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1.
Nat Commun ; 15(1): 4325, 2024 May 21.
Artículo en Inglés | MEDLINE | ID: mdl-38773071

RESUMEN

Hematopoietic stem cell (HSC) mutations can result in clonal hematopoiesis (CH) with heterogeneous clinical outcomes. Here, we investigate how the cell state preceding Tet2 mutation impacts the pre-malignant phenotype. Using an inducible system for clonal analysis of myeloid progenitors, we find that the epigenetic features of clones at similar differentiation status are highly heterogeneous and functionally respond differently to Tet2 mutation. Cell differentiation stage also influences Tet2 mutation response indicating that the cell of origin's epigenome modulates clone-specific behaviors in CH. Molecular features associated with higher risk outcomes include Sox4 that sensitizes cells to Tet2 inactivation, inducing dedifferentiation, altered metabolism and increasing the in vivo clonal output of mutant cells, as confirmed in primary GMP and HSC models. Our findings validate the hypothesis that epigenetic features can predispose specific clones for dominance, explaining why identical genetic mutations can result in different phenotypes.


Asunto(s)
Proteínas de Unión al ADN , Dioxigenasas , Epigénesis Genética , Células Madre Hematopoyéticas , Mutación , Proteínas Proto-Oncogénicas , Dioxigenasas/genética , Proteínas de Unión al ADN/genética , Proteínas de Unión al ADN/metabolismo , Animales , Células Madre Hematopoyéticas/metabolismo , Células Madre Hematopoyéticas/citología , Proteínas Proto-Oncogénicas/genética , Proteínas Proto-Oncogénicas/metabolismo , Humanos , Hematopoyesis/genética , Ratones , Diferenciación Celular/genética
2.
Cell Rep ; 42(2): 112099, 2023 02 28.
Artículo en Inglés | MEDLINE | ID: mdl-36763502

RESUMEN

MLL-rearrangements (MLL-r) are recurrent genetic events in acute myeloid leukemia (AML) and frequently associate with poor prognosis. In infants, MLL-r can be sufficient to drive transformation. However, despite the prenatal origin of MLL-r in these patients, congenital leukemia is very rare with transformation usually occurring postnatally. The influence of prenatal signals on leukemogenesis, such as those mediated by the fetal-specific protein LIN28B, remains controversial. Here, using a dual-transgenic mouse model that co-expresses MLL-ENL and LIN28B, we investigate the impact of LIN28B on AML. LIN28B impedes the progression of MLL-r AML through compromised leukemia-initiating cell activity and suppression of MYB signaling. Mechanistically, LIN28B directly binds to MYBBP1A mRNA, resulting in elevated protein levels of this MYB co-repressor. Functionally, overexpression of MYBBP1A phenocopies the tumor-suppressor effects of LIN28B, while its perturbation omits it. Thereby, we propose that developmentally restricted expression of LIN28B provides a layer of protection against MYB-dependent AML.


Asunto(s)
Leucemia Mieloide Aguda , Proteína de la Leucemia Mieloide-Linfoide , Humanos , Ratones , Animales , Proteína de la Leucemia Mieloide-Linfoide/genética , Proteína de la Leucemia Mieloide-Linfoide/metabolismo , Leucemia Mieloide Aguda/genética , Leucemia Mieloide Aguda/patología , Reordenamiento Génico , Ratones Transgénicos , Transformación Celular Neoplásica/patología , Proteínas de Fusión Oncogénica/genética , Proteínas de Fusión Oncogénica/metabolismo , Proteínas de Unión al ADN/metabolismo , Factores de Transcripción/metabolismo , Proteínas de Unión al ARN/genética
3.
Blood Adv ; 6(24): 6228-6241, 2022 12 27.
Artículo en Inglés | MEDLINE | ID: mdl-35584393

RESUMEN

The fetal-to-adult switch in hematopoietic stem cell (HSC) behavior is characterized by alterations in lineage output and entry into deep quiescence. Here we identify the emergence of megakaryocyte (Mk)-biased HSCs as an event coinciding with this developmental switch. Single-cell chromatin accessibility analysis reveals a ubiquitous acquisition of Mk lineage priming signatures in HSCs during the fetal-to-adult transition. These molecular changes functionally coincide with increased amplitude of early Mk differentiation events after acute inflammatory insult. Importantly, we identify LIN28B, known for its role in promoting fetal-like self-renewal, as an insulator against the establishment of an Mk-biased HSC pool. LIN28B protein is developmentally silenced in the third week of life, and its prolonged expression delays emergency platelet output in young adult mice. We propose that developmental regulation of Mk priming may represent a switch for HSCs to toggle between prioritizing self-renewal in the fetus and increased host protection in postnatal life.


