Molecular mechanism of oncogenic programming by histone demethylase GASC1
Molecular mechanism of oncogenic programming by histone demethylase GASC1
批准号:
8925018
负责人:
Zeng-Quan Yang
金额:
$19.96万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-09 至 2018-08-31
关键词:
9p24AffectAnimal ModelArchitectureBindingBiochemicalBiological AssayBiological ProcessBreastBreast Cancer CellC-terminalCatalytic DomainCell modelChromatinDevelopmentDiseaseEnzymesEpigenetic ProcessEpithelialEventFamilyFoundationsGene ExpressionGene TargetingGenesGeneticGenetic TranscriptionGenomicsGoalsHealthHistone H3HistonesHumanIn VitroLeadLysineMCF10A cellsMalignant NeoplasmsMalignant neoplasm of esophagusMammary glandMediatingModelingMolecularN-terminalOncogenesOncogenicPathway interactionsPharmaceutical PreparationsPhenotypePlantsPlayPromoter RegionsProteinsPublic HealthRecruitment ActivityRecurrenceRegulationResearchRoleSentinelSignal PathwaySiteSkp2 ProteinsSpecificitySquamous cell carcinomaTestingTherapeuticTranslatingUbiquitinationWorkXenograft procedurebasebreast tumorigenesiscancer cellcancer therapydemethylationdesignenzyme activityhistone demethylasehistone methylationhistone modificationhomeodomainimprovedin vivoinsightmalignant breast neoplasmmembernew therapeutic targetnoveloverexpressionprogramstargeted treatmenttumortumor progressiontumorigenesis
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The long-term goal of this application is to elucidate the fundamental mechanism by which dysregulation of the histone demethylase, GASC1 (Gene Amplified in Squamous Cell Carcinoma 1, also known as JMJD2C and KDM4C), contributes to tumorigenesis, and to lay a foundation for the development of this protein as a new therapeutic target against breast cancer. The GASC1 gene was originally cloned from an amplified region at 9p24 in esophageal cancer cells. Later studies demonstrated that GASC1 is amplified in approximately 15% of breast cancers with overexpression more prevalent in aggressive, basal-type breast cancer. The GASC1 protein is a key member of histone demethylases that play an essential role in regulating chromatin architecture and gene expression; and is implicated in tumorigenesis. GASC1 mainly catalyzes demethylation of tri- and di-methylated forms of histone H3 lysine 9 (H3K9me3/me2) epigenetic repressive marks. However, the molecular mechanisms by which GASC1-dependent chromatin regulation translates to oncogenicity and cancer progression remain poorly understood. Intriguing preliminary evidence indicated that GASC1 is significantly enriched at target gene promoter regions, and that recruitment of GASC1 to specific genomic loci requires the GASC1 Tudor and Plant Homeo Domains (PHD). Studies indicate that the Tudor and PHD domains have the potential to bind H3K4me3 active marks at promoter regions. Importantly, we demonstrated that GASC1 target genes are involved in multiple signaling pathways and biological processes, including critical genes such as the S-phase kinase-associated protein 2 (SKP2) which participates in ubiquitination. The central hypothesis of this application is that GASC1 is recruited to gene promoter regions containing H3K4me3 active marks via its histone-binding domains, and the subsequent demethylation of H3K9me3/me2 repressive marks induces the transcription of a set of key ubiquitination pathway genes that ultimately promote tumorigenesis. Based on this hypothesis, strategies that selectively alter the GASC1 histone recruitment hold great promise as targeted therapies for aggressive, GASC1-amplified breast and esophageal cancers. In this application, two specific aims will be pursued. In Aim 1, we will elucidate the molecular mechanism and structural details of GASC1 that mediate its recruitment to promoter regions of target genes. In Aim 2, we will determine how GASC1 impacts the histone methylation status and expression of target genes responsible for mediating GASC1's role in breast tumorigenesis in vitro and in xenograft animal models. Significantly, the proposed research will fundamentally increase our understanding of the mechanisms by which GASC1 is recruited to genomic loci and how genetic amplification of GASC1 alters epigenetic programming and triggers downstream oncogenic pathways in cancer. These aspects have translational implications in the development of GASC1 mechanism-based therapies to target a wide range of cancers, particularly GASC1-amplified basal breast cancer.
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DOI:
10.18632/oncotarget.2967
发表时间:
2015-02-10
期刊:
Oncotarget
影响因子:
--
作者:
[Liu L, Kimball S, Liu H, Holowatyj A, Yang ZQ]
通讯作者:
Yang ZQ
DOI:
10.1080/19336934.2015.1074787
发表时间:
2015
期刊:
Fly
影响因子:
1.2
作者:
[Holowatyj A, Yang ZQ, Pile LA]
通讯作者:
Pile LA
DOI:
10.1016/j.molonc.2015.10.013
发表时间:
2016-02
期刊:
Molecular oncology
影响因子:
6.6
作者:
[Jiang Y, Liu L, Shan W, Yang ZQ]
通讯作者:
Yang ZQ
DOI:
10.18632/oncotarget.14402
发表时间:
2017-02-21
期刊:
Oncotarget
影响因子:
--
作者:
[Yu H, Jiang Y, Liu L, Shan W, Chu X, Yang Z, Yang ZQ]
通讯作者:
Yang ZQ
Molecular mechanism of oncogenic programming by histone demethylase GASC1
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批准号:8755828
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项目类别:
-
资助金额:$16.53万
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财政年份:2014
-
负责人:Zeng-Quan Yang
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依托单位:
海外基金