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1.
Sci Rep ; 14(1): 17942, 2024 08 02.
Artículo en Inglés | MEDLINE | ID: mdl-39095513

RESUMEN

Glycogen storage, conversion and utilization in astrocytes play an important role in brain energy metabolism. The conversion of glycogen to lactate through glycolysis occurs through the coordinated activities of various enzymes and inhibition of this process can impair different brain processes including formation of long-lasting memories. To replenish depleted glycogen stores, astrocytes undergo glycogen synthesis, a cellular process that has been shown to require transcription and translation during specific stimulation paradigms. However, the detail nuclear signaling mechanisms and transcriptional regulation during glycogen synthesis in astrocytes remains to be explored. In this report, we study the molecular mechanisms of vasoactive intestinal peptide (VIP)-induced glycogen synthesis in astrocytes. VIP is a potent neuropeptide that triggers glycogenolysis followed by glycogen synthesis in astrocytes. We show evidence that VIP-induced glycogen synthesis requires CREB-mediated transcription that is calcium dependent and requires conventional Protein Kinase C but not Protein Kinase A. In parallel to CREB activation, we demonstrate that VIP also triggers nuclear accumulation of the CREB coactivator CRTC2 in astrocytic nuclei. Transcriptome profiles of VIP-induced astrocytes identified robust CREB transcription, including a subset of genes linked to glucose and glycogen metabolism. Finally, we demonstrate that VIP-induced glycogen synthesis shares similar as well as distinct molecular signatures with glucose-induced glycogen synthesis, including the requirement of CREB-mediated transcription. Overall, our data demonstrates the importance of CREB-mediated transcription in astrocytes during stimulus-driven glycogenesis.


Asunto(s)
Astrocitos , Proteína de Unión a Elemento de Respuesta al AMP Cíclico , Glucógeno , Péptido Intestinal Vasoactivo , Astrocitos/metabolismo , Glucógeno/metabolismo , Glucógeno/biosíntesis , Animales , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/metabolismo , Péptido Intestinal Vasoactivo/metabolismo , Transcripción Genética , Células Cultivadas , Proteína Quinasa C/metabolismo , Regulación de la Expresión Génica , Ratones , Factores de Transcripción/metabolismo , Factores de Transcripción/genética , Núcleo Celular/metabolismo
2.
J Cell Biol ; 223(11)2024 Nov 04.
Artículo en Inglés | MEDLINE | ID: mdl-39115447

RESUMEN

Nuclear migration is critical for the proper positioning of neurons in the developing brain. It is known that bidirectional microtubule motors are required for nuclear transport, yet the mechanism of the coordination of opposing motors is still under debate. Using mouse cerebellar granule cells, we demonstrate that Nesprin-2 serves as a nucleus-motor adaptor, coordinating the interplay of kinesin-1 and dynein. Nesprin-2 recruits dynein-dynactin-BicD2 independently of the nearby kinesin-binding LEWD motif. Both motor binding sites are required to rescue nuclear migration defects caused by the loss of function of Nesprin-2. In an intracellular cargo transport assay, the Nesprin-2 fragment encompassing the motor binding sites generates persistent movements toward both microtubule minus and plus ends. Nesprin-2 drives bidirectional cargo movements over a prolonged period along perinuclear microtubules, which advance during the migration of neurons. We propose that Nesprin-2 keeps the nucleus mobile by coordinating opposing motors, enabling continuous nuclear transport along advancing microtubules in migrating cells.


Asunto(s)
Núcleo Celular , Dineínas , Cinesinas , Proteínas Asociadas a Microtúbulos , Microtúbulos , Proteínas del Tejido Nervioso , Neuronas , Animales , Microtúbulos/metabolismo , Neuronas/metabolismo , Cinesinas/metabolismo , Cinesinas/genética , Proteínas del Tejido Nervioso/metabolismo , Proteínas del Tejido Nervioso/genética , Dineínas/metabolismo , Núcleo Celular/metabolismo , Ratones , Proteínas Asociadas a Microtúbulos/metabolismo , Proteínas Asociadas a Microtúbulos/genética , Transporte Activo de Núcleo Celular , Complejo Dinactina/metabolismo , Complejo Dinactina/genética , Movimiento Celular , Proteínas de Microfilamentos/metabolismo , Proteínas de Microfilamentos/genética , Proteínas Nucleares/metabolismo , Proteínas Nucleares/genética , Cerebelo/metabolismo , Cerebelo/citología , Sitios de Unión , Humanos
3.
Cells ; 13(15)2024 Jul 25.
Artículo en Inglés | MEDLINE | ID: mdl-39120286