Asunto(s)
Señales (Psicología) , Megacariocitos , Animales , Ratones , Megacariocitos/metabolismo , Células Madre Hematopoyéticas/metabolismo , Plaquetas/metabolismo , Hematopoyesis
4.
Elife ; 72018 12 18.
Artículo en Inglés | MEDLINE | ID: mdl-30561324

RESUMEN

A hallmark of adult hematopoiesis is the continuous replacement of blood cells with limited lifespans. While active hematopoietic stem cell (HSC) contribution to multilineage hematopoiesis is the foundation of clinical HSC transplantation, recent reports have questioned the physiological contribution of HSCs to normal/steady-state adult hematopoiesis. Here, we use inducible lineage tracing from genetically marked adult HSCs and reveal robust HSC-derived multilineage hematopoiesis. This commences via defined progenitor cells, but varies substantially in between different hematopoietic lineages. By contrast, adult HSC contribution to hematopoietic cells with proposed fetal origins is neglible. Finally, we establish that the HSC contribution to multilineage hematopoiesis declines with increasing age. Therefore, while HSCs are active contributors to native adult hematopoiesis, it appears that the numerical increase of HSCs is a physiologically relevant compensatory mechanism to account for their reduced differentiation capacity with age.


Asunto(s)
Envejecimiento/fisiología , Diferenciación Celular , Hematopoyesis , Células Madre Hematopoyéticas/fisiología , Factores de Edad , Animales , Linaje de la Célula , Ratones , Coloración y Etiquetado
5.
Int J Cancer ; 143(9): 2200-2212, 2018 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-29752716

RESUMEN

Solid tumors, including gliomas, still represent a challenge to clinicians and first line treatments often fail, calling for new paradigms in cancer therapy. Novel strategies to overcome tumor resistance are mainly represented by multi-targeted approaches, and cell vector-based therapy is one of the most promising treatment modalities under development. Here, we show that mouse bone marrow-derived mesenchymal stromal cells (MSCs), when primed with low-dose irradiation (irMSCs), undergo changes in their immunogenic and angiogenic capacity and acquire anti-tumoral properties in a mouse model of glioblastoma (GBM). Following grafting in GL261 glioblastoma, irMSCs migrate extensively and selectively within the tumor and infiltrate predominantly the peri-vascular niche, leading to rejection of established tumors and cure in 29% of animals. The therapeutic radiation dose window is narrow, with effects seen between 2 and 15 Gy, peaking at 5 Gy. A single low-dose radiation decreases MSCs inherent immune suppressive properties in vitro as well as shapes their immune regulatory ability in vivo. Intra-tumorally grafted irMSCs stimulate the immune system and decrease immune suppression. Additionally, irMSCs enhance peri-tumoral reactive astrocytosis and display anti-angiogenic properties. Hence, the present study provides strong evidence for a therapeutic potential of low-dose irMSCs in cancer as well as giving new insight into MSC biology and applications.


Asunto(s)
Glioblastoma/inmunología , Glioblastoma/terapia , Trasplante de Células Madre Mesenquimatosas , Células Madre Mesenquimatosas/inmunología , Animales , Apoptosis , Proliferación Celular , Femenino , Glioblastoma/irrigación sanguínea , Células Madre Mesenquimatosas/citología , Células Madre Mesenquimatosas/efectos de la radiación , Ratones , Ratones Endogámicos C57BL , Células Tumorales Cultivadas
6.
Curr Opin Immunol ; 51: 7-13, 2018 04.
Artículo en Inglés | MEDLINE | ID: mdl-29272734

