100 research outputs found
Myc-induced liver tumors in transgenic zebrafish can regress in tp53 null mutation
10.1371/journal.pone.0117249PLoS ONE101e011724
Co-activation of hedgehog and AKT pathways promote tumorigenesis in zebrafish
The zebrafish has become an important model for cancer research. Several cancer models have been established by transgenic expression of human or mouse oncogenes in zebrafish. Since it is amenable to efficient transgenesis, zebrafish have immense potential to be used for studying interaction of oncogenes and pathways at the organismal level. Using the Gal4VP16-UAS binary transgenic expression approach, we established stable transgenic lines expressing an EGFP fusion protein of an activated zebrafish Smoothened (Smoa1-EGFP). Expression of the zebrafish Smoa1-EGFP itself did not lead to tumor formation either in founder fish or subsequent generations, however, co-expressing a constitutively active human AKT1 resulted in several tumor types, including spindle cell sarcoma, rhabdomyoma, ocular melanoma, astrocytoma, and myoxma. All tumor types showed GFP expression and increased Patched 1 levels, suggesting involvement of zebrafish Smoa1 in tumorigenesis. Immunofluorescence studies showed that tumors also expressed elevated levels of phosphorylated AKT, indicating activation of the PI3K-AKT pathway. These results suggest that co-activation of the hedgehog and AKT pathways promote tumorigenesis, and that the binary transgenic approach is a useful tool for studying interaction of oncogenes and oncogenic pathways in zebrafish
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Neoplasia and Neoplasm Associated Lesions in Laboratory Colonies of Zebrafish Emphasizing Key Influences of Diet and Aquaculture System Design
During the past decade the zebrafish has emerged as a leading model for mechanistic cancer
research due to its sophisticated genetic and genomic resources, its tractability for tissue
targeting of transgene expression, its efficiency for forward genetic approaches to cancer model
development, and its cost-effectiveness for enhancer and suppressor screens once a cancer model
is established. However, in contrast to other laboratory animal species widely used as cancer
models, much basic cancer biology information is lacking in zebrafish. As yet data are not
published regarding dietary influences on neoplasm incidences in zebrafish. Little information is
available regarding spontaneous tumor incidences or histologic types in wild-type (wt) lines of
zebrafish. So far a comprehensive database documenting the full spectrum of neoplasia in
various organ systems and tissues in not available for zebrafish as it is for other intensely studied
laboratory animal species. This manuscript confirms that as in other species diet and husbandry
can profoundly influence tumor incidences and histologic spectra in zebrafish. We show that in
many laboratory colonies wt lines of zebrafish exhibit elevated neoplasm incidences and
neoplasm associated lesions such as heptocyte megalocytosis. We present experimental evidence
showing that certain diet and water management regimens can result in high incidences of
neoplasia and neoplasm associated lesions. We document the wide array of benign and malignant
neoplasms affecting nearly every organ, tissue and cell type in zebrafish, in some cases as a
spontaneous aging change, and in other cases due to carcinogen treatment or genetic
manipulation.Keywords: Zebrafish, Hepatocyte megalocytosis, Diet, Non-protocol induced variation, Naturally occurring carcinogen, Danio rerio, Husbandry, NeoplasiaKeywords: Zebrafish, Hepatocyte megalocytosis, Diet, Non-protocol induced variation, Naturally occurring carcinogen, Danio rerio, Husbandry, Neoplasi
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Myc-Induced Liver Tumors in Transgenic Zebrafish Can Regress in tp53 Null Mutation
Hepatocellular carcinoma (HCC) is currently one of the top lethal cancers with an increasing trend. Deregulation of MYC in HCC is frequently detected and always correlated with poor prognosis. As the zebrafish genome contains two differentially expressed zebrafish myc orthologs, myca and mycb, it remains unclear about the oncogenicity of the two zebrafish myc genes. In the present study, we developed two transgenic zebrafish lines to overexpress myca and mycb respectively in the liver using a mifepristone-inducible system and found that both myc genes were oncogenic. Moreover, the transgenic expression of myca in hepatocytes caused robust liver tumors with several distinct phenotypes of variable severity. ~5% of myca transgenic fish developing multinodular HCC with cirrhosis after 8 months of induced myca expression. Apoptosis was also observed with myca expression; introduction of homozygous tp53[superscript -/-] mutation into the myca transgenic fish reduced apoptosis and accelerated tumor progression. The malignant status of hepatocytes was dependent on continued expression of myca; withdrawal of the mifepristone inducer resulted in a rapid regression of liver tumors, and the tumor regression occurred even in the tp53[superscript -/-] mutation background. Thus, our data demonstrated the robust oncogenicity of zebrafish myca and the requirement of sustained Myc overexpression for maintenance of the liver tumor phenotype in this transgenic model. Furthermore, tumor regression is independent of the function of Tp53
