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1.
Cell ; 152(4): 703-13, 2013 Feb 14.
Artículo en Inglés | MEDLINE | ID: mdl-23415221

RESUMEN

Although several hundred regions of the human genome harbor signals of positive natural selection, few of the relevant adaptive traits and variants have been elucidated. Using full-genome sequence variation from the 1000 Genomes (1000G) Project and the composite of multiple signals (CMS) test, we investigated 412 candidate signals and leveraged functional annotation, protein structure modeling, epigenetics, and association studies to identify and extensively annotate candidate causal variants. The resulting catalog provides a tractable list for experimental follow-up; it includes 35 high-scoring nonsynonymous variants, 59 variants associated with expression levels of a nearby coding gene or lincRNA, and numerous variants associated with susceptibility to infectious disease and other phenotypes. We experimentally characterized one candidate nonsynonymous variant in Toll-like receptor 5 (TLR5) and show that it leads to altered NF-κB signaling in response to bacterial flagellin. PAPERFLICK:


Asunto(s)
Técnicas Genéticas , Genoma Humano , Estudio de Asociación del Genoma Completo , Mutación , Animales , Bacterias/metabolismo , Flagelina/metabolismo , Proyecto Mapa de Haplotipos , Humanos , FN-kappa B/metabolismo , Sitios de Carácter Cuantitativo , Elementos Reguladores de la Transcripción , Transducción de Señal , Receptor Toll-Like 5/genética , Receptor Toll-Like 5/metabolismo
2.
Cell ; 145(4): 555-70, 2011 May 13.
Artículo en Inglés | MEDLINE | ID: mdl-21529909

RESUMEN

Constitutive heterochromatin is traditionally viewed as the static form of heterochromatin that silences pericentromeric and telomeric repeats in a cell cycle- and differentiation-independent manner. Here, we show that, in the mouse olfactory epithelium, olfactory receptor (OR) genes are marked in a highly dynamic fashion with the molecular hallmarks of constitutive heterochromatin, H3K9me3 and H4K20me3. The cell type and developmentally dependent deposition of these marks along the OR clusters are, most likely, reversed during the process of OR choice to allow for monogenic and monoallelic OR expression. In contrast to the current view of OR choice, our data suggest that OR silencing takes place before OR expression, indicating that it is not the product of an OR-elicited feedback signal. Our findings suggest that chromatin-mediated silencing lays a molecular foundation upon which singular and stochastic selection for gene expression can be applied.


Asunto(s)
Ensamble y Desensamble de Cromatina , Silenciador del Gen , Mucosa Olfatoria/metabolismo , Receptores Odorantes/genética , Animales , Inmunoprecipitación de Cromatina , Expresión Génica , Heterocromatina , Código de Histonas , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Análisis de Secuencia por Matrices de Oligonucleótidos
3.
N Engl J Med ; 384(3): 252-260, 2021 01 21.
Artículo en Inglés | MEDLINE | ID: mdl-33283989

RESUMEN

Transfusion-dependent ß-thalassemia (TDT) and sickle cell disease (SCD) are severe monogenic diseases with severe and potentially life-threatening manifestations. BCL11A is a transcription factor that represses γ-globin expression and fetal hemoglobin in erythroid cells. We performed electroporation of CD34+ hematopoietic stem and progenitor cells obtained from healthy donors, with CRISPR-Cas9 targeting the BCL11A erythroid-specific enhancer. Approximately 80% of the alleles at this locus were modified, with no evidence of off-target editing. After undergoing myeloablation, two patients - one with TDT and the other with SCD - received autologous CD34+ cells edited with CRISPR-Cas9 targeting the same BCL11A enhancer. More than a year later, both patients had high levels of allelic editing in bone marrow and blood, increases in fetal hemoglobin that were distributed pancellularly, transfusion independence, and (in the patient with SCD) elimination of vaso-occlusive episodes. (Funded by CRISPR Therapeutics and Vertex Pharmaceuticals; ClinicalTrials.gov numbers, NCT03655678 for CLIMB THAL-111 and NCT03745287 for CLIMB SCD-121.).