RESUMEN

The adult adaptive immune system is comprised of a wide spectrum of lymphocyte subsets with distinct antigen receptor repertoire profiles, effector functions, turnover times and anatomical locations, acting in concert to provide optimal host protection and self-regulation. While some lymphocyte populations are replenished by bone marrow hematopoietic stem cells (HSCs) through adulthood, others emerge during a limited window of time during fetal and postnatal life and sustain through self-replenishment. Despite fundamental implications in immune regeneration, early life immunity and leukemogenesis, the impact of developmental timing on lymphocyte output remains an under explored frontier in immunology. In this review, we spotlight recent insights into the developmental changes in B cell output in mice and explore how several age specific cellular and molecular factors may shape the formation of a diverse adaptive immune system.


Asunto(s)
Linfocitos B/citología , Linfocitos B/fisiología , Diferenciación Celular , Factores de Edad , Animales , Subgrupos de Linfocitos B/citología , Subgrupos de Linfocitos B/inmunología , Subgrupos de Linfocitos B/metabolismo , Biomarcadores , Médula Ósea/inmunología , Médula Ósea/metabolismo , Diferenciación Celular/genética , Diferenciación Celular/inmunología , Movimiento Celular , Selección Clonal Mediada por Antígenos/inmunología , Células Madre Hematopoyéticas/citología , Células Madre Hematopoyéticas/metabolismo , Humanos , Linfopoyesis/genética , Linfopoyesis/inmunología , Fenotipo , Proteínas de Unión al ARN/genética , Proteínas de Unión al ARN/metabolismo
7.
Br J Haematol ; 183(4): 588-600, 2018 11.
Artículo en Inglés | MEDLINE | ID: mdl-30596405

RESUMEN

Given that FLT3 expression is highly restricted on lymphoid progenitors, it is possible that the established role of FLT3 in the regulation of B and T lymphopoiesis reflects its high expression and role in regulation of lymphoid-primed multipotent progenitors (LMPPs) or common lymphoid progenitors (CLPs). We generated a Flt3 conditional knock-out (Flt3fl/fl) mouse model to address the direct role of FLT3 in regulation of lymphoid-restricted progenitors, subsequent to turning on Rag1 expression, as well as potentially ontogeny-specific roles in B and T lymphopoiesis. Our studies establish a prominent and direct role of FLT3, independently of the established role of FLT3 in regulation of LMPPs and CLPs, in regulation of fetal as well as adult early B cell progenitors, and the early thymic progenitors (ETPs) in adult mice but not in the fetus. Our findings highlight the potential benefit of targeting poor prognosis acute B-cell progenitor leukaemia and ETP leukaemia with recurrent FLT3 mutations using clinical FLT3 inhibitors.


Asunto(s)
Células de la Médula Ósea/metabolismo , Diferenciación Celular , Células Progenitoras Linfoides/metabolismo , Linfopoyesis , Leucemia-Linfoma Linfoblástico de Células Precursoras B/metabolismo , Tirosina Quinasa 3 Similar a fms/metabolismo , Animales , Células de la Médula Ósea/patología , Proteínas de Homeodominio/genética , Proteínas de Homeodominio/metabolismo , Células Progenitoras Linfoides/patología , Ratones , Ratones Noqueados , Leucemia-Linfoma Linfoblástico de Células Precursoras B/genética , Leucemia-Linfoma Linfoblástico de Células Precursoras B/patología , Timo/metabolismo , Timo/patología , Tirosina Quinasa 3 Similar a fms/genética
8.
Bio Protoc ; 7(8): e2242, 2017 Apr 20.
Artículo en Inglés | MEDLINE | ID: mdl-34541235

RESUMEN

Cellular barcoding enables the dissection of clonal dynamics in heterogeneous cell populations through single cell lineage tracing. The labeling of hematopoietic stem and progenitor cells (HSPCs) with unique and heritable DNA barcodes, makes it possible to resolve donor cell heterogeneity in terms of differentiation potential and lineage bias at the single cell level, through subsequent transplantation and high-throughput sequencing. Furthermore, cellular barcoding allows for bona fide hematopoietic stem cells (HSCs) to be defined based on functional rather than immunophenotypic parameters. This protocol describes the work flow of lentiviral cellular barcoding, tracking 14.5 days post coitum (d.p.c.) fetal liver (FL) Lineage-Sca+cKit+ (LSK) HSPCs following long-term reconstitution (Figure 1) ( Kristiansen et al., 2016 ), but can be adapted to the cell type or time frame of choice. Figure 1.Summary of experimental workflow ( Naik et al., 2013 ).