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Development of a conditional liver tumor model by mifepristone-inducible Cre recombination to control oncogenic kras(V12) expression in transgenic zebrafish
Here we report a new transgenic expression system by combination of liver-specific expression, mifepristone induction and Cre-loxP recombination to conditionally control the expression of oncogenic kras[superscript]V12. This transgenic system allowed expression of kras[superscript]V12 specifically in the liver by a brief exposure of mifepristone to induce permanent genomic recombination mediated by the Cre-loxP system. We found that liver tumors were generally induced from multiple foci due to incomplete Cre-loxP recombination, thus mimicking naturally occurring human tumors resulting from one or a few mutated cells and clonal proliferation to form nodules. Similar to our earlier studies by both constitutive and inducible expression of the kras[superscript]V12 oncogene, hepatocellular carcinoma (HCC) is the main type of liver tumor induced by kras[superscript]V12 expression. Moreover, mixed tumors with hepatocellular adenoma and hepatoblastoma (HB) were also frequently observed. Molecular analyses also indicated similar increase of phosphorylated ERK1/2 in all types of liver tumors, but nuclear localization of β–catenin, a sign of malignant transformation, was found only in HCC and HB. Taken together, our new transgenic system reported in this study allows transgenic kras[superscript]V12 expression specifically in the zebrafish liver only by a brief exposure of mifepristone to induce permanent genomic recombination mediated by the Cre-loxP system.This is the publisher’s final pdf. The published article is copyrighted by the author(s) and published by Nature Publishing Group. The published article can be found at: http://www.nature.com/articles/srep1955
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Histopathologic Alterations Associated with Global Gene Expression Due to Chronic Dietary TCDD Exposure in Juvenile Zebrafish
The goal of this project was to investigate the effects and possible developmental disease implication of chronic dietary TCDD exposure on global gene expression anchored to histopathologic analysis in juvenile zebrafish by functional genomic, histopathologic and analytic chemistry methods. Specifically, juvenile zebrafish were fed Biodiet starter with TCDD added at 0, 0.1, 1, 10 and 100 ppb, and fish were sampled following 0, 7, 14, 28 and 42 d after initiation of the exposure. TCDD accumulated in a dose- and time-dependent manner and 100 ppb TCDD caused TCDD accumulation in female (15.49 ppb) and male (18.04 ppb) fish at 28 d post exposure. Dietary TCDD caused multiple lesions in liver, kidney, intestine and ovary of zebrafish and functional dysregulation such as depletion of glycogen in liver, retrobulbar edema, degeneration of nasal neurosensory epithelium, underdevelopment of intestine, and diminution in the fraction of ovarian follicles containing vitellogenic oocytes. Importantly, lesions in nasal epithelium and evidence of endocrine disruption based on alternatively spliced vasa transcripts are two novel and significant results of this study. Microarray gene expression analysis comparing vehicle control to dietary TCDD revealed dysregulated genes involved in pathways associated with cardiac necrosis/cell death, cardiac fibrosis, renal necrosis/cell death and liver necrosis/cell death. These baseline toxicological effects provide evidence for the potential mechanisms of developmental dysfunctions induced by TCDD and vasa as a biomarker for ovarian developmental disruption
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Primary Intestinal and Vertebral Chordomas in Laboratory Zebrafish (Danio rerio)
Chordomas are uncommon neoplasms arising from notochord remnants, most commonly
occurring in the axial skeleton. Extraskeletal soft tissue chordomas are rare primary tumors, and
primary intestinal chordomas have not been reported. Herein we report 24 cases of spontaneous
primary intestinal chordomas in zebrafish, as well as 9 spontaneous vertebral chordomas. Both
intestinal and vertebral tumors showed invasive behavior, although more commonly in the latter. In all
