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1.
Am J Hum Genet ; 108(7): 1301-1317, 2021 07 01.
Artículo en Inglés | MEDLINE | ID: mdl-34038740

RESUMEN

Human C2orf69 is an evolutionarily conserved gene whose function is unknown. Here, we report eight unrelated families from which 20 children presented with a fatal syndrome consisting of severe autoinflammation and progredient leukoencephalopathy with recurrent seizures; 12 of these subjects, whose DNA was available, segregated homozygous loss-of-function C2orf69 variants. C2ORF69 bears homology to esterase enzymes, and orthologs can be found in most eukaryotic genomes, including that of unicellular phytoplankton. We found that endogenous C2ORF69 (1) is loosely bound to mitochondria, (2) affects mitochondrial membrane potential and oxidative respiration in cultured neurons, and (3) controls the levels of the glycogen branching enzyme 1 (GBE1) consistent with a glycogen-storage-associated mitochondriopathy. We show that CRISPR-Cas9-mediated inactivation of zebrafish C2orf69 results in lethality by 8 months of age due to spontaneous epileptic seizures, which is preceded by persistent brain inflammation. Collectively, our results delineate an autoinflammatory Mendelian disorder of C2orf69 deficiency that disrupts the development/homeostasis of the immune and central nervous systems.


Asunto(s)
Encefalitis/genética , Enfermedades Mitocondriales/genética , Animales , Evolución Biológica , Sistemas CRISPR-Cas , Línea Celular , Encefalitis/mortalidad , Femenino , Genes Recesivos , Glucógeno/metabolismo , Humanos , Inflamación/genética , Masculino , Proteínas de la Membrana/genética , Enfermedades Mitocondriales/mortalidad , Linaje , Convulsiones/genética , Convulsiones/mortalidad , Pez Cebra/genética
3.
Nat Genet ; 54(8): 1214-1226, 2022 08.
Artículo en Inglés | MEDLINE | ID: mdl-35864190

RESUMEN

Cirrhosis is usually a late-onset and life-threatening disease characterized by fibrotic scarring and inflammation that disrupts liver architecture and function. While it is typically the result of alcoholism or hepatitis viral infection in adults, its etiology in infants is much less understood. In this study, we report 14 children from ten unrelated families presenting with a syndromic form of pediatric liver cirrhosis. By genome/exome sequencing, we found recessive variants in FOCAD segregating with the disease. Zebrafish lacking focad phenocopied the human disease, revealing a signature of altered messenger RNA (mRNA) degradation processes in the liver. Using patient's primary cells and CRISPR-Cas9-mediated inactivation in human hepatic cell lines, we found that FOCAD deficiency compromises the SKI mRNA surveillance pathway by reducing the levels of the RNA helicase SKIC2 and its cofactor SKIC3. FOCAD knockout hepatocytes exhibited lowered albumin expression and signs of persistent injury accompanied by CCL2 overproduction. Our results reveal the importance of FOCAD in maintaining liver homeostasis and disclose a possible therapeutic intervention point via inhibition of the CCL2/CCR2 signaling axis.


Asunto(s)
Cirrosis Hepática , Proteínas Supresoras de Tumor , Adulto , Animales , Niño , Hepatocitos/metabolismo , Humanos , Hígado/metabolismo , Cirrosis Hepática/genética , Cirrosis Hepática/metabolismo , ARN Mensajero/genética , ARN Mensajero/metabolismo , Síndrome , Proteínas Supresoras de Tumor/genética , Pez Cebra/genética
4.
Stem Cell Reports ; 16(9): 2289-2304, 2021 09 14.
Artículo en Inglés | MEDLINE | ID: mdl-34450036

RESUMEN

Heterozygous mutations in HNF1B in humans result in a multisystem disorder, including pancreatic hypoplasia and diabetes mellitus. Here we used a well-controlled human induced pluripotent stem cell pancreatic differentiation model to elucidate the molecular mechanisms underlying HNF1B-associated diabetes. Our results show that lack of HNF1B blocks specification of pancreatic fate from the foregut progenitor (FP) stage, but HNF1B haploinsufficiency allows differentiation of multipotent pancreatic progenitor cells (MPCs) and insulin-secreting ß-like cells. We show that HNF1B haploinsufficiency impairs cell proliferation in FPs and MPCs. This could be attributed to impaired induction of key pancreatic developmental genes, including SOX11, ROBO2, and additional TEAD1 target genes whose function is associated with MPC self-renewal. In this work we uncover an exhaustive list of potential HNF1B gene targets during human pancreas organogenesis whose downregulation might underlie HNF1B-associated diabetes onset in humans, thus providing an important resource to understand the pathogenesis of this disease.


