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Molecular Systems Biology|April 21, 2020
Pan-tissue analysis of allelic alternative polyadenylation suggests widespread functional regulationYisheng Li, Bernhard Schaefke, Xudong Zou, et al.Cancers|November 11, 2022
Radiofrequency Electromagnetic Fields Cause Non-Temperature-Induced Physical and Biological Effects in Cancer CellsPeter Wust, Paraskevi D Veltsista, Eva Oberacker, et al.Life Science Alliance|December 31, 2021
Mammalian splicing divergence is shaped by drift, buffering in trans, and a scaling lawXudong Zou, Bernhard Schaefke, Yisheng Li, et al.Molecular Cell|February 16, 2020
A Conserved Kinase-Based Body-Temperature Sensor Globally Controls Alternative Splicing and Gene ExpressionTom Haltenhof, Ana Kotte, Francesca De Bortoli, et al.The EMBO Journal|August 19, 2024
The unfolded protein response regulates ER exit sites via SNRPB-dependent RNA splicing and contributes to bone developmentMuhammad Zahoor, Yanchen Dong, Marco Preussner, et al.Genome Biology|July 6, 2023
Intronic small nucleolar RNAs regulate host gene splicing through base pairing with their adjacent intronic sequencesDanny Bergeron, Laurence Faucher-Giguère, Ann-Kathrin Emmerichs, et al.Life Science Alliance|December 21, 2022
Branch point strength controls species-specific CAMK2B alternative splicing and regulates LTPAndreas Franz, A Ioana Weber, Marco Preußner, et al.Science Advances|March 3, 2023
Regulation of 3' splice site selection after step 1 of splicing by spliceosomal C* proteinsOlexandr Dybkov, Marco Preußner, Leyla El Ayoubi, et al.Nature|November 22, 2016
The genomic basis of circadian and circalunar timing adaptations in a midgeTobias S Kaiser, Birgit Poehn, David Szkiba, et al.Nature Communications|April 13, 2016
Alternative splicing of MALT1 controls signalling and activation of CD4(+) T cellsIsabel Meininger, Richard A Griesbach, Desheng Hu, et al.Pageof 8