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1.
Drug Discov Today ; 28(2): 103440, 2023 02.
Artículo en Inglés | MEDLINE | ID: mdl-36375739

RESUMEN

Harnessing the immune system to kill tumors has been revolutionary and, as a result, has had an enormous benefit for patients in extending life and resulting in effective cures in some. However, activation of the immune system can come at the cost of undesirable adverse events such as cytokine release syndrome, immune-related adverse events, on-target/off-tumor toxicity, neurotoxicity and tumor lysis syndrome, which are safety risks that can be challenging to assess non-clinically. This article provides a review of the biology and mechanisms that can result in immune-mediated adverse effects and describes industry approaches using in vitro and in vivo models to aid in the nonclinical safety risk assessments for immune-oncology modalities. Challenges and limitations of knowledge and models are also discussed.


Asunto(s)
Efectos Colaterales y Reacciones Adversas Relacionados con Medicamentos , Neoplasias , Humanos , Neoplasias/tratamiento farmacológico , Medición de Riesgo
2.
Front Microbiol ; 13: 1011070, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-36560951

RESUMEN

Woodchuck (Marmota monax) infected with woodchuck hepatitis virus (WHV) is the most pathogenically compatible naturally occurring model of human hepatitis B virus (HBV) infection, chronic hepatitis B, and HBV-induced hepatocellular carcinoma. This system plays a crucial role in discovery and preclinical evaluation of anti-HBV therapies. Its utilization remains tempered by the relatively narrow range of validated immunologic and molecular tools. We evaluated commercial antibodies against immune cell phenotypic markers and T cell molecules for cross-reactivity with woodchuck antigenic equivalents. The confirmed antibodies against programed cell death protein-1 (PD-1) and its ligand (PD-L1) were examined for ex vivo ability to activate WHV-specific, global and bystander cytotoxic T cells (CTLs) in chronic hepatitis and asymptomatic infection persisting after self-resolved acute hepatitis. Examination of 65 antibodies led to identification or confirmation of 23 recognizing woodchuck T, regulatory T, B and natural killer cells, T cell-associated PD-1, PD-L1, CTLA-4 and TIM-3 molecules, CD25 and CD69 markers of T cell activation, and interferon gamma (IFNγ). Antibodies against woodchuck PD-1 and PD-L1 triggered in vitro highly individualized WHV-specific and global activation of CTLs in both chronic hepatitis and persistent occult infection. WHV-specific CTLs were more robustly augmented by anti-PD-1 than by anti-PD-L1 in chronic hepatitis, while global IFNγ-positive CTL response was significantly suppressed in chronic hepatitis compared to persistent occult infection. Anti-PD-1 and anti-PD-L1 also occasionally activated CTLs to specificities other than those tested suggesting their potency to trigger side effects. This was particularly apparent when T cells from chronic hepatitis were treated with anti-PD-L1. The current findings indicate that inhibition of the PD-1/PD-L1 pathway could reactivate virus-specific and global T cell responses in both chronic hepatitis and asymptomatic persistent infection. They suggest a mechanism of potential reactivation of clinically silent infection during anti-PD-1/PD-L1 treatment and indicate that this therapy may also subdue occult HBV infection.

3.
Cancer Res ; 82(7): 1234-1250, 2022 04 01.
Artículo en Inglés | MEDLINE | ID: mdl-35149590

RESUMEN

MYC family oncoproteins are regulators of metabolic reprogramming that sustains cancer cell anabolism. Normal cells adapt to nutrient-limiting conditions by activating autophagy, which is required for amino acid (AA) homeostasis. Here we report that the autophagy pathway is suppressed by Myc in normal B cells, in premalignant and neoplastic B cells of Eµ-Myc transgenic mice, and in human MYC-driven Burkitt lymphoma. Myc suppresses autophagy by antagonizing the expression and function of transcription factor EB (TFEB), a master regulator of autophagy. Mechanisms that sustained AA pools in MYC-expressing B cells include coordinated induction of the proteasome and increases in AA transport. Reactivation of the autophagy-lysosomal pathway by TFEB disabled the malignant state by disrupting mitochondrial functions, proteasome activity, AA transport, and AA and nucleotide metabolism, leading to metabolic anergy, growth arrest, and apoptosis. This phenotype provides therapeutic opportunities to disable MYC-driven malignancies, including AA restriction and treatment with proteasome inhibitors. SIGNIFICANCE: MYC suppresses TFEB and autophagy and controls amino acid homeostasis by upregulating amino acid transport and the proteasome, and reactivation of TFEB disables the metabolism of MYC-driven tumors.