Asunto(s)
Anemia de Células Falciformes/terapia , Sistemas CRISPR-Cas , Hemoglobina Fetal/biosíntesis , Edición Génica/métodos , Terapia Genética , Proteínas Represoras/genética , Talasemia beta/terapia , Adulto , Anemia de Células Falciformes/genética , Femenino , Hemoglobina Fetal/genética , Humanos , Proteínas Represoras/metabolismo , Adulto Joven , Talasemia beta/genética
5.
Nature ; 550(7675): 244-248, 2017 10 11.
Artículo en Inglés | MEDLINE | ID: mdl-29022598

RESUMEN

X chromosome inactivation (XCI) silences transcription from one of the two X chromosomes in female mammalian cells to balance expression dosage between XX females and XY males. XCI is, however, incomplete in humans: up to one-third of X-chromosomal genes are expressed from both the active and inactive X chromosomes (Xa and Xi, respectively) in female cells, with the degree of 'escape' from inactivation varying between genes and individuals. The extent to which XCI is shared between cells and tissues remains poorly characterized, as does the degree to which incomplete XCI manifests as detectable sex differences in gene expression and phenotypic traits. Here we describe a systematic survey of XCI, integrating over 5,500 transcriptomes from 449 individuals spanning 29 tissues from GTEx (v6p release) and 940 single-cell transcriptomes, combined with genomic sequence data. We show that XCI at 683 X-chromosomal genes is generally uniform across human tissues, but identify examples of heterogeneity between tissues, individuals and cells. We show that incomplete XCI affects at least 23% of X-chromosomal genes, identify seven genes that escape XCI with support from multiple lines of evidence and demonstrate that escape from XCI results in sex biases in gene expression, establishing incomplete XCI as a mechanism that is likely to introduce phenotypic diversity. Overall, this updated catalogue of XCI across human tissues helps to increase our understanding of the extent and impact of the incompleteness in the maintenance of XCI.


Asunto(s)
Especificidad de Órganos/genética , Análisis de la Célula Individual , Inactivación del Cromosoma X/genética , Cromosomas Humanos X/genética , Femenino , Genes Ligados a X/genética , Genoma Humano/genética , Genómica , Humanos , Masculino , Fenotipo , Análisis de Secuencia de ARN , Transcriptoma/genética
6.
Mol Cell ; 57(4): 636-647, 2015 Feb 19.
Artículo en Inglés | MEDLINE | ID: mdl-25699710

RESUMEN

The mechanisms contributing to transcription-associated genomic instability are both complex and incompletely understood. Although R-loops are normal transcriptional intermediates, they are also associated with genomic instability. Here, we show that BRCA1 is recruited to R-loops that form normally over a subset of transcription termination regions. There it mediates the recruitment of a specific, physiological binding partner, senataxin (SETX). Disruption of this complex led to R-loop-driven DNA damage at those loci as reflected by adjacent γ-H2AX accumulation and ssDNA breaks within the untranscribed strand of relevant R-loop structures. Genome-wide analysis revealed widespread BRCA1 binding enrichment at R-loop-rich termination regions (TRs) of actively transcribed genes. Strikingly, within some of these genes in BRCA1 null breast tumors, there are specific insertion/deletion mutations located close to R-loop-mediated BRCA1 binding sites within TRs. Thus, BRCA1/SETX complexes support a DNA repair mechanism that addresses R-loop-based DNA damage at transcriptional pause sites.


Asunto(s)
Proteína BRCA1/fisiología , Reparación del ADN , Modelos Genéticos , ARN Helicasas/fisiología , Proteína BRCA1/genética , Proteína BRCA1/metabolismo , Daño del ADN , ADN Helicasas , Células HeLa , Humanos , Enzimas Multifuncionales , ARN Helicasas/genética , ARN Helicasas/metabolismo , Terminación de la Transcripción Genética , Transcripción Genética
8.
Nature ; 518(7539): 317-30, 2015 Feb 19.
Artículo en Inglés | MEDLINE | ID: mdl-25693563

RESUMEN

The reference human genome sequence set the stage for studies of genetic variation and its association with human disease, but epigenomic studies lack a similar reference. To address this need, the NIH Roadmap Epigenomics Consortium generated the largest collection so far of human epigenomes for primary cells and tissues. Here we describe the integrative analysis of 111 reference human epigenomes generated as part of the programme, profiled for histone modification patterns, DNA accessibility, DNA methylation and RNA expression. We establish global maps of regulatory elements, define regulatory modules of coordinated activity, and their likely activators and repressors. We show that disease- and trait-associated genetic variants are enriched in tissue-specific epigenomic marks, revealing biologically relevant cell types for diverse human traits, and providing a resource for interpreting the molecular basis of human disease. Our results demonstrate the central role of epigenomic information for understanding gene regulation, cellular differentiation and human disease.


