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1.
FASEB Bioadv ; 4(1): 76-89, 2022 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-35024574

RESUMEN

Tumor innervation has recently been documented and characterized in various settings and tumor types. However, the role that nerves innervating tumors play in the pathogenesis of cancer has not been clarified. In this study, we searched for neural signaling from bulk RNA sequencing from The Cancer Genome Atlas (TCGA) dataset and looked for patterns of interactions between different cell types within the tumor environment. Using a presynapse signature (PSS) as a probe, we showed that multiple stromal cell types crosstalk and/or contribute to neural signals. Based on the correlation and linear regression, we hypothesized that neural signals contribute to an immune-suppressive tumor microenvironment (TME). To test this hypothesis, we performed in vitro dorsal root ganglion (DRG)/macrophage coculture experiments. Compared to the M2 macrophage monoculture, the DRG/M2 macrophage coculture prevented anti-inflammatory M2 to pro-inflammatory M1 polarization by LPS stimulation. Finally, a survey of different TCGA tumor types indicated that higher RNA neural signature is predictive of poor patient outcomes in multiple tumor types.

2.
Cancer Res ; 75(22): 4937-48, 2015 Nov 15.
Artículo en Inglés | MEDLINE | ID: mdl-26490646

RESUMEN

Patients with lung tumors harboring activating mutations in the EGF receptor (EGFR) show good initial treatment responses to the EGFR tyrosine kinase inhibitors (TKI) erlotinib or gefitinib. However, acquired resistance invariably develops. Applying a focused shRNA screening approach to identify genes whose knockdown can prevent and/or overcome acquired resistance to erlotinib in several EGFR-mutant non-small cell lung cancer (NSCLC) cell lines, we identified casein kinase 1 α (CSNK1A1, CK1α). We found that CK1α suppression inhibits the NF-κB prosurvival signaling pathway. Furthermore, downregulation of NF-κB signaling by approaches independent of CK1α knockdown can also attenuate acquired erlotinib resistance, supporting a role for activated NF-κB signaling in conferring acquired drug resistance. Importantly, CK1α suppression prevented erlotinib resistance in an HCC827 xenograft model in vivo. Our findings suggest that patients with EGFR-mutant NSCLC might benefit from a combination of EGFR TKIs and CK1α inhibition to prevent acquired drug resistance and to prolong disease-free survival.


Asunto(s)
Carcinoma de Pulmón de Células no Pequeñas/genética , Quinasa de la Caseína I/antagonistas & inhibidores , Resistencia a Antineoplásicos/genética , Neoplasias Pulmonares/genética , Animales , Antineoplásicos/farmacología , Carcinoma de Pulmón de Células no Pequeñas/enzimología , Línea Celular Tumoral , Clorhidrato de Erlotinib/farmacología , Femenino , Técnicas de Silenciamiento del Gen , Genes erbB-1/genética , Humanos , Immunoblotting , Neoplasias Pulmonares/enzimología , Ratones , Ratones Desnudos , Análisis de Secuencia por Matrices de Oligonucleótidos , ARN Interferente Pequeño , Reacción en Cadena en Tiempo Real de la Polimerasa , Ensayos Antitumor por Modelo de Xenoinjerto
3.
Nature ; 482(7383): 53-8, 2012 Jan 18.
Artículo en Inglés | MEDLINE | ID: mdl-22258507

RESUMEN

The involvement of whole-chromosome aneuploidy in tumorigenesis is the subject of debate, in large part because of the lack of insight into underlying mechanisms. Here we identify a mechanism by which errors in mitotic chromosome segregation generate DNA breaks via the formation of structures called micronuclei. Whole-chromosome-containing micronuclei form when mitotic errors produce lagging chromosomes. We tracked the fate of newly generated micronuclei and found that they undergo defective and asynchronous DNA replication, resulting in DNA damage and often extensive fragmentation of the chromosome in the micronucleus. Micronuclei can persist in cells over several generations but the chromosome in the micronucleus can also be distributed to daughter nuclei. Thus, chromosome segregation errors potentially lead to mutations and chromosome rearrangements that can integrate into the genome. Pulverization of chromosomes in micronuclei may also be one explanation for 'chromothripsis' in cancer and developmental disorders, where isolated chromosomes or chromosome arms undergo massive local DNA breakage and rearrangement.