Asunto(s)
Factores de Transcripción Básicos con Cremalleras de Leucinas y Motivos Hélice-Asa-Hélice , Lisosomas , Proteínas Proto-Oncogénicas c-myc , Aminoácidos/metabolismo , Animales , Autofagia/fisiología , Factores de Transcripción Básicos con Cremalleras de Leucinas y Motivos Hélice-Asa-Hélice/genética , Homeostasis , Humanos , Lisosomas/metabolismo , Ratones , Complejo de la Endopetidasa Proteasomal/metabolismo , Proteínas Proto-Oncogénicas c-myc/genética
4.
Proc Natl Acad Sci U S A ; 114(5): E751-E760, 2017 01 31.
Artículo en Inglés | MEDLINE | ID: mdl-28096401

RESUMEN

Macrophage activation is a critical step in host responses during bacterial infections. Ornithine decarboxylase (ODC), the rate-limiting enzyme in polyamine metabolism, has been well studied in epithelial cells and is known to have essential roles in many different cellular functions. However, its role in regulating macrophage function during bacterial infections is not well characterized. We demonstrate that macrophage-derived ODC is a critical regulator of M1 macrophage activation during both Helicobacter pylori and Citrobacter rodentium infection. Myeloid-specific Odc deletion significantly increased gastric and colonic inflammation, respectively, and enhanced M1 activation. Add-back of putrescine, the product of ODC, reversed the increased macrophage activation, indicating that ODC and putrescine are regulators of macrophage function. Odc-deficient macrophages had increased histone 3, lysine 4 (H3K4) monomethylation, and H3K9 acetylation, accompanied by decreased H3K9 di/trimethylation both in vivo and ex vivo in primary macrophages. These alterations in chromatin structure directly resulted in up-regulated gene transcription, especially M1 gene expression. Thus, ODC in macrophages tempers antimicrobial, M1 macrophage responses during bacterial infections through histone modifications and altered euchromatin formation, leading to the persistence and pathogenesis of these organisms.


Asunto(s)
Infecciones por Enterobacteriaceae/inmunología , Infecciones por Helicobacter/inmunología , Histonas/metabolismo , Macrófagos/inmunología , Ornitina Descarboxilasa/inmunología , Animales , Línea Celular , Citrobacter rodentium , Colitis/inmunología , Colitis/patología , Colon/inmunología , Colon/patología , Citocinas/inmunología , Infecciones por Enterobacteriaceae/patología , Mucosa Gástrica/inmunología , Mucosa Gástrica/patología , Gastritis/inmunología , Gastritis/patología , Infecciones por Helicobacter/patología , Helicobacter pylori , Humanos , Activación de Macrófagos , Masculino , Ratones , Proteína con Dominio Pirina 3 de la Familia NLR/inmunología , Ornitina Descarboxilasa/genética , Putrescina/metabolismo
5.
Cell ; 150(3): 563-74, 2012 Aug 03.
Artículo en Inglés | MEDLINE | ID: mdl-22863009

RESUMEN

Myc oncoproteins directly regulate transcription by binding to target genes, yet this only explains a fraction of the genes affected by Myc. mRNA turnover is controlled via AU-binding proteins (AUBPs) that recognize AU-rich elements (AREs) found within many transcripts. Analyses of precancerous and malignant Myc-expressing B cells revealed that Myc regulates hundreds of ARE-containing (ARED) genes and select AUBPs. Notably, Myc directly suppresses transcription of Tristetraprolin (TTP/ZFP36), an mRNA-destabilizing AUBP, and this circuit is also operational during B lymphopoiesis and IL7 signaling. Importantly, TTP suppression is a hallmark of cancers with MYC involvement, and restoring TTP impairs Myc-induced lymphomagenesis and abolishes maintenance of the malignant state. Further, there is a selection for TTP loss in malignancy; thus, TTP functions as a tumor suppressor. Finally, Myc/TTP-directed control of select cancer-associated ARED genes is disabled during lymphomagenesis. Thus, Myc targets AUBPs to regulate ARED genes that control tumorigenesis.


