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1.
Cell Death Differ ; 30(1): 208-220, 2023 01.
Artigo em Inglês | MEDLINE | ID: mdl-36202990

RESUMO

Red blood cell production is negatively controlled by the rate of apoptosis at the stage of CFU-E/pro-erythroblast differentiation, depending on the balance between erythropoietin (EPO) levels and activation of the Fas/FasL pathway. At this stage, activation of transient caspases through depolarization via mitochondrial outer membrane permeabilization (MOMP) is also required for terminal erythroid differentiation. Molecular mechanisms regulating the differential levels of MOMP during differentiation and apoptosis, however, remain poorly understood. Here we show a novel and essential role for the caspase-10-P13-tBID axis in erythroid terminal differentiation. Caspase-10 (but not caspase-8, which is activated during apoptosis) is activated at the early stages of erythroid terminal differentiation leading to the cleavage of P22-BID into P18-tBID, and later into P13-tBID. Erythropoietin (EPO) by inducing casein kinase I alpha (CKIα) expression, which in turn phosphorylates P18-tBID, prevents the generation of MYR-P15-tBID (leading to apoptosis) and allows the generation of P13-tBID by caspase-10. Unlike P15-tBID, P13-tBID is not myristoylated and as such, does not irreversibly anchor the mitochondrial membrane resulting in a transient MOMP. Likewise, transduction of a P13-tBID fragment induces rapid and strong erythroid terminal differentiation. Thus, EPO modulates the pattern of BID cleavage to control the level of MOMP and determines the fate of erythroblasts between apoptosis and differentiation. This pathway is impaired in 5q- myelodysplastic syndromes because of CK1α haplo-insufficiency and may contribute to erythroid differentiation arrest and high sensitivity of this disease to lenalidomide (LEN).


Assuntos
Eritropoese , Eritropoetina , Caspase 10 , Apoptose/fisiologia , Caspases/metabolismo , Proteínas Reguladoras de Apoptose , Eritropoetina/genética , Eritropoetina/metabolismo
2.
Cell Rep ; 26(12): 3246-3256.e4, 2019 03 19.
Artigo em Inglês | MEDLINE | ID: mdl-30893598

RESUMO

Tryptophan as the precursor of several active compounds, including kynurenine and serotonin, is critical for numerous important metabolic functions. Enhanced tryptophan metabolism toward the kynurenine pathway has been associated with myelodysplastic syndromes (MDSs), which are preleukemic clonal diseases characterized by dysplastic bone marrow and cytopenias. Here, we reveal a fundamental role for tryptophan metabolized along the serotonin pathway in normal erythropoiesis and in the physiopathology of MDS-related anemia. We identify, both in human and murine erythroid progenitors, a functional cell-autonomous serotonergic network with pro-survival and proliferative functions. In vivo studies demonstrate that pharmacological increase of serotonin levels using fluoxetine, a common antidepressant, has the potential to become an important therapeutic strategy in low-risk MDS anemia refractory to erythropoietin.


Assuntos
Anemia/metabolismo , Células Precursoras Eritroides/metabolismo , Eritropoese/efeitos dos fármacos , Síndromes Mielodisplásicas/metabolismo , Síndromes Mielodisplásicas/patologia , Serotonina/farmacologia , Anemia/tratamento farmacológico , Anemia/patologia , Animais , Células Precursoras Eritroides/patologia , Feminino , Humanos , Masculino , Camundongos , Camundongos Knockout , Síndromes Mielodisplásicas/tratamento farmacológico
3.
Proc Natl Acad Sci U S A ; 108(32): 13141-6, 2011 Aug 09.
Artigo em Inglês | MEDLINE | ID: mdl-21788492

