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1.
Cancers (Basel) ; 15(15)2023 Aug 05.
Artículo en Inglés | MEDLINE | ID: mdl-37568801

RESUMEN

The protein output of different mRNAs can vary by two orders of magnitude; therefore, it is critical to understand the processes that control gene expression operating at the level of translation. Translatome-wide techniques, such as polysome profiling and ribosome profiling, are key methods for determining the translation rates occurring on specific mRNAs. These techniques are now widely used in cell lines; however, they are underutilised in tissues and cancer models. Ribonuclease (RNase) expression is often found to be higher in complex primary tissues in comparison to cell lines. Methods used to preserve RNA during lysis often use denaturing conditions, which need to be avoided when maintaining the interaction and position of the ribosome with the mRNA is required. Here, we detail the cell lysis conditions that produce high-quality RNA from several different tissues covering a range of endogenous RNase expression levels. We highlight the importance of RNA integrity for accurate determination of the global translation status of the cell as determined by polysome gradients and discuss key aspects to optimise for accurate assessment of the translatome from primary mouse tissue.

2.
Cancer Discov ; 10(6): 872-887, 2020 06.
Artículo en Inglés | MEDLINE | ID: mdl-32200350

RESUMEN

MYC is implicated in the development and progression of pancreatic cancer, yet the precise level of MYC deregulation required to contribute to tumor development has been difficult to define. We used modestly elevated expression of human MYC, driven from the Rosa26 locus, to investigate the pancreatic phenotypes arising in mice from an approximation of MYC trisomy. We show that this level of MYC alone suffices to drive pancreatic neuroendocrine tumors, and to accelerate progression of KRAS-initiated precursor lesions to metastatic pancreatic ductal adenocarcinoma (PDAC). Our phenotype exposed suppression of the type I interferon (IFN) pathway by the combined actions of MYC and KRAS, and we present evidence of repressive MYC-MIZ1 complexes binding directly to the promoters of the genes encodiing the type I IFN regulators IRF5, IRF7, STAT1, and STAT2. Derepression of IFN regulator genes allows pancreatic tumor infiltration by B and natural killer (NK) cells, resulting in increased survival. SIGNIFICANCE: We define herein a novel mechanism of evasion of NK cell-mediated immunity through the combined actions of endogenously expressed mutant KRAS and modestly deregulated expression of MYC, via suppression of the type I IFN pathway. Restoration of IFN signaling may improve outcomes for patients with PDAC.This article is highlighted in the In This Issue feature, p. 747.


Asunto(s)
Linfocitos B/metabolismo , Carcinoma Ductal Pancreático/patología , Interferón Tipo I/metabolismo , Células Asesinas Naturales/metabolismo , Neoplasias Pancreáticas/patología , Proliferación Celular , Humanos , Interferón Tipo I/genética
3.
Sci Adv ; 5(6): eaaw0254, 2019 06.
Artículo en Inglés | MEDLINE | ID: mdl-31183403

RESUMEN

Cellular senescence is a stress response program characterized by a robust cell cycle arrest and the induction of a proinflammatory senescence-associated secretory phenotype (SASP) that is triggered through an unknown mechanism. Here, we show that, during oncogene-induced senescence (OIS), the Toll-like receptor 2 (TLR2) and its partner TLR10 are key mediators of senescence in vitro and in murine models. TLR2 promotes cell cycle arrest by regulating the tumor suppressors p53-p21CIP1, p16INK4a, and p15INK4b and regulates the SASP through the induction of the acute-phase serum amyloids A1 and A2 (A-SAAs) that, in turn, function as the damage-associated molecular patterns (DAMPs) signaling through TLR2 in OIS. Last, we found evidence that the cGAS-STING cytosolic DNA sensing pathway primes TLR2 and A-SAAs expression in OIS. In summary, we report that innate immune sensing of senescence-associated DAMPs by TLR2 controls the SASP and reinforces the cell cycle arrest program in OIS.


Asunto(s)
Senescencia Celular , Inmunidad Innata , Receptor Toll-Like 2/metabolismo , Alarminas/metabolismo , Animales , Senescencia Celular/efectos de los fármacos , Fibroblastos/citología , Fibroblastos/metabolismo , Humanos , Proteínas de la Membrana/metabolismo , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , FN-kappa B/metabolismo , Nucleotidiltransferasas/metabolismo , Interferencia de ARN , ARN Interferente Pequeño/metabolismo , Proteína Amiloide A Sérica/genética , Proteína Amiloide A Sérica/metabolismo , Transducción de Señal , Tamoxifeno/análogos & derivados , Tamoxifeno/farmacología , Receptor Toll-Like 10/antagonistas & inhibidores , Receptor Toll-Like 10/genética , Receptor Toll-Like 10/metabolismo , Receptor Toll-Like 2/antagonistas & inhibidores , Receptor Toll-Like 2/genética , Proteínas Quinasas p38 Activadas por Mitógenos/metabolismo , Proteínas ras/genética , Proteínas ras/metabolismo
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