RESUMEN

Cholesterol is required to maintain the functional integrity of cellular membrane systems and signalling pathways, but its supply must be closely and dynamically regulated because excess cholesterol is toxic. Sterol regulatory element-binding protein 2 (SREBP2) and the ER-resident protein HMG-CoA reductase (HMGCR) are key regulators of cholesterol biosynthesis. Here, we assessed the mechanistic aspects of their regulation in hepatic cells. Unexpectedly, we found that the transcriptionally active fragment of SREBP2 (N-SREBP2) was produced constitutively. Moreover, in the absence of an exogenous cholesterol supply, nuclear N-SREBP2 became resistant to proteasome-mediated degradation. This resistance was paired with increased occupancy at the HMGCR promoter and HMGCR expression. Inhibiting nuclear N-SREBP2 degradation did not increase HMGCR RNA levels; this increase required cholesterol depletion. Our findings, combined with previous physiological and biophysical investigations, suggest a new model of SREBP2-mediated regulation of cholesterol biosynthesis in the organ that handles large and rapid fluctuations in the dietary supply of this key lipid. Specifically, in the nucleus, cholesterol and the ubiquitin-proteasome system provide a short-loop system that modulates the rate of cholesterol biosynthesis via regulation of nuclear N-SREBP2 turnover and HMGCR expression. Our findings have important implications for maintaining cellular cholesterol homeostasis and lowering blood cholesterol via the SREBP2-HMGCR axis.


Asunto(s)
Colesterol , Homeostasis , Hidroximetilglutaril-CoA Reductasas , Proteína 2 de Unión a Elementos Reguladores de Esteroles , Proteína 2 de Unión a Elementos Reguladores de Esteroles/metabolismo , Colesterol/metabolismo , Humanos , Hidroximetilglutaril-CoA Reductasas/metabolismo , Complejo de la Endopetidasa Proteasomal/metabolismo , Núcleo Celular/metabolismo , Regiones Promotoras Genéticas/genética , Células Hep G2 , Animales , Proteolisis/efectos de los fármacos
4.
J Biomed Opt ; 29(Suppl 2): S22710, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-39184400

RESUMEN

Significance: Accurate cell segmentation and classification in three-dimensional (3D) images are vital for studying live cell behavior and drug responses in 3D tissue culture. Evaluating diverse cell populations in 3D cell culture over time necessitates non-toxic staining methods, as specific fluorescent tags may not be suitable, and immunofluorescence staining can be cytotoxic for prolonged live cell cultures. Aim: We aim to perform machine learning-based cell classification within a live heterogeneous cell culture population grown in a 3D tissue culture relying only on reflectance, transmittance, and nuclei counterstained images obtained by confocal microscopy. Approach: In this study, we employed a supervised convolutional neural network (CNN) to classify tumor cells and fibroblasts within 3D-grown spheroids. These cells are first segmented using the marker-controlled watershed image processing method. Training data included nuclei counterstaining, reflectance, and transmitted light images, with stained fibroblast and tumor cells as ground-truth labels. Results: Our results demonstrate the successful marker-controlled watershed segmentation of 84% of spheroid cells into single cells. We achieved a median accuracy of 67% (95% confidence interval of the median is 65-71%) in identifying cell types. We also recapitulate the original 3D images using the CNN-classified cells to visualize the original 3D-stained image's cell distribution. Conclusion: This study introduces a non-invasive toxicity-free approach to 3D cell culture evaluation, combining machine learning with confocal microscopy, opening avenues for advanced cell studies.


Asunto(s)
Núcleo Celular , Redes Neurales de la Computación , Células del Estroma , Humanos , Células del Estroma/citología , Células del Estroma/patología , Esferoides Celulares/patología , Microscopía Confocal/métodos , Técnicas de Cultivo Tridimensional de Células/métodos , Fibroblastos/citología , Procesamiento de Imagen Asistido por Computador/métodos , Imagenología Tridimensional/métodos , Línea Celular Tumoral , Neoplasias/diagnóstico por imagen , Neoplasias/patología
5.
Nat Commun ; 15(1): 6830, 2024 Aug 09.
Artículo en Inglés | MEDLINE | ID: mdl-39122729

RESUMEN

Resistance to radiotherapy is a major barrier during cancer treatment. Here using genome-scale CRISPR/Cas9 screening, we identify CD274 gene, which encodes PD-L1, to confer lung cancer cell resistance to ionizing radiation (IR). Depletion of endogenous PD-L1 delays the repair of IR-induced DNA double-strand breaks (DSBs) and PD-L1 loss downregulates non-homologous end joining (NHEJ) while overexpression of PD-L1 upregulates NHEJ. IR induces translocation of PD-L1 from the membrane into nucleus dependent on deglycosylation of PD-L1 at N219 and CMTM6 and leads to PD-L1 recruitment to DSBs foci. PD-L1 interacts with Ku in the nucleus and enhances Ku binding to DSB DNA. The interaction between the IgC domain of PD-L1 and the core domain of Ku is required for PD-L1 to accelerate NHEJ-mediated DSB repair and produce radioresistance. Thus, PD-L1, in addition to its immune inhibitory activity, acts as mechanistic driver for NHEJ-mediated DSB repair in cancer.


