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Fackelmann KA 《Science news》1990,137(13):200-203, 205
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Pérez-Mancera PA Rust AG van der Weyden L Kristiansen G Li A Sarver AL Silverstein KA Grützmann R Aust D Rümmele P Knösel T Herd C Stemple DL Kettleborough R Brosnan JA Li A Morgan R Knight S Yu J Stegeman S Collier LS ten Hoeve JJ de Ridder J Klein AP Goggins M Hruban RH Chang DK Biankin AV Grimmond SM;Australian Pancreatic Cancer Genome Initiative Wessels LF Wood SA Iacobuzio-Donahue CA Pilarsky C Largaespada DA Adams DJ Tuveson DA 《Nature》2012,486(7402):266-270
Pancreatic ductal adenocarcinoma (PDA) remains a lethal malignancy despite much progress concerning its molecular characterization. PDA tumours harbour four signature somatic mutations in addition to numerous lower frequency genetic events of uncertain significance. Here we use Sleeping Beauty (SB) transposon-mediated insertional mutagenesis in a mouse model of pancreatic ductal preneoplasia to identify genes that cooperate with oncogenic Kras(G12D) to accelerate tumorigenesis and promote progression. Our screen revealed new candidate genes for PDA and confirmed the importance of many genes and pathways previously implicated in human PDA. The most commonly mutated gene was the X-linked deubiquitinase Usp9x, which was inactivated in over 50% of the tumours. Although previous work had attributed a pro-survival role to USP9X in human neoplasia, we found instead that loss of Usp9x enhances transformation and protects pancreatic cancer cells from anoikis. Clinically, low USP9X protein and messenger RNA expression in PDA correlates with poor survival after surgery, and USP9X levels are inversely associated with metastatic burden in advanced disease. Furthermore, chromatin modulation with trichostatin A or 5-aza-2'-deoxycytidine elevates USP9X expression in human PDA cell lines, indicating a clinical approach for certain patients. The conditional deletion of Usp9x cooperated with Kras(G12D) to accelerate pancreatic tumorigenesis in mice, validating their genetic interaction. We propose that USP9X is a major tumour suppressor gene with prognostic and therapeutic relevance in PDA. 相似文献
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Lang D Lu MM Huang L Engleka KA Zhang M Chu EY Lipner S Skoultchi A Millar SE Epstein JA 《Nature》2005,433(7028):884-887
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M McDonald M Bayliss BA Benson RJ Foley J Ruel P Sullivan S Veilleux KA Aird ML Ashby M Bautz G Bazin LE Bleem M Brodwin JE Carlstrom CL Chang HM Cho A Clocchiatti TM Crawford AT Crites T de Haan S Desai MA Dobbs JP Dudley E Egami WR Forman GP Garmire EM George MD Gladders AH Gonzalez NW Halverson NL Harrington FW High GP Holder WL Holzapfel S Hoover JD Hrubes C Jones M Joy R Keisler L Knox AT Lee EM Leitch J Liu M Lueker D Luong-Van A Mantz DP Marrone JJ McMahon J Mehl SS Meyer ED Miller 《Nature》2012,488(7411):349-352
In the cores of some clusters of galaxies the hot intracluster plasma is dense enough that it should cool radiatively in the cluster's lifetime, leading to continuous 'cooling flows' of gas sinking towards the cluster centre, yet no such cooling flow has been observed. The low observed star-formation rates and cool gas masses for these 'cool-core' clusters suggest that much of the cooling must be offset by feedback to prevent the formation of a runaway cooling flow. Here we report X-ray, optical and infrared observations of the galaxy cluster SPT-CLJ2344-4243 (ref. 11) at redshift z = 0.596. These observations reveal an exceptionally luminous (8.2?×?10(45)?erg?s(-1)) galaxy cluster that hosts an extremely strong cooling flow (around 3,820 solar masses a year). Further, the central galaxy in this cluster appears to be experiencing a massive starburst (formation of around 740 solar masses a year), which suggests that the feedback source responsible for preventing runaway cooling in nearby cool-core clusters may not yet be fully established in SPT-CLJ2344-4243. This large star-formation rate implies that a significant fraction of the stars in the central galaxy of this cluster may form through accretion of the intracluster medium, rather than (as is currently thought) assembling entirely via mergers. 相似文献
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The myelination of axons by glial cells was the last major step in the evolution of cells in the vertebrate nervous system, and white-matter tracts are key to the architecture of the mammalian brain. Cell biology and mouse genetics have provided insight into axon-glia signalling and the molecular architecture of the myelin sheath. Glial cells that myelinate axons were found to have a dual role by also supporting the long-term integrity of those axons. This function may be independent of myelin itself. Myelin abnormalities cause a number of neurological diseases, and may also contribute to complex neuropsychiatric disorders. 相似文献
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ATM phosphorylation of Nijmegen breakage syndrome protein is required in a DNA damage response 总被引:48,自引:0,他引:48
Wu X Ranganathan V Weisman DS Heine WF Ciccone DN O'Neill TB Crick KE Pierce KA Lane WS Rathbun G Livingston DM Weaver DT 《Nature》2000,405(6785):477-482
Nijmegen breakage syndrome (NBS) is characterized by extreme radiation sensitivity, chromosomal instability and cancer. The phenotypes are similar to those of ataxia telangiectasia mutated (ATM) disease, where there is a deficiency in a protein kinase that is activated by DNA damage, indicating that the Nbs and Atm proteins may participate in common pathways. Here we report that Nbs is specifically phosphorylated in response to gamma-radiation, ultraviolet light and exposure to hydroxyurea. Phosphorylation of Nbs mediated by gamma-radiation, but not that induced by hydroxyurea or ultraviolet light, was markedly reduced in ATM cells. In vivo, Nbs was phosphorylated on many serine residues, of which S343, S397 and S615 were phosphorylated by Atm in vitro. At least two of these sites were underphosphorylated in ATM cells. Inactivation of these serines by mutation partially abrogated Atm-dependent phosphorylation. Reconstituting NBS cells with a mutant form of Nbs that cannot be phosphorylated at selected, ATM-dependent serine residues led to a specific reduction in clonogenic survival after gamma-radiation. Thus, phosphorylation of Nbs by Atm is critical for certain responses of human cells to DNA damage. 相似文献