RESUMO

Serotonin (5-HT) has long been recognized as a neurotransmitter in the central nervous system, where it modulates a variety of behavioral functions. Availability of 5-HT depends on the expression of the enzyme tryptophan hydroxylase (TPH), and the recent discovery of a dual system for 5-HT synthesis in the brain (TPH2) and periphery (TPH1) has renewed interest in studying the potential functions played by 5-HT in nonnervous tissues. Moreover, characterization of the TPH1 knockout mouse model (TPH1(-/-)) led to the identification of unsuspected roles for peripheral 5-HT, revealing the importance of this monoamine in regulating key physiological functions outside the brain. Here, we present in vivo data showing that mice deficient in peripheral 5-HT display morphological and cellular features of ineffective erythropoiesis. The central event occurs in the bone marrow where the absence of 5-HT hampers progression of erythroid precursors expressing 5-HT(2A) and 5-HT(2B) receptors toward terminal differentiation. In addition, red blood cells from 5-HT-deficient mice are more sensitive to macrophage phagocytosis and have a shortened in vivo half-life. The combination of these two defects causes TPH1(-/-) animals to develop a phenotype of macrocytic anemia. Direct evidence for a 5-HT effect on erythroid precursors is provided by supplementation of the culture medium with 5-HT that increases the proliferative capacity of both 5-HT-deficient and normal cells. Our thorough analysis of TPH1(-/-) mice provides a unique model of morphological and functional aberrations of erythropoiesis and identifies 5-HT as a key factor for red blood cell production and survival.


Assuntos
Eritrócitos/patologia , Eritropoese , Serotonina/deficiência , Anemia Macrocítica/complicações , Anemia Macrocítica/enzimologia , Anemia Macrocítica/patologia , Animais , Medula Óssea/efeitos dos fármacos , Medula Óssea/patologia , Ciclo Celular/efeitos dos fármacos , Proliferação de Células/efeitos dos fármacos , Sobrevivência Celular/efeitos dos fármacos , Suplementos Nutricionais , Eritrócitos/efeitos dos fármacos , Eritrócitos/enzimologia , Células Precursoras Eritroides/metabolismo , Células Precursoras Eritroides/patologia , Eritropoese/efeitos dos fármacos , Ferro/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Fenótipo , Receptores de Serotonina/metabolismo , Serotonina/farmacologia , Agonistas do Receptor de Serotonina/farmacologia , Siderose/complicações , Siderose/patologia , Baço/efeitos dos fármacos , Baço/patologia , Triptofano Hidroxilase/deficiência , Triptofano Hidroxilase/metabolismo
4.
Stem Cells ; 27(7): 1643-53, 2009 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-19544452

RESUMO

The identification of the factors that allow better monitoring of stem cell renewal and differentiation is of paramount importance for the implementation of new regenerative therapies, especially with regard to the nervous and hematopoietic systems. In this article, we present new information on the function of zinc finger protein 191 (ZNF/Zfp191), a factor isolated in hematopoietic cell lines, within progenitors of the central nervous system (CNS). ZNF/Zfp191 has been found to be principally expressed in progenitors of the developing CNS of humans and mice. Such an overlap of the expression patterns in addition to the high homology of the protein in mammals suggested that ZNF/Zfp191 exerts a conserved function within such progenitors. Indeed, ZNF191 knockdown in human neural progenitors inhibits proliferation and leads to the exit of the cell cycle. Conversely, ZNF191 misexpression maintains progenitors in cycle and exerts negative control on the Notch pathway, which prevents them from differentiating. The present data, together with the fact that the inactivation of Zfp191 leads to embryonic lethality, confirm ZNF191 as an essential factor acting for the promotion of the cell cycle and thus maintenance in the progenitor stage. On the bases of expression data, such a function can be extended to progenitor cells of other tissues such as the hematopoietic system, which emphasizes the important issue of further understanding the molecular events controlled by ZNF/Zfp191.


Assuntos
Proteínas de Transporte/fisiologia , Fatores de Transcrição Kruppel-Like/fisiologia , Neurônios/citologia , Neurônios/metabolismo , Células-Tronco/citologia , Animais , Proteínas de Transporte/genética , Ciclo Celular/genética , Ciclo Celular/fisiologia , Diferenciação Celular/genética , Diferenciação Celular/fisiologia , Linhagem Celular , Linhagem Celular Tumoral , Sistema Nervoso Central/embriologia , Sistema Nervoso Central/metabolismo , Embrião de Galinha , Embrião de Mamíferos/citologia , Embrião de Mamíferos/metabolismo , Feminino , Citometria de Fluxo , Humanos , Hibridização In Situ , Fatores de Transcrição Kruppel-Like/genética , Lentivirus/genética , Masculino , Camundongos , Gravidez , Receptores Notch/genética , Receptores Notch/fisiologia , Transdução de Sinais/genética , Transdução de Sinais/fisiologia , Células-Tronco/metabolismo
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