9.
Immunity ; 45(2): 346-57, 2016 08 16.
Artículo en Inglés | MEDLINE | ID: mdl-27533015

RESUMEN

Hematopoietic stem cells (HSCs) undergo a functional switch in neonatal mice hallmarked by a decrease in self-renewing divisions and entry into quiescence. Here, we investigated whether the developmental attenuation of B-1a cell output is a consequence of a shift in stem cell state during ontogeny. Using cellular barcoding for in vivo single-cell fate analyses, we found that fetal liver definitive HSCs gave rise to both B-1a and B-2 cells. Whereas B-1a potential diminished in all HSCs with time, B-2 output was maintained. B-1a and B-2 plasticity could be reinitiated in a subset of adult HSCs by ectopic expression of the RNA binding protein LIN28B, a key regulator of fetal hematopoiesis, and this coincided with the clonal reversal to fetal-like elevated self-renewal and repopulation potential. These results anchor the attenuation of B-1a cell output to fetal HSC behavior and demonstrate that the developmental decline in regenerative potential represents a reversible HSC state.


Asunto(s)
Linfocitos B/fisiología , Proteínas de Unión al ADN/metabolismo , Células Madre Hematopoyéticas/fisiología , Hígado/fisiología , Subgrupos Linfocitarios/fisiología , Animales , Animales Recién Nacidos , Diferenciación Celular/genética , Plasticidad de la Célula , Autorrenovación de las Células , Células Clonales , Proteínas de Unión al ADN/genética , Femenino , Hematopoyesis/genética , Inmunofenotipificación , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Proteínas de Unión al ARN , Análisis de la Célula Individual
10.
Mol Syst Biol ; 11(6): 810, 2015 Jun 02.
Artículo en Inglés | MEDLINE | ID: mdl-26038114

RESUMEN

B-cell receptor (BCR) signaling is essential for the development and function of B cells; however, the spectrum of proteins involved in BCR signaling is not fully known. Here we used quantitative mass spectrometry-based proteomics to monitor the dynamics of BCR signaling complexes (signalosomes) and to investigate the dynamics of downstream phosphorylation and ubiquitylation signaling. We identify most of the previously known components of BCR signaling, as well as many proteins that have not yet been implicated in this system. BCR activation leads to rapid tyrosine phosphorylation and ubiquitylation of the receptor-proximal signaling components, many of which are co-regulated by both the modifications. We illustrate the power of multilayered proteomic analyses for discovering novel BCR signaling components by demonstrating that BCR-induced phosphorylation of RAB7A at S72 prevents its association with effector proteins and with endo-lysosomal compartments. In addition, we show that BCL10 is modified by LUBAC-mediated linear ubiquitylation, and demonstrate an important function of LUBAC in BCR-induced NF-κB signaling. Our results offer a global and integrated view of BCR signaling, and the provided datasets can serve as a valuable resource for further understanding BCR signaling networks.


Asunto(s)
Proteínas Adaptadoras Transductoras de Señales/genética , Proteínas de la Membrana/genética , Receptores de Antígenos de Linfocitos B/genética , Ubiquitina-Proteína Ligasas/genética , Proteínas Adaptadoras Transductoras de Señales/biosíntesis , Proteína 10 de la LLC-Linfoma de Células B , Linfocitos B/metabolismo , Células HEK293 , Células HeLa , Humanos , Proteínas de la Membrana/biosíntesis , FN-kappa B/biosíntesis , FN-kappa B/genética , Fosforilación/genética , Proteómica , Receptores de Antígenos de Linfocitos B/biosíntesis , Transducción de Señal/genética , Ubiquitina-Proteína Ligasas/biosíntesis , Ubiquitinación/genética
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