Asunto(s)
Genes Supresores de Tumor , Linfoma de Células B/metabolismo , Proteínas Proto-Oncogénicas c-myc/metabolismo , Tristetraprolina/metabolismo , Proteínas Adaptadoras Transductoras de Señales/genética , Animales , Linfocitos B/metabolismo , Línea Celular Tumoral , Transformación Celular Neoplásica , Células HeLa , Células Endoteliales de la Vena Umbilical Humana , Humanos , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Estabilidad del ARN , ARN Mensajero/química
6.
Mol Cell ; 43(4): 572-85, 2011 Aug 19.
Artículo en Inglés | MEDLINE | ID: mdl-21855797

RESUMEN

Autophagy, the primary recycling pathway of cells, plays a critical role in mitochondrial quality control under normal growth conditions and in the response to cellular stress. The Hsp90-Cdc37 chaperone complex coordinately regulates the activity of select kinases to orchestrate many facets of the stress response. Although both maintain mitochondrial integrity, the relationship between Hsp90-Cdc37 and autophagy has not been well characterized. Ulk1, one of the mammalian homologs of yeast Atg1, is a serine-threonine kinase required for mitophagy. Here we show that the interaction between Ulk1 and Hsp90-Cdc37 stabilizes and activates Ulk1, which in turn is required for the phosphorylation and release of Atg13 from Ulk1, and for the recruitment of Atg13 to damaged mitochondria. Hsp90-Cdc37, Ulk1, and Atg13 phosphorylation are all required for efficient mitochondrial clearance. These findings establish a direct pathway that integrates Ulk1- and Atg13-directed mitophagy with the stress response coordinated by Hsp90 and Cdc37.


Asunto(s)
Proteínas Adaptadoras Transductoras de Señales/fisiología , Autofagia/fisiología , Proteínas de Ciclo Celular/fisiología , Chaperoninas/fisiología , Proteínas HSP90 de Choque Térmico/fisiología , Péptidos y Proteínas de Señalización Intracelular/fisiología , Mitocondrias/metabolismo , Proteínas Serina-Treonina Quinasas/fisiología , Proteínas Adaptadoras Transductoras de Señales/metabolismo , Animales , Homólogo de la Proteína 1 Relacionada con la Autofagia , Proteínas Relacionadas con la Autofagia , Proteínas de Ciclo Celular/metabolismo , Diferenciación Celular , Línea Celular , Chaperoninas/metabolismo , Células Eritroides/citología , Células Eritroides/metabolismo , Células HEK293 , Proteínas HSP90 de Choque Térmico/metabolismo , Humanos , Péptidos y Proteínas de Señalización Intracelular/metabolismo , Células K562 , Ratones , Fosforilación , Proteínas Serina-Treonina Quinasas/metabolismo , Estabilidad Proteica , Ubiquitina-Proteína Ligasas/metabolismo , Ubiquitina-Proteína Ligasas/fisiología
7.
Curr Opin Cell Biol ; 22(2): 218-25, 2010 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-20096553

RESUMEN

Autophagy is crucial for maintaining cellular homeostasis, coping with metabolic stress, and limiting oxidative damage. Several autophagy-deficient or knockout models show increased tumor incidence, implicating autophagy as a tumor suppressor. Autophagy is involved in multiple processes that may curb transformation, including the control of oncogene-induced senescence (OIS), which can limit progression to full malignancy, and efficient antigen presentation, which is crucial for immune cell recognition and elimination of nascent cancer cells. Activation of the autophagy pathway may therefore hold promise as a chemoprevention strategy. Caloric restriction, bioactive dietary compounds, or specific pharmacological activators of the autophagy pathway are all possible avenues to explore in harnessing the autophagy pathway in cancer prevention.