Asunto(s)
Antígeno B7-H1 , Núcleo Celular , Roturas del ADN de Doble Cadena , Reparación del ADN por Unión de Extremidades , Autoantígeno Ku , Humanos , Roturas del ADN de Doble Cadena/efectos de la radiación , Antígeno B7-H1/metabolismo , Antígeno B7-H1/genética , Autoantígeno Ku/metabolismo , Autoantígeno Ku/genética , Línea Celular Tumoral , Núcleo Celular/metabolismo , Animales , Neoplasias Pulmonares/genética , Neoplasias Pulmonares/metabolismo , Neoplasias Pulmonares/radioterapia , Neoplasias Pulmonares/patología , Ratones , Glicosilación , Radiación Ionizante , Sistemas CRISPR-Cas
6.
Proc Natl Acad Sci U S A ; 121(34): e2400657121, 2024 Aug 20.
Artículo en Inglés | MEDLINE | ID: mdl-39141344

RESUMEN

Microsporidia are intracellular eukaryotic pathogens that pose a substantial threat to immunocompromised hosts. The way these pathogens manipulate host cells during infection remains poorly understood. Using a proximity biotinylation strategy we established that microsporidian EnP1 is a nucleus-targeted effector that modifies the host cell environment. EnP1's translocation to the host nucleus is meditated by nuclear localization signals (NLSs). In the nucleus, EnP1 interacts with host histone H2B. This interaction disrupts H2B monoubiquitination (H2Bub), subsequently impacting p53 expression. Crucially, this inhibition of p53 weakens its control over the downstream target gene SLC7A11, enhancing the host cell's resilience against ferroptosis during microsporidian infection. This favorable condition promotes the proliferation of microsporidia within the host cell. These findings shed light on the molecular mechanisms by which microsporidia modify their host cells to facilitate their survival.


Asunto(s)
Ferroptosis , Histonas , Microsporidios , Ubiquitinación , Microsporidios/metabolismo , Microsporidios/genética , Histonas/metabolismo , Humanos , Proteínas Fúngicas/metabolismo , Proteínas Fúngicas/genética , Proteína p53 Supresora de Tumor/metabolismo , Proteína p53 Supresora de Tumor/genética , Interacciones Huésped-Patógeno , Animales , Núcleo Celular/metabolismo , Sistema de Transporte de Aminoácidos y+/metabolismo , Sistema de Transporte de Aminoácidos y+/genética , Microsporidiosis/metabolismo
7.
Sci Adv ; 10(34): eadm9195, 2024 Aug 23.
Artículo en Inglés | MEDLINE | ID: mdl-39167661

RESUMEN

Eukaryotic cells show an astounding ability to remodel their shape and cytoskeleton and to migrate through pores and constrictions smaller than their nuclear diameter. However, the relation of nuclear deformation and migration dynamics in confinement remains unclear. Here, we study the mechanics and dynamics of mesenchymal cancer cell nuclei transitioning through three-dimensional compliant hydrogel channels. We find a biphasic dependence of migration speed and transition frequency on channel width, peaking at widths comparable to the nuclear diameter. Using confocal imaging and hydrogel bead displacement, we determine nuclear deformations and corresponding forces during confined migration. The nucleus deforms reversibly with a reduction in volume during confinement. With decreasing channel width, the nuclear shape during transmigration changes biphasically, concomitant with the transitioning dynamics. Our proposed physical model explains the observed nuclear shapes and transitioning dynamics in terms of the cytoskeletal force generation adapting from purely pulling-based to a combined pulling- and pushing-based mechanism with increasing nuclear confinement.


Asunto(s)
Movimiento Celular , Núcleo Celular , Humanos , Núcleo Celular/metabolismo , Citoesqueleto/metabolismo , Hidrogeles/química , Línea Celular Tumoral , Fenómenos Biomecánicos
8.
Fungal Biol ; 128(6): 2032-2041, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39174238

RESUMEN

P. umbellatus sclerotium is a traditional Chinese medicine that is widely utilized in China, Korea, Japan, and other countries due to its diverse medicinal activities, such as diuretic, antitumor, anticancer, and immune system enhancement effects. Conidia, which are common asexual spores in various fungi, are not universally present in Polyporus species. In this study, the asexual life cycle of P. umbellatus was elucidated. Conidia, i.e. arthorconidia, were produced by both dikaryotic and monokaryotic strains. In the dikaryotic strain, binucleate, uninucleate, and nuclei-free conidia were identified with proportions of 67.9 %, 12.4 %, and 19.7 %, respectively. Conversely, the monokaryotic strain did not produce binucleate conidia. This discrepancy suggests that binucleate spores are heterokaryons, while uninucleate spores are homokaryons. Clamp connections were observed in dikaryotic hyphae, but were absent in monokaryotic hyphae. Monokaryotic strains were obtained from conidia of the dikaryotic strain. Additionally, mating types were determined through pairing tests, and successful crossbreeding occurred between monokaryotic strains derived from conidia and basidiospores from different strains. This study introduced the first crossbreeding strategy for P. umbellatus.