Asunto(s)
Aneuploidia , Rotura Cromosómica , Micronúcleos con Defecto Cromosómico , Mitosis , Línea Celular Tumoral , Transformación Celular Neoplásica/genética , Transformación Celular Neoplásica/patología , Segregación Cromosómica , Ensayo Cometa , Fragmentación del ADN , Replicación del ADN , Humanos , Mitosis/genética , Neoplasias/etiología , Neoplasias/genética , Neoplasias/patología
4.
Nat Struct Mol Biol ; 17(2): 251-7, 2010 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-20118936

RESUMEN

Positioned nucleosomes limit the access of proteins to DNA and implement regulatory features encoded in eukaryotic genomes. Here we have generated the first genome-wide nucleosome positioning map for Schizosaccharomyces pombe and annotated transcription start and termination sites genome wide. Using this resource, we found surprising differences from the previously published nucleosome organization of the distantly related yeast Saccharomyces cerevisiae. DNA sequence guides nucleosome positioning differently: for example, poly(dA-dT) elements are not enriched in S. pombe nucleosome-depleted regions. Regular nucleosomal arrays emanate more asymmetrically-mainly codirectionally with transcription-from promoter nucleosome-depleted regions, but promoters harboring the histone variant H2A.Z also show regular arrays upstream of these regions. Regular nucleosome phasing in S. pombe has a very short repeat length of 154 base pairs and requires a remodeler, Mit1, that is conserved in humans but is not found in S. cerevisiae. Nucleosome positioning mechanisms are evidently not universal but evolutionarily plastic.


Asunto(s)
ADN de Hongos/metabolismo , ADN de Hongos/ultraestructura , Genoma Fúngico , Nucleosomas/metabolismo , Nucleosomas/ultraestructura , Schizosaccharomyces/genética , Schizosaccharomyces/ultraestructura , Cromosomas Fúngicos/metabolismo , Cromosomas Fúngicos/ultraestructura , Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/ultraestructura , Sitio de Iniciación de la Transcripción
5.
Methods ; 48(3): 218-25, 2009 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-19233281

RESUMEN

The majority of nuclear eukaryotic DNA is packaged into nucleosome cores where DNA is wrapped tightly around histone protein octamers. Such histone bound nucleosomal DNA is less accessible than the short linker DNA between nucleosome cores or the DNA in extended nucleosome free regions. Therefore, the positions of nucleosomes relative to a DNA sequence feature, like a transactivator binding site, a transcriptional start site or an origin of replication, can have profound effects on nuclear processes like transcription, replication, recombination and repair. Now that many DNA related processes are studied in a genome-wide manner, it is increasingly important to map the basic organization of their chromosomal DNA substrate, i.e., the positions of nucleosomes, on a genome-wide scale as well. To this end, the protection of nucleosomal DNA from digestion with micrococcal nuclease (MNase) is used as an assay for the presence of a nucleosome. The MNase protected DNA fragments, so called mononucleosomal DNA, can be mapped genome-wide by hybridization to microarrays. This method has been established for Saccharomyces cerevisiae, and we present here the adaptation of the method for Schizosaccharomyces pombe. As an independent method to validate genome-wide data for individual loci, we also include a protocol for the determination of locus specific nucleosome positioning by indirect end labeling.


Asunto(s)
Genoma Fúngico , Nucleosomas/metabolismo , Schizosaccharomyces/genética , Ensamble y Desensamble de Cromatina , ADN de Hongos/genética , ADN de Hongos/aislamiento & purificación , Regulación Fúngica de la Expresión Génica , Nucleasa Microcócica/metabolismo , Sitio de Iniciación de la Transcripción
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