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1.
J Exp Med ; 217(11)2020 11 02.
Artículo en Inglés | MEDLINE | ID: mdl-32865561

RESUMEN

The autosomal recessive immunodeficiency, centromeric instability, and facial anomalies (ICF) syndrome is a genetically heterogeneous disorder. Despite the identification of the underlying gene defects, it is unclear how mutations in any of the four known ICF genes cause a primary immunodeficiency. Here we demonstrate that loss of ZBTB24 in B cells from mice and ICF2 patients affects nonhomologous end-joining (NHEJ) during immunoglobulin class-switch recombination and consequently impairs immunoglobulin production and isotype balance. Mechanistically, we found that ZBTB24 associates with poly(ADP-ribose) polymerase 1 (PARP1) and stimulates its auto-poly(ADP-ribosyl)ation. The zinc-finger in ZBTB24 binds PARP1-associated poly(ADP-ribose) chains and mediates the PARP1-dependent recruitment of ZBTB24 to DNA breaks. Moreover, through its association with poly(ADP-ribose) chains, ZBTB24 protects them from degradation by poly(ADP-ribose) glycohydrolase (PARG). This facilitates the poly(ADP-ribose)-dependent assembly of the LIG4/XRCC4 complex at DNA breaks, thereby promoting error-free NHEJ. Thus, we uncover ZBTB24 as a regulator of PARP1-dependent NHEJ and class-switch recombination, providing a molecular basis for the immunodeficiency in ICF2 syndrome.


Asunto(s)
Reparación del ADN por Unión de Extremidades/genética , Cara/anomalías , Cambio de Clase de Inmunoglobulina/genética , Mutación , Enfermedades de Inmunodeficiencia Primaria/genética , Proteínas Represoras/genética , Factores de Transcripción/genética , Animales , Linfocitos B/inmunología , Roturas del ADN , Cara/patología , Células HEK293 , Humanos , Región de Cambio de la Inmunoglobulina , Ratones , Poli(ADP-Ribosa) Polimerasa-1/metabolismo , Enfermedades de Inmunodeficiencia Primaria/sangre , Enfermedades de Inmunodeficiencia Primaria/patología , Proteínas Represoras/metabolismo , Factores de Transcripción/metabolismo , Transfección
2.
Toxicol In Vitro ; 47: 137-146, 2018 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-29155131

RESUMEN

The epithelium that covers the conducting airways and alveoli is a primary target for inhaled toxic substances, and therefore a focus in inhalation toxicology. The increasing concern about the use of animal models has stimulated the development of in vitro cell culture models for analysis of the biological effects of inhaled toxicants. However, the validity of the current in vitro models and their acceptance by regulatory authorities as an alternative to animal models is a reason for concern, and requires a critical review. In this review, focused on human lung epithelial cell cultures as a model for inhalation toxicology, we discuss the choice of cells for these models, the cell culture system used, the method of exposure as well as the various read-outs to assess the cellular response. We argue that rapid developments in the 3D culture of primary epithelial cells, the use of induced pluripotent stem cells for generation of lung epithelial cells and the development of organ-on-a-chip technology are among the important developments that will allow significant advances in this field. Furthermore, we discuss the various routes of application of inhaled toxicants by air-liquid interface models as well as the vast array of read-outs that may provide essential information. We conclude that close collaboration between researchers from various disciplines is essential for development of valid methods that are suitable for replacement of animal studies for inhalation toxicology.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Drogas en Investigación/efectos adversos , Dispositivos Laboratorio en un Chip , Pulmón/efectos de los fármacos , Mucosa Respiratoria/efectos de los fármacos , Pruebas de Toxicidad/métodos , Administración por Inhalación , Aerosoles , Alternativas al Uso de Animales/tendencias , Cámaras de Exposición Atmosférica/tendencias , Línea Celular , Células Cultivadas , Drogas en Investigación/administración & dosificación , Guías como Asunto , Humanos , Células Madre Pluripotentes Inducidas/citología , Células Madre Pluripotentes Inducidas/efectos de los fármacos , Dispositivos Laboratorio en un Chip/tendencias , Pulmón/citología , Pulmón/fisiología , Microfluídica/tendencias , Reproducibilidad de los Resultados , Mucosa Respiratoria/citología , Mucosa Respiratoria/fisiología , Ingeniería de Tejidos/tendencias , Pruebas de Toxicidad/instrumentación , Pruebas de Toxicidad/normas , Pruebas de Toxicidad/tendencias
3.
BMC Neurosci ; 14: 5, 2013 Jan 07.
Artículo en Inglés | MEDLINE | ID: mdl-23294837

RESUMEN

BACKGROUND: Antisense oligonucleotide (AON)-mediated exon skipping is a powerful tool to manipulate gene expression. In the present study we investigated the potential of exon skipping by local injection in the central nucleus of the amygdala (CeA) of the mouse brain. As proof of principle we targeted the splicing of steroid receptor coactivator-1 (SRC-1), a protein involved in nuclear receptor function. This nuclear receptor coregulator exists in two splice variants (SRC-1a and SRC-1e) which display differential distribution and opposing activities in the brain, and whose mRNAs differ in a single SRC-1e specific exon. METHODS: For proof of principle of feasibility, we used immunofluorescent stainings to study uptake by different cell types, translocation to the nucleus and potential immunostimulatory effects at different time points after a local injection in the CeA of the mouse brain of a control AON targeting human dystrophin with no targets in the murine brain. To evaluate efficacy we designed an AON targeting the SRC-1e-specific exon and with qPCR analysis we measured the expression ratio of the two splice variants. RESULTS: We found that AONs were taken up by corticotropin releasing hormone expressing neurons and other cells in the CeA, and translocated into the cell nucleus. Immune responses after AON injection were comparable to those after sterile saline injection. A successful shift of the naturally occurring SRC-1a:SRC-1e expression ratio in favor of SRC-1a was observed, without changes in total SRC-1 expression. CONCLUSIONS: We provide a proof of concept for local neuropharmacological use of exon skipping by manipulating the expression ratio of the two splice variants of SRC-1, which may be used to study nuclear receptor function in specific brain circuits. We established that exon skipping after local injection in the brain is a versatile and useful tool for the manipulation of splice variants for numerous genes that are relevant for brain function.


Asunto(s)
Amígdala del Cerebelo/efectos de los fármacos , Amígdala del Cerebelo/metabolismo , Coactivador 1 de Receptor Nuclear/metabolismo , Oligodesoxirribonucleótidos Antisentido/farmacología , Isoformas de Proteínas/metabolismo , Animales , Proteína Ácida Fibrilar de la Glía/metabolismo , Captura por Microdisección con Láser , Antígenos Comunes de Leucocito/metabolismo , Masculino , Ratones , Ratones Endogámicos C57BL , Coactivador 1 de Receptor Nuclear/genética , Fosfopiruvato Hidratasa/metabolismo , Isoformas de Proteínas/genética , Empalme del ARN/efectos de los fármacos , Factores de Tiempo
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