Asunto(s)
Diferenciación Celular/genética , Factor Nuclear 1-beta del Hepatocito/genética , Células Madre Pluripotentes Inducidas/citología , Células Madre Pluripotentes Inducidas/metabolismo , Modelos Biológicos , Organogénesis/genética , Páncreas/embriología , Páncreas/metabolismo , Biomarcadores , Sistemas CRISPR-Cas , Linaje de la Célula/genética , Diabetes Mellitus/etiología , Susceptibilidad a Enfermedades , Técnica del Anticuerpo Fluorescente , Edición Génica , Perfilación de la Expresión Génica , Regulación del Desarrollo de la Expresión Génica , Haploinsuficiencia , Factor Nuclear 1-beta del Hepatocito/metabolismo , Humanos , Inmunofenotipificación , Células Secretoras de Insulina/metabolismo , Transducción de Señal
5.
Stem Cell Reports ; 12(1): 57-70, 2019 01 08.
Artículo en Inglés | MEDLINE | ID: mdl-30629940

RESUMEN

Heterozygous de novo mutations in GATA6 are the most frequent cause of pancreatic agenesis in humans. In mice, however, a similar phenotype requires the biallelic loss of Gata6 and its paralog Gata4. To elaborate the human-specific requirements for GATA6, we chose to model GATA6 loss in vitro by combining both gene-edited and patient-derived pluripotent stem cells (hPSCs) and directed differentiation toward ß-like cells. We find that GATA6 heterozygous hPSCs show a modest reduction in definitive endoderm (DE) formation, while GATA6-null hPSCs fail to enter the DE lineage. Consistent with these results, genome-wide studies show that GATA6 binds and cooperates with EOMES/SMAD2/3 to regulate the expression of cardinal endoderm genes. The early deficit in DE is accompanied by a significant reduction in PDX1+ pancreatic progenitors and C-PEPTIDE+ ß-like cells. Taken together, our data position GATA6 as a gatekeeper to early human, but not murine, pancreatic ontogeny.


Asunto(s)
Diferenciación Celular , Endodermo/metabolismo , Factor de Transcripción GATA6/genética , Redes Reguladoras de Genes , Células Secretoras de Insulina/metabolismo , Páncreas/anomalías , Enfermedades Pancreáticas/congénito , Células Madre Pluripotentes/metabolismo , Linaje de la Célula , Células Cultivadas , Endodermo/citología , Factor de Transcripción GATA6/metabolismo , Proteínas de Homeodominio/genética , Proteínas de Homeodominio/metabolismo , Humanos , Células Secretoras de Insulina/citología , Páncreas/metabolismo , Enfermedades Pancreáticas/genética , Enfermedades Pancreáticas/metabolismo , Células Madre Pluripotentes/citología , Unión Proteica , Proteína Smad2/genética , Proteína Smad2/metabolismo , Proteína smad3/genética , Proteína smad3/metabolismo , Proteínas de Dominio T Box/genética , Proteínas de Dominio T Box/metabolismo , Transactivadores/genética , Transactivadores/metabolismo
6.
J Mol Signal ; 9: 6, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-24976858

RESUMEN

BACKGROUND: Recent studies on the involvement of the G12 family of heterotrimeric G proteins (Gα12 and Gα13, the products of the GNA12 and GNA13 genes, respectively) in oncogenic pathways have uncovered a link between G12 signaling and cancer progression. However, despite a well characterized role of Rho GTPases, the potential role of secreted factors in the capacity of G12 signaling to promote invasion of cancer cells is just beginning to be addressed. METHODS: MDA-MB-231 and MCF10A breast cancer cell lines were employed as a model system to explore the involvement of secreted factors in G12-stimulated cell invasion. Factors secreted by cells expressing dominant-active Gα12 were identified by protein array, and their involvement in breast cancer cell invasion was assessed through both RNAi-mediated knockdown and antibody neutralization approaches. Bioinformatics analysis of the promoter elements of the identified factors suggested NF-κB elements played a role in their enhanced expression, which was tested by chromatin immunoprecipitation. RESULTS: We found that signaling through the Gα12 in MDA-MB-231 and MCF10A breast cancer cell lines enhances expression of interleukins (IL)-6 and -8, and matrix metalloproteinase (MMP)-2, and that these secreted factors play a role in G12-stimulated cell invasion. Furthermore, the enhanced expression of these secreted factors was found to be facilitated by the activation of their corresponding promoters, where NF-κB seems to be one of the major regulators. Inhibition of IL-6 and IL-8, or MMP-2 activity significantly decreased Gα12-mediated cell invasion. CONCLUSIONS: These studies confirm and extend findings that secreted factors contribute to the oncogenic potential of G12 signaling, and suggest potential therapeutic targets to control this process.

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