Asunto(s)
Autofagia , Quimioprevención , Neoplasias/tratamiento farmacológico , Neoplasias/patología , Transducción de Señal , Animales , Transformación Celular Neoplásica/patología , Humanos , Modelos Biológicos
8.
Methods Enzymol ; 453: 251-71, 2009.
Artículo en Inglés | MEDLINE | ID: mdl-19216910

RESUMEN

Autophagy is an ancient cell survival pathway that is induced by metabolic stress and that helps prevent bioenergetic failure. This pathway has emerged as a promising new target in cancer treatment, where agents that inhibit autophagic degradation have efficacy in preventing cancer and in treating resistant disease when combined with conventional chemotherapeutics, which generally activate the pathway. However, agents that specifically target the autophagy pathway are currently lacking, and monitoring the effects of therapeutics on the autophagy pathway raises several challenges. Here we review the potential roles of the autophagy pathway in tumor progression and in maintenance of the malignant state, and introduce novel methods that we have developed that allow one to monitor autophagic activity ex vivo and in vivo.


Asunto(s)
Autofagia/fisiología , Neoplasias/metabolismo , Animales , Autofagia/genética , Proteínas Fluorescentes Verdes/genética , Proteínas Fluorescentes Verdes/metabolismo , Linfoma/genética , Linfoma/metabolismo , Ratones , Ratones Transgénicos , Proteínas Asociadas a Microtúbulos/genética , Proteínas Asociadas a Microtúbulos/metabolismo , Neoplasias/genética , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo
9.
J Immunol ; 172(11): 6568-77, 2004 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-15153471

RESUMEN

Lupus-prone (NZB x NZW)F(1) (BWF(1)) mice were made transgenic (Tg) for an anti-DNA Ab inherited either as a conventional V(H)3H9- micro H chain Tg (3H9- micro ) with or without a conventional V(kappa)8-kappa Tg, or a V(H)3H9 V(H) knock-in Tg allele (3H9R) with or without a V(kappa)4 V(kappa) knock-in Tg allele (V(kappa)4R). V(H)3H9 yields an anti-DNA Ab with most L chains including an anti-ssDNA with the V(kappa)8 Tg and an anti-dsDNA with the V(kappa)4 Tg. BWF(1) mice that inherited the conventional 3H9- micro had normal serum IgM, little to none of which was encoded by 3H9- micro, and only a small percentage of those mice had serum anti-DNA, none of which was transgene encoded. B cells expressing the conventional 3H9- micro Tg were anergic. BWF(1) mice that inherited the knock-in 3H9R Tg allele also had normal serum IgM, one-half of which was encoded by 3H9R, and produced anti-DNA encoded by the Tg allele. Most B cells expressing the knock-in 3H9R Tg also had an anergic phenotype. The results indicate that autoimmune-prone BWF(1) mice initially develop effective B cell tolerance to DNA through anergy, and anergy was sustained in 3H9- micro Tg peripheral B cells but not in 3H9R Tg B cells. B cells expressing the 3H9R knock-in Tg allele were able to achieve an activation threshold that B cells expressing the 3H9- micro conventional Tg could not. The maintenance of B cell tolerance to DNA in autoimmune-prone BWF(1) mice appears to differ from both normal mice and autoimmune-prone MRL(lpr/lpr) mice.


Asunto(s)
Anticuerpos Antinucleares/sangre , Linfocitos B/inmunología , ADN/inmunología , Tolerancia Inmunológica , Cadenas Pesadas de Inmunoglobulina/genética , Inmunoglobulina M/genética , Región Variable de Inmunoglobulina/genética , Transgenes , Animales , Enfermedades Autoinmunes/etiología , Femenino , Citometría de Flujo , Longevidad , Masculino , Ratones , Ratones Endogámicos BALB C , Ratones Endogámicos NZB , Ratones Transgénicos
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