Asunto(s)
Epigénesis Genética/genética , Epigenómica , Genoma Humano/genética , Secuencia de Bases , Linaje de la Célula/genética , Células Cultivadas , Cromatina/química , Cromatina/genética , Cromatina/metabolismo , Cromosomas Humanos/química , Cromosomas Humanos/genética , Cromosomas Humanos/metabolismo , ADN/química , ADN/genética , ADN/metabolismo , Metilación de ADN , Conjuntos de Datos como Asunto , Elementos de Facilitación Genéticos/genética , Variación Genética/genética , Estudio de Asociación del Genoma Completo , Histonas/metabolismo , Humanos , Especificidad de Órganos/genética , ARN/genética , Valores de Referencia
9.
Cell Rep ; 17(8): 2125-2136, 2016 11 15.
Artículo en Inglés | MEDLINE | ID: mdl-27851973

RESUMEN

The realization that nuclear distribution of DNA, RNA, and proteins differs between cell types and developmental stages suggests that nuclear organization serves regulatory functions. Understanding the logic of nuclear architecture and how it contributes to differentiation and cell fate commitment remains challenging. Here, we use soft X-ray tomography (SXT) to image chromatin organization, distribution, and biophysical properties during neurogenesis in vivo. Our analyses reveal that chromatin with similar biophysical properties forms an elaborate connected network throughout the entire nucleus. Although this interconnectivity is present in every developmental stage, differentiation proceeds with concomitant increase in chromatin compaction and re-distribution of condensed chromatin toward the nuclear core. HP1ß, but not nucleosome spacing or phasing, regulates chromatin rearrangements because it governs both the compaction of chromatin and its interactions with the nuclear envelope. Our experiments introduce SXT as a powerful imaging technology for nuclear architecture.


Asunto(s)
Cromatina/metabolismo , Neurogénesis , Tomografía por Rayos X , Animales , Diferenciación Celular , Nucléolo Celular/metabolismo , Homólogo de la Proteína Chromobox 5 , Proteínas Cromosómicas no Histona/metabolismo , Células Epiteliales/metabolismo , Heterocromatina/metabolismo , Imagenología Tridimensional , Ratones Noqueados , Neuronas/citología , Neuronas/metabolismo , Bulbo Olfatorio/citología
10.
Nat Commun ; 6: 7973, 2015 Aug 18.
Artículo en Inglés | MEDLINE | ID: mdl-26282110

RESUMEN

Epigenomic data sets provide critical information about the dynamic role of chromatin states in gene regulation, but a key question of how chromatin state segmentations vary under different conditions across the genome has remained unaddressed. Here we present ChromDiff, a group-wise chromatin state comparison method that generates an information-theoretic representation of epigenomes and corrects for external covariate factors to better isolate relevant chromatin state changes. By applying ChromDiff to the 127 epigenomes from the Roadmap Epigenomics and ENCODE projects, we provide novel group-wise comparative analyses across sex, tissue type, state and developmental age. Remarkably, we find that distinct sets of epigenomic features are maximally discriminative for different group-wise comparisons, in each case revealing distinct enriched pathways, many of which do not show gene expression differences. Our methodology should be broadly applicable for epigenomic comparisons and provides a powerful new tool for studying chromatin state differences at the genome scale.


Asunto(s)
Cromatina/fisiología , Biología Computacional/métodos , Epigenómica , Envejecimiento , Diferenciación Celular , Femenino , Regulación de la Expresión Génica , Predisposición Genética a la Enfermedad , Humanos , Masculino , Factores Sexuales
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