Asunto(s)
Polyporus , Esporas Fúngicas , Esporas Fúngicas/crecimiento & desarrollo , Polyporus/crecimiento & desarrollo , Polyporus/metabolismo , Núcleo Celular , Reproducción Asexuada , Hifa/crecimiento & desarrollo , Estadios del Ciclo de Vida , Genes del Tipo Sexual de los Hongos
9.
PLoS Biol ; 22(8): e3002723, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-39172952

RESUMEN

The transfer of mitochondrial DNA into the nuclear genomes of eukaryotes (Numts) has been linked to lifespan in nonhuman species and recently demonstrated to occur in rare instances from one human generation to the next. Here, we investigated numtogenesis dynamics in humans in 2 ways. First, we quantified Numts in 1,187 postmortem brain and blood samples from different individuals. Compared to circulating immune cells (n = 389), postmitotic brain tissue (n = 798) contained more Numts, consistent with their potential somatic accumulation. Within brain samples, we observed a 5.5-fold enrichment of somatic Numt insertions in the dorsolateral prefrontal cortex (DLPFC) compared to cerebellum samples, suggesting that brain Numts arose spontaneously during development or across the lifespan. Moreover, an increase in the number of brain Numts was linked to earlier mortality. The brains of individuals with no cognitive impairment (NCI) who died at younger ages carried approximately 2 more Numts per decade of life lost than those who lived longer. Second, we tested the dynamic transfer of Numts using a repeated-measures whole-genome sequencing design in a human fibroblast model that recapitulates several molecular hallmarks of aging. These longitudinal experiments revealed a gradual accumulation of 1 Numt every ~13 days. Numtogenesis was independent of large-scale genomic instability and unlikely driven by cell clonality. Targeted pharmacological perturbations including chronic glucocorticoid signaling or impairing mitochondrial oxidative phosphorylation (OxPhos) only modestly increased the rate of numtogenesis, whereas patient-derived SURF1-mutant cells exhibiting mtDNA instability accumulated Numts 4.7-fold faster than healthy donors. Combined, our data document spontaneous numtogenesis in human cells and demonstrate an association between brain cortical somatic Numts and human lifespan. These findings open the possibility that mito-nuclear horizontal gene transfer among human postmitotic tissues produces functionally relevant human Numts over timescales shorter than previously assumed.


Asunto(s)
Encéfalo , ADN Mitocondrial , Fibroblastos , Humanos , ADN Mitocondrial/genética , Fibroblastos/metabolismo , Encéfalo/metabolismo , Masculino , Femenino , Núcleo Celular/metabolismo , Persona de Mediana Edad , Adulto , Anciano , Longevidad/genética , Envejecimiento/fisiología , Envejecimiento/genética
10.
J Transl Med ; 22(1): 757, 2024 Aug 12.
Artículo en Inglés | MEDLINE | ID: mdl-39135106

RESUMEN

BACKGROUND: Multi-drug resistance of poly(morpho)nuclear giant cells (PGCs) determines their cytoprotective and generative potential in cancer ecosystems. However, mechanisms underlying the involvement of PGCs in glioblastoma multiforme (GBM) adaptation to chemotherapeutic regimes remain largely obscure. In particular, metabolic reprogramming of PGCs has not yet been considered in terms of GBM recovery from doxorubicin (DOX)-induced stress. METHODS: Long-term proteomic and metabolic cell profiling was applied to trace the phenotypic dynamics of GBM populations subjected to pulse DOX treatment in vitro, with a particular focus on PGC formation and its metabolic background. The links between metabolic reprogramming, drug resistance and drug retention capacity of PGCs were assessed, along with their significance for GBM recovery from DOX-induced stress. RESULTS: Pulse DOX treatment triggered the transient formation of PGCs, followed by the appearance of small expanding cell (SEC) clusters. Development of PGCs was accompanied by the mobilization of their metabolic proteome, transient induction of oxidative phosphorylation (OXPHOS), and differential intracellular accumulation of NADH, NADPH, and ATP. The metabolic background of PGC formation was confirmed by the attenuation of GBM recovery from DOX-induced stress following the chemical inhibition of GSK-3ß, OXPHOS, and the pentose phosphate pathway. Concurrently, the mobilization of reactive oxygen species (ROS) scavenging systems and fine-tuning of NADPH-dependent ROS production systems in PGCs was observed. These processes were accompanied by perinuclear mobilization of ABCB1 and ABCG2 transporters and DOX retention in the perinuclear PGC compartments. CONCLUSIONS: These data demonstrate the cooperative pattern of GBM recovery from DOX-induced stress and the crucial role of metabolic reprogramming of PGCs in this process. Metabolic reprogramming enhances the efficiency of self-defense systems and increases the DOX retention capacity of PGCs, potentially reducing DOX bioavailability in the proximity of SECs. Consequently, the modulation of PGC metabolism is highlighted as a potential target for intervention in glioblastoma treatment.


