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1.
Nature ; 583(7817): 625-630, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32669713

RESUMEN

The recent discovery of N6-methyladenine (N6-mA) in mammalian genomes suggests that it may serve as an epigenetic regulatory mechanism1. However, the biological role of N6-mA and the molecular pathways that exert its function remain unclear. Here we show that N6-mA has a key role in changing the epigenetic landscape during cell fate transitions in early development. We found that N6-mA is upregulated during the development of mouse trophoblast stem cells, specifically at regions of stress-induced DNA double helix destabilization (SIDD)2-4. Regions of SIDD are conducive to topological stress-induced unpairing of the double helix and have critical roles in organizing large-scale chromatin structures3,5,6. We show that the presence of N6-mA reduces the in vitro interactions by more than 500-fold between SIDD and SATB1, a crucial chromatin organizer that interacts with SIDD regions. Deposition of N6-mA also antagonizes SATB1 function in vivo by preventing its binding to chromatin. Concordantly, N6-mA functions at the boundaries between euchromatin and heterochromatin to restrict the spread of euchromatin. Repression of SIDD-SATB1 interactions mediated by N6-mA is essential for gene regulation during trophoblast development in cell culture models and in vivo. Overall, our findings demonstrate an unexpected molecular mechanism for N6-mA function via SATB1, and reveal connections between DNA modification, DNA secondary structures and large chromatin domains in early embryonic development.


Asunto(s)
Adenina/análogos & derivados , ADN/química , ADN/metabolismo , Desarrollo Embrionario , Proteínas de Unión a la Región de Fijación a la Matriz/antagonistas & inhibidores , Adenina/metabolismo , Animales , Emparejamiento Base , Desarrollo Embrionario/genética , Eucromatina/genética , Eucromatina/metabolismo , Femenino , Humanos , Masculino , Proteínas de Unión a la Región de Fijación a la Matriz/genética , Proteínas de Unión a la Región de Fijación a la Matriz/metabolismo , Ratones , Células Madre/citología , Células Madre/metabolismo , Termodinámica , Trofoblastos/citología
2.
Dev Cell ; 54(6): 685-686, 2020 09 28.
Artículo en Inglés | MEDLINE | ID: mdl-32991832

RESUMEN

Long non-coding RNAs (lncRNAs) are important regulators of development. In this issue of Developmental Cell, Wilson et al. utilize pluripotent stem cell models to demonstrate that a primate lncRNA, BANCR, is primarily expressed in fetal cardiomyocytes and promotes cell migration.


Asunto(s)
Retrovirus Endógenos , ARN Largo no Codificante , Animales , Movimiento Celular , Humanos , Miocitos Cardíacos , Primates , ARN Largo no Codificante/genética
3.
Cell Rep ; 20(8): 1978-1990, 2017 Aug 22.
Artículo en Inglés | MEDLINE | ID: mdl-28834758

RESUMEN

There is growing interest in using embryonic stem cell (ESC) and induced pluripotent stem cell (iPSC) derivatives for tissue regeneration. However, an increased understanding of human immune responses to stem cell-derived allografts is necessary for maintaining long-term graft persistence. To model this alloimmunity, humanized mice engrafted with human hematopoietic and immune cells could prove to be useful. In this study, an in-depth analysis of graft-infiltrating human lymphocytes and splenocytes revealed that humanized mice incompletely model human immune responses toward allogeneic stem cells and their derivatives. Furthermore, using an "allogenized" mouse model, we show the feasibility of reconstituting immunodeficient mice with a functional mouse immune system and describe a key role of innate immune cells in the rejection of mouse stem cell allografts.


Asunto(s)
Trasplante de Células Madre Hematopoyéticas/métodos , Inmunidad Innata/inmunología , Células Madre Pluripotentes/metabolismo , Acondicionamiento Pretrasplante/métodos , Animales , Modelos Animales de Enfermedad , Rechazo de Injerto , Humanos , Ratones
4.
Curr Protoc Stem Cell Biol ; 32: 4A.8.1-4A.8.17, 2015 Feb 02.
Artículo en Inglés | MEDLINE | ID: mdl-25640819

RESUMEN

This unit describes protocols for evaluating the pluripotency of embryonic and induced pluripotent stem cells using a teratoma formation assay. Cells are prepared for injection and transplanted into immunodeficient mice at the gastrocnemius muscle, a site well suited for teratoma growth and surgical access. Teratomas that form from the cell transplants are explanted, fixed in paraformaldehyde, and embedded in paraffin. These preserved samples are sectioned, stained, and analyzed. Pluripotency of a cell line is confirmed by whether the teratoma contains tissues derived from each of the embryonic germ layers: endoderm, mesoderm, and ectoderm. Alternatively, explanted and fixed teratomas can be cryopreserved for immunohistochemistry, which allows for more detailed identification of specific tissue types present in the samples.


Asunto(s)
Células Madre Pluripotentes/citología , Investigación con Células Madre , Teratoma/patología , Animales , Criopreservación , Técnica del Anticuerpo Fluorescente , Humanos , Inyecciones , Ratones Endogámicos NOD , Ratones SCID , Adhesión en Parafina , Fijación del Tejido
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