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1.
Haematologica ; 106(3): 746-758, 2021 03 01.
Artículo en Inglés | MEDLINE | ID: mdl-32327500

RESUMEN

In ribosomopathies, the Diamond-Blackfan anemia (DBA) or 5q- syndrome, ribosomal protein (RP) genes are affected by mutation or deletion, resulting in bone marrow erythroid hypoplasia. Unbalanced production of ribosomal subunits leading to a limited ribosome cellular content regulates translation at the expense of the master erythroid transcription factor GATA1. In RPS14-deficient cells mimicking 5q- syndrome erythroid defects, we show that the transcript length, codon bias of the coding sequence (CDS) and 3'UTR (untranslated region) structure are the key determinants of translation. In these cells, short transcripts with a structured 3'UTR and high codon adaptation index (CAI) showed a decreased translation efficiency. Quantitative analysis of the whole proteome confirmed that the post-transcriptional changes depended on the transcript characteristics that governed the translation efficiency in conditions of low ribosome availability. In addition, proteins involved in normal erythroid differentiation share most determinants of translation selectivity. Our findings thus indicate that impaired erythroid maturation due to 5q- syndrome may proceed from a translational selectivity at the expense of the erythroid differentiation program, and suggest that an interplay between the CDS and UTR may regulate mRNA translation.


Asunto(s)
Anemia de Diamond-Blackfan , Anemia Macrocítica , Proteínas Ribosómicas , Anemia de Diamond-Blackfan/genética , Humanos , Proteoma/genética , Proteínas Ribosómicas/deficiencia , Proteínas Ribosómicas/genética , Ribosomas/genética
2.
Blood ; 137(1): 89-102, 2021 01 07.
Artículo en Inglés | MEDLINE | ID: mdl-32818241

RESUMEN

The role of ribosome biogenesis in erythroid development is supported by the recognition of erythroid defects in ribosomopathies in both Diamond-Blackfan anemia and 5q- syndrome. Whether ribosome biogenesis exerts a regulatory function on normal erythroid development is still unknown. In the present study, a detailed characterization of ribosome biogenesis dynamics during human and murine erythropoiesis showed that ribosome biogenesis is abruptly interrupted by the decline in ribosomal DNA transcription and the collapse of ribosomal protein neosynthesis. Its premature arrest by the RNA Pol I inhibitor CX-5461 targeted the proliferation of immature erythroblasts. p53 was activated spontaneously or in response to CX-5461, concomitant to ribosome biogenesis arrest, and drove a transcriptional program in which genes involved in cell cycle-arrested, negative regulation of apoptosis, and DNA damage response were upregulated. RNA Pol I transcriptional stress resulted in nucleolar disruption and activation of the ATR-CHK1-p53 pathway. Our results imply that the timing of ribosome biogenesis extinction and p53 activation is crucial for erythroid development. In ribosomopathies in which ribosome availability is altered by unbalanced production of ribosomal proteins, the threshold downregulation of ribosome biogenesis could be prematurely reached and, together with pathological p53 activation, prevents a normal expansion of erythroid progenitors.


Asunto(s)
Diferenciación Celular/fisiología , Células Eritroides/citología , Eritropoyesis/fisiología , Ribosomas/metabolismo , Proteína p53 Supresora de Tumor/metabolismo , Animales , Células Madre Hematopoyéticas , Humanos , Ratones , Biogénesis de Organelos
3.
Curr Opin Hematol ; 24(3): 191-197, 2017 May.
Artículo en Inglés | MEDLINE | ID: mdl-28072603