Asunto(s)
Doxorrubicina , Glioblastoma , Glioblastoma/patología , Glioblastoma/metabolismo , Humanos , Doxorrubicina/farmacología , Línea Celular Tumoral , Estrés Fisiológico/efectos de los fármacos , Reprogramación Celular/efectos de los fármacos , Núcleo Celular/metabolismo , Núcleo Celular/efectos de los fármacos , Proteómica , Resistencia a Antineoplásicos/efectos de los fármacos , Fosforilación Oxidativa/efectos de los fármacos , Reprogramación Metabólica
11.
PLoS Pathog ; 20(8): e1012409, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-39146232

RESUMEN

Flaviviridae is a family of positive-stranded RNA viruses, including human pathogens, such as Japanese encephalitis virus (JEV), dengue virus (DENV), Zika virus (ZIKV), and West Nile virus (WNV). Nuclear localization of the viral core protein is conserved among Flaviviridae, and this feature may be targeted for developing broad-ranging anti-flavivirus drugs. However, the mechanism of core protein translocation to the nucleus and the importance of nuclear translocation in the viral life cycle remain unknown. We aimed to identify the molecular mechanism underlying core protein nuclear translocation. We identified importin-7 (IPO7), an importin-ß family protein, as a nuclear carrier for Flaviviridae core proteins. Nuclear import assays revealed that core protein was transported into the nucleus via IPO7, whereas IPO7 deletion by CRISPR/Cas9 impaired their nuclear translocation. To understand the importance of core protein nuclear translocation, we evaluated the production of infectious virus or single-round-infectious-particles in wild-type or IPO7-deficient cells; both processes were significantly impaired in IPO7-deficient cells, whereas intracellular infectious virus levels were equivalent in wild-type and IPO7-deficient cells. These results suggest that IPO7-mediated nuclear translocation of core proteins is involved in the release of infectious virus particles of flaviviruses.


Asunto(s)
Transporte Activo de Núcleo Celular , Núcleo Celular , Flavivirus , Humanos , Flavivirus/metabolismo , Flavivirus/fisiología , Animales , Núcleo Celular/metabolismo , Núcleo Celular/virología , Replicación Viral/fisiología , Proteínas del Núcleo Viral/metabolismo , Proteínas del Núcleo Viral/genética , Carioferinas/metabolismo , Carioferinas/genética , Infecciones por Flavivirus/metabolismo , Infecciones por Flavivirus/virología , Chlorocebus aethiops , Células HEK293
12.
Nat Commun ; 15(1): 7365, 2024 Aug 28.
Artículo en Inglés | MEDLINE | ID: mdl-39198505

RESUMEN

Epithelial-Mesenchymal Transition (EMT) is a key process in physiological and pathological settings. EMT is often presented as a linear sequence with (i) disassembly of cell-cell junctions, (ii) loss of epithelial polarity and (iii) reorganization of the cytoskeleton leading to basal extrusion from the epithelium. Once out, cells can adopt a migratory phenotype with a front-rear polarity. While this sequence can occur, in vivo observations have challenged it. It is now accepted that multiple EMT scenarios coexist in heterogeneous cell populations. However, the relative importance of each step as well as that of variability and heterogeneity on the efficiency of cell extrusion has not been assessed. Here we used computational modelling to simulate multiple EMT-like scenarios and confronted these data to the EMT of neural crest cells. Overall, our data point to a key role of nuclear positioning and protrusive activity to generate timely basal extrusion.


Asunto(s)
Núcleo Celular , Transición Epitelial-Mesenquimal , Núcleo Celular/metabolismo , Animales , Modelos Biológicos , Simulación por Computador , Cresta Neural/citología , Movimiento Celular/fisiología , Humanos , Polaridad Celular/fisiología , Citoesqueleto/metabolismo , Células Epiteliales/metabolismo , Células Epiteliales/citología
13.
Sci Rep ; 14(1): 19998, 2024 08 28.
Artículo en Inglés | MEDLINE | ID: mdl-39198511

RESUMEN

During metastasis, cancer cells traverse the vasculature by squeezing through very small gaps in the endothelium. Thus, nuclei in metastatic cancer cells must become more malleable to move through these gaps. Our lab showed invasive breast cancer cells have 50% less emerin protein resulting in smaller, misshapen nuclei, and higher metastasis rates than non-cancerous controls. Thus, emerin deficiency was predicted to cause increased nuclear compliance, cell migration, and metastasis. We tested this hypothesis by downregulating emerin in noninvasive MCF7 cells and found emerin knockdown causes smaller, dysmorphic nuclei, resulting in increased impeded cell migration. Emerin reduction in invasive breast cancer cells showed similar results. Supporting the clinical relevance of emerin reduction in cancer progression, our analysis of 192 breast cancer patient samples showed emerin expression inversely correlates with cancer invasiveness. We conclude emerin loss is an important driver of invasive transformation and has utility as a biomarker for tumor progression.


