ArticleCellular and molecular life sciences : CMLS2022
MCL1 alternative polyadenylation is essential for cell survival and mitochondria morphology.
Article in Cellular and molecular life sciences : CMLS, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed, 14 citations in OpenAlex.
- mRNA Cancer Vaccines: From Pandemic Paradigm to Personalized Oncology Therapeutics.Cancer innovation · 2025Review
- Mitochondrial subtypes in renal ischemia reperfusion injury guide delayed graft function and Long-Term graft prediction.Scientific reports · 2025Article
- Identification of mitochondria-related genes associated with anesthetics in patients undergoing off-pump coronary artery bypass grafting surgery.Frontiers in surgery · 2025Article
- Multiplexed screening reveals how cancer-specific alternative polyadenylation shapes tumor growth in vivo.Nature communications · 2024Article
- Alternative Transcripts Diversify Genome Function for Phenome Relevance to Health and Diseases.Genes · 2023Review
- The RNA binding proteins TIA1 and TIAL1 promote Mcl1 mRNA translation to protect germinal center responses from apoptosis.Cellular & molecular immunology · 2023Article
- Pro-inflammatory polarization and colorectal cancer modulate alternative and intronic polyadenylation in primary human macrophages.Frontiers in immunology · 2023Article
- A novel risk model based on anoikis: Predicting prognosis and immune infiltration in cutaneous melanoma.Frontiers in pharmacology · 2022Article
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Authors and funding
7 authors at 4 institutions in 3 countries.
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Abstract
Alternative polyadenylation in the 3' UTR (3' UTR-APA) is a mode of gene expression regulation, fundamental for mRNA stability, translation and localization. In the immune system, it was shown that upon T cell activation, there is an increase in the relative expression of mRNA isoforms with short 3' UTRs resulting from 3' UTR-APA. However, the functional significance of 3' UTR-APA remains largely unknown. Here, we studied the physiological function of 3' UTR-APA in the regulation of Myeloid Cell Leukemia 1 (MCL1), an anti-apoptotic member of the Bcl-2 family essential for T cell survival. We found that T cells produce two MCL1 mRNA isoforms (pA1 and pA2) by 3' UTR-APA. We show that upon T cell activation, there is an increase in both the shorter pA1 mRNA isoform and MCL1 protein levels. Moreover, the less efficiently translated pA2 isoform is downregulated by miR-17, which is also more expressed upon T cell activation. Therefore, by increasing the expression of the more efficiently translated pA1 mRNA isoform, which escapes regulation by miR-17, 3' UTR-APA fine tunes MCL1 protein levels, critical for activated T cells' survival. Furthermore, using CRISPR/Cas9-edited cells, we show that depletion of either pA1 or pA2 mRNA isoforms causes severe defects in mitochondria morphology, increases apoptosis and impacts cell proliferation. Collectively, our results show that MCL1 alternative polyadenylation has a key role in the regulation of MCL1 protein levels upon T cell activation and reveal an essential function for MCL1 3' UTR-APA in cell viability and mitochondria dynamics.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.