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1.
Nucleic Acids Res ; 50(6): 3096-3114, 2022 04 08.
Artigo em Inglês | MEDLINE | ID: mdl-35234914

RESUMO

The mammalian cleavage factor I (CFIm) has been implicated in alternative polyadenylation (APA) in a broad range of contexts, from cancers to learning deficits and parasite infections. To determine how the CFIm expression levels are translated into these diverse phenotypes, we carried out a multi-omics analysis of cell lines in which the CFIm25 (NUDT21) or CFIm68 (CPSF6) subunits were either repressed by siRNA-mediated knockdown or over-expressed from stably integrated constructs. We established that >800 genes undergo coherent APA in response to changes in CFIm levels, and they cluster in distinct functional classes related to protein metabolism. The activity of the ERK pathway traces the CFIm concentration, and explains some of the fluctuations in cell growth and metabolism that are observed upon CFIm perturbations. Furthermore, multiple transcripts encoding proteins from the miRNA pathway are targets of CFIm-dependent APA. This leads to an increased biogenesis and repressive activity of miRNAs at the same time as some 3' UTRs become shorter and presumably less sensitive to miRNA-mediated repression. Our study provides a first systematic assessment of a core set of APA targets that respond coherently to changes in CFIm protein subunit levels (CFIm25/CFIm68). We describe the elicited signaling pathways downstream of CFIm, which improve our understanding of the key role of CFIm in integrating RNA processing with other cellular activities.


Assuntos
MicroRNAs , Poliadenilação , Regiões 3' não Traduzidas , Animais , Fator de Especificidade de Clivagem e Poliadenilação/genética , Fibrinogênio/genética , Mamíferos/genética , MicroRNAs/genética , Fatores de Poliadenilação e Clivagem de mRNA/genética
2.
EMBO J ; 39(18): e103922, 2020 09 15.
Artigo em Inglês | MEDLINE | ID: mdl-32812257

RESUMO

Translational readthrough, i.e., elongation of polypeptide chains beyond the stop codon, was initially reported for viral RNA, but later found also on eukaryotic transcripts, resulting in proteome diversification and protein-level modulation. Here, we report that AGO1x, an evolutionarily conserved translational readthrough isoform of Argonaute 1, is generated in highly proliferative breast cancer cells, where it curbs accumulation of double-stranded RNAs (dsRNAs) and consequent induction of interferon responses and apoptosis. In contrast to other mammalian Argonaute protein family members with primarily cytoplasmic functions, AGO1x exhibits nuclear localization in the vicinity of nucleoli. We identify AGO1x interaction with the polyribonucleotide nucleotidyltransferase 1 (PNPT1) and show that the depletion of this protein further augments dsRNA accumulation. Our study thus uncovers a novel function of an Argonaute protein in buffering the endogenous dsRNA-induced interferon responses, different than the canonical function of AGO proteins in the miRNA effector pathway. As AGO1x expression is tightly linked to breast cancer cell proliferation, our study thus suggests a new direction for limiting tumor growth.


Assuntos
Proteínas Argonautas/metabolismo , Neoplasias da Mama/metabolismo , Proliferação de Células/efeitos dos fármacos , Fatores de Iniciação em Eucariotos/metabolismo , Interferons/metabolismo , Proteínas de Neoplasias/metabolismo , RNA de Cadeia Dupla/farmacologia , Transdução de Sinais/efeitos dos fármacos , Proteínas Argonautas/genética , Neoplasias da Mama/genética , Neoplasias da Mama/patologia , Fatores de Iniciação em Eucariotos/genética , Exorribonucleases/genética , Exorribonucleases/metabolismo , Feminino , Células HEK293 , Células HeLa , Humanos , Interferons/genética , Proteínas de Neoplasias/genética , Isoformas de Proteínas/genética , Isoformas de Proteínas/metabolismo , Transdução de Sinais/genética
3.
Biol Direct ; 12(1): 8, 2017 04 17.
Artigo em Inglês | MEDLINE | ID: mdl-28412966

RESUMO

BACKGROUND: The transition between epithelial and mesenchymal phenotypes (EMT) occurs in a variety of contexts. It is critical for mammalian development and it is also involved in tumor initiation and progression. Master transcription factor (TF) regulators of this process are conserved between mouse and human. METHODS: From a computational analysis of a variety of high-throughput sequencing data sets we initially inferred that TFAP2A is connected to the core EMT network in both species. We then analysed publicly available human breast cancer data for TFAP2A expression and also studied the expression (by mRNA sequencing), activity (by monitoring the expression of its predicted targets), and binding (by electrophoretic mobility shift assay and chromatin immunoprecipitation) of this factor in a mouse mammary gland EMT model system (NMuMG) cell line. RESULTS: We found that upon induction of EMT, the activity of TFAP2A, reflected in the expression level of its predicted targets, is up-regulated in a variety of systems, both murine and human, while TFAP2A's expression is increased in more "stem-like" cancers. We provide strong evidence for the direct interaction between the TFAP2A TF and the ZEB2 promoter and we demonstrate that this interaction affects ZEB2 expression. Overexpression of TFAP2A from an exogenous construct perturbs EMT, however, in a manner similar to the downregulation of endogenous TFAP2A that takes place during EMT. CONCLUSIONS: Our study reveals that TFAP2A is a conserved component of the core network that regulates EMT, acting as a repressor of many genes, including ZEB2. REVIEWERS: This article has been reviewed by Dr. Martijn Huynen and Dr. Nicola Aceto.


Assuntos
Transição Epitelial-Mesenquimal/genética , Regulação Neoplásica da Expressão Gênica , Proteínas de Homeodomínio/genética , Proteínas Repressoras/genética , Fator de Transcrição AP-2/metabolismo , Homeobox 1 de Ligação a E-box em Dedo de Zinco/genética , Animais , Linhagem Celular , Feminino , Proteínas de Homeodomínio/metabolismo , Humanos , Glândulas Mamárias Animais/metabolismo , Glândulas Mamárias Animais/fisiopatologia , Camundongos , Proteínas Repressoras/metabolismo , Fator de Transcrição AP-2/genética , Fator de Crescimento Transformador beta1/genética , Fator de Crescimento Transformador beta1/metabolismo , Homeobox 2 de Ligação a E-box com Dedos de Zinco , Homeobox 1 de Ligação a E-box em Dedo de Zinco/metabolismo
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