Asunto(s)
Neoplasias de la Mama , Movimiento Celular , Proteínas de la Membrana , Invasividad Neoplásica , Proteínas Nucleares , Humanos , Neoplasias de la Mama/patología , Neoplasias de la Mama/metabolismo , Neoplasias de la Mama/genética , Células MCF-7 , Femenino , Movimiento Celular/genética , Proteínas Nucleares/metabolismo , Proteínas Nucleares/genética , Proteínas de la Membrana/metabolismo , Proteínas de la Membrana/genética , Fenotipo , Núcleo Celular/metabolismo , Regulación Neoplásica de la Expresión Génica , Técnicas de Silenciamiento del Gen
14.
Int J Mol Sci ; 25(16)2024 Aug 08.
Artículo en Inglés | MEDLINE | ID: mdl-39201340

RESUMEN

Promyelocytic leukemia (PML) nuclear bodies (PML-NBs) are core-shell-type membrane-less organelles typically found in the nucleus of mammalian somatic cells but are absent in mouse oocytes. Here, we deliberately induced the assembly of PML-NBs by injecting mRNA encoding human PML protein (hPML VI -sfGFP) into oocytes and investigated their impact on fertilization in which oocyte/embryos undergo multiple types of stresses. Following nuclear membrane breakdown, preassembled hPML VI -sfGFP mRNA-derived PML-NBs (hmdPML-NBs) persisted in the cytoplasm of oocytes, forming less-soluble debris, particularly under stress. Parthenogenetic embryos that successfully formed pronuclei were capable of removing preassembled hmdPML-NBs from the cytoplasm while forming new hmdPML-NBs in the pronucleus. These observations highlight the beneficial aspect of the PML-NB-free nucleoplasmic environment and suggest that the ability to eliminate unnecessary materials in the cytoplasm of metaphase oocytes serves as a potential indicator of the oocyte quality.


Asunto(s)
Oocitos , Proteína de la Leucemia Promielocítica , Oocitos/metabolismo , Animales , Ratones , Proteína de la Leucemia Promielocítica/metabolismo , Proteína de la Leucemia Promielocítica/genética , Femenino , Humanos , Cuerpos de Inclusión Intranucleares/metabolismo , División Celular Asimétrica , Citoplasma/metabolismo , Núcleo Celular/metabolismo , ARN Mensajero/metabolismo , ARN Mensajero/genética , Leucemia Promielocítica Aguda/metabolismo , Leucemia Promielocítica Aguda/patología , Leucemia Promielocítica Aguda/genética
15.
Cell Rep ; 43(8): 114591, 2024 Aug 27.
Artículo en Inglés | MEDLINE | ID: mdl-39116204

RESUMEN

HMGB1 (high-mobility group box-1) has been extensively studied as a damage-associated molecular pattern, with secreted cytokine function. However, its regulation on T cells, especially the function in the nucleus, has not been elucidated. Here, we use conditional knockout (HMGB1-f/f; CD2-cre) mice and find that HMGB1 potentiates the proliferation and interferon gamma (IFN-γ) expression of CD8 T cells rather than CD4 T cells. Notably, nuclear, but not secreted, HMGB1 supports the expression of IFN-γ in CD8 T cells via directly regulating the activity of Eomes, the transcription factor for IFN-γ. Functional study shows that HMGB1 promotes the anti-tumor ability of CD8 T cells in vitro and in vivo. Finally, tumor environmental interleukin-7 promotes HMGB1 and IFN-γ production via fatty acid oxidation in CD8 T cells. Overall, we identify the role of nuclear HMGB1 in CD8 T cell differentiation and demonstrate that it plays an important role in the anti-tumor programs of CD8 T cells.


Asunto(s)
Linfocitos T CD8-positivos , Proteína HMGB1 , Interferón gamma , Proteína HMGB1/metabolismo , Animales , Linfocitos T CD8-positivos/inmunología , Linfocitos T CD8-positivos/metabolismo , Interferón gamma/metabolismo , Ratones , Ratones Endogámicos C57BL , Núcleo Celular/metabolismo , Proteínas de Dominio T Box/metabolismo , Ratones Noqueados , Proliferación Celular , Diferenciación Celular , Neoplasias/inmunología , Neoplasias/metabolismo , Neoplasias/patología
16.
J Cell Biol ; 223(11)2024 Nov 04.
Artículo en Inglés | MEDLINE | ID: mdl-39150509

RESUMEN

Huntington's disease (HD) is caused by a polyglutamine expansion of the huntingtin protein, resulting in the formation of polyglutamine aggregates. The mechanisms of toxicity that result in the complex HD pathology remain only partially understood. Here, we show that nuclear polyglutamine aggregates induce nuclear envelope (NE) blebbing and ruptures that are often repaired incompletely. These ruptures coincide with disruptions of the nuclear lamina and lead to lamina scar formation. Expansion microscopy enabled resolving the ultrastructure of nuclear aggregates and revealed polyglutamine fibrils sticking into the cytosol at rupture sites, suggesting a mechanism for incomplete repair. Furthermore, we found that NE repair factors often accumulated near nuclear aggregates, consistent with stalled repair. These findings implicate nuclear polyQ aggregate-induced loss of NE integrity as a potential contributing factor to Huntington's disease and other polyglutamine diseases.


