Role of Cdc25A in breast cancer
Role of Cdc25A in breast cancer
批准号:
8860122
负责人:
HIROAKI KIYOKAWA
金额:
$27.32万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-09-01 至 2016-12-31
关键词:
AddressAffinityApoptosisBindingBiologicalBiological ProcessBreast Cancer CellBreast CarcinomaBreast Epithelial CellsCDC25A geneCDC25A proteinCHES1 geneCdc25B proteinCdc25C proteinCell Cycle CheckpointCell Cycle ProgressionCell Cycle RegulationCellsCentrosomeChromosomal InstabilityClinicalClinical ResearchClonal ExpansionCyclin-Dependent KinasesCytokeratin-14 Staining MethodCytokinesisDNA DamageDataDatabasesDevelopmentEmbryoEpithelialEstrogen ReceptorsEukaryotic CellEventExhibitsFamilyFeedbackFibroblastsFoundationsFundingGeneticGenetic TranscriptionGenomic InstabilityGoalsHumanKnock-in MouseKnockout MiceLeadMCF10A cellsMDA MB 231Malignant NeoplasmsMammary TumorigenesisMammary glandMediatingMetastatic Neoplasm to the LungMitosisMolecularMouse Mammary Tumor VirusMusMutationMyoepithelial cellNude MiceOncogenicOutcomePathway interactionsPatientsPhosphoric Monoester HydrolasesPhosphorylationPhosphotransferasesPlayPopulationProgesterone ReceptorsProtein DephosphorylationProtein phosphataseProteinsProteomicsProto-Oncogene Proteins c-aktRegulationRepressionResearchResistanceRoleSolidStagingTetanus Helper PeptideTherapeutic InterventionTissuesTransgenesTransgenic OrganismsUbiquitinUp-RegulationXenograft procedureactivating transcription factor 3basein vivoinsightlymph nodesmalignant breast neoplasmmalignant phenotypenoveloutcome forecastoverexpressionprogramsresponsesmall hairpin RNAtargeted cancer therapytargeted treatmenttherapeutic targettriple-negative invasive breast carcinomatumortumor initiationtumorigenesisubiquitin-protein ligase
中文摘要
描述(由申请人提供):CDC25家族双特异性蛋白磷酸酶通过激酶的ATP结合域的去磷酸化激活周期蛋白依赖性激酶(CDKs),作为真核细胞周期进程的限速调节剂。在DNA损伤的反应中,CDC25磷酸酶通过chk1 /2依赖性磷酸化失活,形成细胞周期检查点的关键靶点。在哺乳动物的三种CDC25蛋白中,CDC25A似乎在细胞周期的发育和检查点控制中发挥着独特而不可或缺的作用,而CDC25B和CDC25C在发育和检查点中的功能似乎更多地重叠或可缺性。CDC25A在包括乳腺癌在内的多种人类癌症组织中过表达,尽管CDC25A位点的癌症相关扩增通常不被观察到。这个持续研究项目的长期目标是了解CDC25A在乳腺癌中的确切作用,并为针对这种蛋白质的抗癌治疗建立科学基础。既往研究表明,CDC25A过表达与早期乳腺癌患者雌激素、孕激素受体表达阴性、p53突变、肿瘤分级高、预后差相关。本应用评估的中心假设是p53失活和CDC25A表达失调以正反馈机制相互促进,这两个事件在肿瘤起始和恶性表型恶化期间建立染色体不稳定,特别是在三阴性乳腺癌中。在新的研究计划中,将追求三个具体目标:(1)确定CDC25A表达失调与p53失活在乳腺癌发展中的合作关系;(2)确定CDC25A表达失调的乳腺上皮细胞染色体不稳定的机制和意义;(3)明确CDC25A在乳腺肿瘤发生过程中与p53依赖性检查点和细胞凋亡的体内相互作用。这些研究应该为CDC25A的致癌作用提供重要的见解,CDC25A现在被认为是一种治疗靶点。
英文摘要
DESCRIPTION (provided by applicant): CDC25 family dual-specific protein phosphatases activate cyclin-dependent kinases (CDKs) by dephosphorylation of the ATP binding domains of the kinases, functioning as rate-limiting regulators of eukaryotic cell cycle progression. In response to DNA damages, CDC25 phosphatases are inactivated by CHK1/2-dependent phosphorylation, forming critical targets of cell cycle checkpoint. Of mammalian three CDC25 proteins, CDC25A appears to play a distinct and indispensable role in developmental and checkpoint control of the cell cycle, while the functions of CDC25B and CDC25C in development and checkpoint appear more overlapping or dispensable. CDC25A is overexpressed in a variety of human cancer tissues, including breast cancer, although cancer-associated amplification of the CDC25A locus is not usually observed. The long-term goal of this continued research program is to understand the exact role of CDC25A in breast cancer and establish a scientific basis for anti-cancer therapies targeted on this protein. Previous studies indicate that CDC25A overexpression, which is observed in a population of early stage breast cancers, correlates with negative expression of estrogen and progesterone receptors, p53 mutations, high tumor grades and poor prognosis of patients. The central hypothesis evaluated in the present application is that p53 inactivation and deregulated CDC25A expression promote each other with a positive feedback mechanism, and both events functionally cooperate in establishing chromosome instability during tumor initiation and exacerbating malignant phenotypes, especially in triple-negative breast cancer. In the renewed research program, three specific aims will be pursued: (1) Determine how deregulated CDC25A expression cooperates with p53 inactivation in the development of breast cancer; (2) Determine the mechanisms and significance of chromosome instability in mammary epithelial cells with deregulated CDC25A expression; (3) Define in vivo interactions of CDC25A with p53-dependent checkpoint and apoptosis during mammary tumorigenesis. These studies should provide significant insight into the oncogenic roles of CDC25A, which is now regarded as a therapeutic target.
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