RESUMEN

PURPOSE OF REVIEW: Myelodysplastic syndromes (MDS) are heterogeneous diseases of the hematopoietic stem cell in the elderly. Anemia is the main symptom that mostly correlates with dysplastic erythropoiesis in the bone marrow. We will review the recent advances in understanding the diverse mechanisms of dyserythropoiesis. RECENT FINDINGS: Dyserythropoiesis defined as 10% dysplastic erythroid cells in the bone marrow is found in more than 80% of early MDS. Immature erythroblasts accumulate at the expense of mature erythroblasts due to differentiation arrest and apoptosis. In early MDS with dyserythropoiesis, caspase-dependent cleavage of the erythroid transcription factor GATA-1 occurring in basophilic erythroblasts accounts for impairment of final maturation. Depending on initiating genetic alteration, specific mechanisms contribute to erythroid defect. In MDS with 5q deletion, the haploinsufficiency of ribosomal protein gene, RPS14, opposes the transition of immature to mature erythroblasts by inducing a p53-dependent ribosome stress, cell cycle arrest and apoptosis. Recent work identifies the activation of a p53-S100A8/9 innate immune pathway that both intrinsically and extrinsically contributes to defective erythropoiesis. In MDS with ring sideroblasts, a paradigm of dyserythropoiesis, a unique mutation in SF3B1 splicing factor gene induces a multiplicity of alterations at RNA level that deeply modifies the patterns of gene expression. SUMMARY: Insights in the pathophysiology of MDS with dyserythropoiesis may guide the choice of the appropriate therapy, for instance lenalidomide in MDS with del(5q). A better understanding of the mechanisms of dyserthropoiesis is required to treat anemia in non-del(5q) MDS, especially in case of resistance to first-line therapy by erythropoiesis-stimulating agents.


Asunto(s)
Células de la Médula Ósea/metabolismo , Médula Ósea/metabolismo , Eritropoyesis , Síndromes Mielodisplásicos/etiología , Síndromes Mielodisplásicos/metabolismo , Anemia Macrocítica/genética , Anemia Macrocítica/metabolismo , Anemia Macrocítica/patología , Anemia Sideroblástica/etiología , Anemia Sideroblástica/metabolismo , Anemia Sideroblástica/patología , Animales , Médula Ósea/patología , Células de la Médula Ósea/patología , Deleción Cromosómica , Cromosomas Humanos Par 5/genética , Cromosomas Humanos Par 5/metabolismo , Células Eritroides/citología , Células Eritroides/metabolismo , Células Eritroides/patología , Eritropoyesis/genética , Factor de Transcripción GATA1/genética , Factor de Transcripción GATA1/metabolismo , Regulación de la Expresión Génica , Humanos , Inmunidad Innata , Mitocondrias/genética , Mitocondrias/inmunología , Mitocondrias/metabolismo , Síndromes Mielodisplásicos/diagnóstico , Empalme del ARN , Transducción de Señal
4.
PLoS Pathog ; 11(8): e1005078, 2015 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-26241037

RESUMEN

Differential modulation of NF-κB during meningococcal infection is critical in innate immune response to meningococcal disease. Non-invasive isolates of Neisseria meningitidis provoke a sustained NF-κB activation in epithelial cells. However, the hyperinvasive isolates of the ST-11 clonal complex (ST-11) only induce an early NF-κB activation followed by a sustained activation of JNK and apoptosis. We show that this temporal activation of NF-κB was caused by specific cleavage at the C-terminal region of NF-κB p65/RelA component within the nucleus of infected cells. This cleavage was mediated by the secreted 150 kDa meningococcal ST-11 IgA protease carrying nuclear localisation signals (NLS) in its α-peptide moiety that allowed efficient intra-nuclear transport. In a collection of non-ST-11 healthy carriage isolates lacking NLS in the α-peptide, secreted IgA protease was devoid of intra-nuclear transport. This part of iga polymorphism allows non-invasive isolates lacking NLS, unlike hyperinvasive ST-11 isolates of N. meningitides habouring NLS in their α-peptide, to be carried asymptomatically in the human nasopharynx through selective eradication of their ability to induce apoptosis in infected epithelial cells.


Asunto(s)
Proteínas Bacterianas/metabolismo , Núcleo Celular/metabolismo , Infecciones Meningocócicas/metabolismo , Serina Endopeptidasas/metabolismo , Factor de Transcripción ReIA/metabolismo , Transporte Activo de Núcleo Celular/fisiología , Apoptosis/inmunología , Proteínas Bacterianas/inmunología , Línea Celular , Electroforesis en Gel Bidimensional , Citometría de Flujo , Humanos , Immunoblotting , Inmunoprecipitación , Infecciones Meningocócicas/inmunología , Microscopía Fluorescente , Datos de Secuencia Molecular , Mutagénesis Sitio-Dirigida , Neisseria meningitidis/inmunología , Neisseria meningitidis/metabolismo , Neisseria meningitidis/patogenicidad , Señales de Localización Nuclear , Reacción en Cadena en Tiempo Real de la Polimerasa , Transfección
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