Asunto(s)
Enfermedad de Huntington , Membrana Nuclear , Péptidos , Membrana Nuclear/metabolismo , Membrana Nuclear/ultraestructura , Humanos , Péptidos/metabolismo , Péptidos/genética , Enfermedad de Huntington/metabolismo , Enfermedad de Huntington/patología , Enfermedad de Huntington/genética , Animales , Proteína Huntingtina/metabolismo , Proteína Huntingtina/genética , Agregado de Proteínas , Lámina Nuclear/metabolismo , Lámina Nuclear/ultraestructura , Núcleo Celular/metabolismo
17.
Nano Lett ; 24(34): 10605-10613, 2024 Aug 28.
Artículo en Inglés | MEDLINE | ID: mdl-39145462

RESUMEN

A metal-organic frameworks (MOFs)-in-MOF nanovehicle (160 nm), which was constructed with newly prepared ultrasmall Cu(I)Cu(II)-BTC MOFs (UCMs, 2.95 nm) loaded with doxorubicin (DOX) and a nuclear localization signal (NLS) peptide as multicores (UCMDNs) and ZIF-8 as the shell MOF, was proposed to cross layers of biological barriers with adaptive size evolution capacity for achieving efficient nucleus-targeted drug delivery. It first enhanced tumor tissue penetration through its larger nanosize effect. Then the acidic tumor environment made the ZIF-8 shell degrade, releasing small-sized UCMDNs to enter into the cell and into the nucleus under the guidance of NLS. Furthermore, due to the distinct surface structural characteristics of UCMs, UCMDNs remained stable in the cytoplasm and collapsed in the nucleus due to the DOX-DNA interaction to deliver DOX precisely. It showed superior performance in the nucleus-directed delivery of DOX (delivery efficiency up to 56.7%) and a high tumor growth inhibition rate (96.4%), offering promising prospects in tumor chemotherapy.


Asunto(s)
Núcleo Celular , Doxorrubicina , Estructuras Metalorgánicas , Doxorrubicina/química , Doxorrubicina/farmacología , Doxorrubicina/administración & dosificación , Estructuras Metalorgánicas/química , Humanos , Núcleo Celular/metabolismo , Núcleo Celular/efectos de los fármacos , Animales , Ratones , Portadores de Fármacos/química , Neoplasias/tratamiento farmacológico , Neoplasias/patología , Línea Celular Tumoral , Sistemas de Liberación de Medicamentos , Señales de Localización Nuclear/química , Antineoplásicos/química , Antineoplásicos/farmacología , Antineoplásicos/administración & dosificación , Tamaño de la Partícula , Nanopartículas/química , Cobre/química
18.
Anal Chem ; 96(33): 13438-13446, 2024 Aug 20.
Artículo en Inglés | MEDLINE | ID: mdl-39129352

RESUMEN

Pyroptosis of programmed cell death has been recognized as a more effective way to inhibit the occurrence and development of tumors than the better-studied apoptosis. However, it is still challenging to quickly and effectively trigger pyroptosis of cancer cells for high-efficacy cancer treatment. Here, we report on the first use of mild constant-potential electrostimulation (cp-ES) to quickly trigger cancer cell pyroptosis with a probability up to ∼91.4% and significantly shortened time (within 1 h), ∼3-6 times faster than typical drug stimulation to induce pyroptosis. We find that the ES-induced cancer cell pyroptosis is through the activated caspase-3 (pathway) cleavage of gasdermin E (GSDME) to form an N-terminal fragment (GSDME-N) and observe nuclear shrinkage and reduction of the number of nucleoli as well as down-/up-regulated expression of two important nucleoproteins of nucleolin and nucleophosmin (NPM1). The study enriches the basic understanding of pyroptosis and provides a new avenue for potential effective treatment of cancer.


Asunto(s)
Caspasa 3 , Nucleofosmina , Piroptosis , Humanos , Caspasa 3/metabolismo , Nucleolina , Línea Celular Tumoral , Núcleo Celular/metabolismo , Proteínas Nucleares/metabolismo , Proteínas de Unión a Fosfato/metabolismo , Proteínas de Unión al ARN/metabolismo , Gasderminas
19.
Mol Biol Rep ; 51(1): 898, 2024 Aug 08.
Artículo en Inglés | MEDLINE | ID: mdl-39115711