cases of primary intestinal chordomas, there was no axial or peripheral skeletal or other non-visceral
involvement. Although uncommon, intestinal chordomas represent a unique background lesion in aged
zebrafish.This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published article is copyrighted by the American College of Veterinary Pathologists and published by Sage Publications. It can be found at: http://intl-vet.sagepub.com/.Keywords: Zebrafish, Chordomas, Vertebral, Intestina
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Zebrafish models for translational neuroscience research: from tank to bedside
The zebrafish (Danio rerio) is emerging as a new important species for studying brain mechanisms and its deficits. Focusing on selected CNS disorders (brain cancer, epilepsy and anxiety) and using them as examples, we discuss the value of zebrafish models in translational neuroscience, and their contribution to neuroimaging, circuit-level and drug discovery research. Outlining the role of zebrafish in modeling a wide range of human brain disorders, we also summarize recent applications and existing challenges in this field. Finally, we emphasize the potential of zebrafish models in behavioral phenomics and high-throughput genetic/small molecule screening, which is critical for CNS drug discovery and identifying novel candidate genes.Keywords: biomarkers, cancer, zebrafish, epilepsy, brain disorders, anxiet
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Co-activation of hedgehog and AKT pathways promote tumorigenesis in zebrafish
The zebrafish has become an important model for cancer research. Several cancer models have
been established by transgenic expression of human or mouse oncogenes in zebrafish. Since it is
amenable to efficient transgenesis, zebrafish have immense potential to be used for studying
interaction of oncogenes and pathways at the organismal level. Using the Gal4VP16-UAS binary
transgenic expression approach, we established stable transgenic lines expressing an EGFP fusion
protein of an activated zebrafish Smoothened (Smoa1-EGFP). Expression of the zebrafish Smoa1-EGFP itself did not lead to tumor formation either in founder fish or subsequent generations,
however, co-expressing a constitutively active human AKT1 resulted in several tumor types,
including spindle cell sarcoma, rhabdomyoma, ocular melanoma, astrocytoma, and myoxma. All
tumor types showed GFP expression and increased Patched 1 levels, suggesting involvement of
zebrafish Smoa1 in tumorigenesis. Immunofluorescence studies showed that tumors also expressed
elevated levels of phosphorylated AKT, indicating activation of the PI3K-AKT pathway. These
results suggest that co-activation of the hedgehog and AKT pathways promote tumorigenesis, and
that the binary transgenic approach is a useful tool for studying interaction of oncogenes and
oncogenic pathways in zebrafish
Recommended from our members
Pathological and Behavioral Manifestations of the “Cayuga Syndrome,” a Thiamine Deficiency in Larval Landlocked Atlantic Salmon
The “Cayuga syndrome” is a maternally transmitted, naturally occurring thiamine deficiency that causes 100% mortality of larval landlocked Atlantic salmon Salmo salar in several of New York's Finger Lakes, Results of multiyear studies to qualify and quantify the neurobehavioral and gross pathological signs of this condition are described, Affected sac fry became weak and ataxic and responded atypically to stimuli 1–2 weeks before death. Quantitative assays of stimulus-provoked swimming revealed a significant neuropathy whereby the sac fry exhibited abnormal thigmotactic and phototactic behaviors. Gross lesions observed in Cayuga sac fry included yolk-sac opacities, subcutaneous edema, vitelline hemorrhage or congestion, pericardial edema, retrobulbar edema, branchial congestion, foreshortened maxillae, hydrocephalus, and occasional caudal fin deformities, Lesion frequency in progeny differed significantly between dam source. Yolk conversion efficiency was decreased at least 1 week before death, suggesting that the bioenergetics of the fish was compromised and thereby supporting the thiamine residue and treatment data reported elsewhere, Comparisons with coagulated-yolk, blue-sac and swim-up syndromes are presented, The pathological signs of the Cayuga syndrome represent a unique departure from the lesions induced by toxicants or pathogens in other piscine models, and for the first time profile the profound effects of thiamine deficiency on cardiovascular and neurological systems of larval fish.This is the publisher’s final pdf. The published article is copyrighted by the American Fisheries Society and can be found at: http://www.tandfonline.com/toc/uahh20/current#.UgvziXfAF8G
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