proteins Regulate Pancreatic Beta Cell Function and SurvivalJonàs Juan-Mateu, Tatiana H Rech, Olatz Villate, et al.Nature Genetics|November 3, 2019
The impact of proinflammatory cytokines on the β-cell regulatory landscape provides insights into the genetics of type 1 diabetesMireia Ramos-Rodríguez, Helena Raurell-Vila, Maikel L Colli, et al.Orphanet Journal of Rare Diseases|October 25, 2012
Prognostic value of X-chromosome inactivation in symptomatic female carriers of dystrophinopathyJonàs Juan-Mateu, Maria José Rodríguez, Andrés Nascimento, et al.Pageof 3