RESUMEN

BACKGROUND: The nuclear envelope (NE), which is composed of the outer and inner nuclear membranes, the nuclear pore complex and the nuclear lamina, regulates a plethora of cellular processes, including those that restrict cancer development (genomic stability, cell cycle regulation, and cell migration). Thus, impaired NE is functionally related to tumorigenesis, and monitoring of NE alterations is used to diagnose cancer. However, the chronology of NE changes occurring during cancer evolution and the connection between them remained to be precisely defined, due to the lack of appropriate cell models. METHODS: The expression and subcellular localization of NE proteins (lamins A/C and B1 and the inner nuclear membrane proteins emerin and ß-dystroglycan [ß-DG]) during prostate cancer progression were analyzed, using confocal microscopy and western blot assays, and a prostate cancer cell system comprising RWPE-1 epithelial prostate cells and several prostate cancer cell lines with different invasiveness. RESULTS: Deformed nuclei and the mislocalization and low expression of lamin A/C, lamin B1, and emerin became more prominent as the invasiveness of the prostate cancer lines increased. Suppression of lamin A/C expression was an early event during prostate cancer evolution, while a more extensive deregulation of NE proteins, including ß-DG, occurred in metastatic prostate cells. CONCLUSIONS: The RWPE-1 cell line-based system was found to be suitable for the correlation of NE impairment with prostate cancer invasiveness and determination of the chronology of NE alterations during prostate carcinogenesis. Further study of this cell system would help to identify biomarkers for prostate cancer prognosis and diagnosis.


Asunto(s)
Lamina Tipo A , Lamina Tipo B , Proteínas de la Membrana , Membrana Nuclear , Proteínas Nucleares , Neoplasias de la Próstata , Masculino , Humanos , Neoplasias de la Próstata/metabolismo , Neoplasias de la Próstata/patología , Neoplasias de la Próstata/genética , Membrana Nuclear/metabolismo , Línea Celular Tumoral , Proteínas de la Membrana/metabolismo , Lamina Tipo B/metabolismo , Lamina Tipo A/metabolismo , Lamina Tipo A/genética , Proteínas Nucleares/metabolismo , Proteínas Nucleares/genética , Distroglicanos/metabolismo , Regulación Neoplásica de la Expresión Génica , Núcleo Celular/metabolismo
20.
Int J Mol Sci ; 25(15)2024 Jul 23.
Artículo en Inglés | MEDLINE | ID: mdl-39125591

RESUMEN

Breast cancer (BC) is the most common cancer in women, with incidence rates increasing globally in recent years. Therefore, it is important to find new molecules with prognostic and therapeutic value to improve therapeutic response and quality of life. The polyunsaturated fatty acids (PUFAs) metabolic pathway participates in various physiological processes, as well as in the development of malignancies. Although aberrancies in the PUFAs metabolic pathway have been implicated in carcinogenesis, the functional and clinical relevance of this pathway has not been well explored in BC. To evaluate the clinical significance of soluble epoxide hydrolase (EPHX2) expression in Mexican patients with BC using tissue microarrays (TMAs) and digital pathology (DP). Immunohistochemical analyses were performed on 11 TMAs with 267 BC samples to quantify this enzyme. Using DP, EPHX2 protein expression was evaluated solely in tumor areas. The association of EPHX2 with overall survival (OS) was detected through bioinformatic analysis in public databases and confirmed in our cohort via Cox regression analysis. Clear nuclear expression of EPHX2 was identified. Receiver operating characteristics (ROC) curves revealed the optimal cutoff point at 2.847062 × 10-3 pixels, with sensitivity of 69.2% and specificity of 67%. Stratification based on this cutoff value showed elevated EPHX2 expression in multiple clinicopathological features, including older age and nuclear grade, human epidermal growth factor receptor 2 (HER2) and triple negative breast cancer (TNBC) subtypes, and recurrence. Kaplan-Meier curves demonstrated how higher nuclear expression of EPHX2 predicts shorter OS. Consistently, multivariate analysis confirmed EPHX2 as an independent predictor of OS, with a hazard ratio (HR) of 3.483 and a 95% confidence interval of 1.804-6.724 (p < 0.001). Our study demonstrates for the first time that nuclear overexpression of EPHX2 is a predictor of poor prognosis in BC patients. The DP approach was instrumental in identifying this significant association. Our study provides valuable insights into the potential clinical utility of EPHX2 as a prognostic biomarker and therapeutic target in BC.


Asunto(s)
Biomarcadores de Tumor , Neoplasias de la Mama , Epóxido Hidrolasas , Humanos , Epóxido Hidrolasas/metabolismo , Epóxido Hidrolasas/genética , Femenino , Neoplasias de la Mama/patología , Neoplasias de la Mama/metabolismo , Neoplasias de la Mama/mortalidad , Neoplasias de la Mama/genética , Persona de Mediana Edad , Pronóstico , Biomarcadores de Tumor/metabolismo , Anciano , Adulto , Núcleo Celular/metabolismo , Regulación hacia Arriba , Regulación Neoplásica de la Expresión Génica , Curva ROC , Anciano de 80 o más Años , Estimación de Kaplan-Meier
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