"BCR/ABL-PI-3k-ROS pathway induce genomic instability ...."
"BCR/ABL-PI-3k-ROS pathway induce genomic instability ...."
批准号:
8463470
负责人:
TOMASZ SKORSKI
金额:
$28.95万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-07-01 至 2015-05-31
关键词:
1-Phosphatidylinositol 3-KinaseAcute Lymphocytic LeukemiaAmino Acid SubstitutionApoptosisAppearanceBenignBiologicalBiological AssayBlast PhaseCell ProliferationCellsChromosomal translocationChromosome abnormalityChronic Myeloid LeukemiaChronic PhaseChronic-Phase Myeloid LeukemiaComplementary DNAComplexDNA RepairDevelopmentDiseaseDisease ProgressionDominant-Negative MutationDrug resistanceExtracellular MatrixFigs - dietaryGenerationsGeneticGenomic InstabilityGrowth FactorHematopoieticHematopoietic stem cellsImatinibImatinib mesylateIn VitroKnockout MiceLaboratoriesMalignant - descriptorMediatingMitochondriaMolecularMutationMyelogenousNADPH OxidaseOncogenesOncogenicPathway interactionsPatientsPerifosinePhosphatidylinositolsPhosphotransferasesPlayPoint MutationPopulationPreventionProductionProtein Tyrosine KinaseProtein-Serine-Threonine KinasesProteinsReactive Oxygen SpeciesReportingResistanceResistance developmentRespiratory ChainRoleSignal PathwaySmall Interfering RNASourceStem cellsTherapeutic EffectTyrosine Kinase InhibitorWorkbcr-abl Fusion Proteinscohortgranulocyteimprovedinhibitor/antagonistleukemialeukemic stem cellleukemogenesismacrophagemouse modelmutantnovel strategiesoxidative DNA damagepreventprogenitorrac GTP-Binding Proteinsresearch studysmall moleculestem
中文摘要
点击翻译按钮获取中文摘要
英文摘要
Chromosomal translocation t(9;22) is responsible for appearance of an oncogene encoding BCR/ABL fusion
tyrosine kinase, which induce chronic myelogenous leukemia (CML) and a cohort of acute lymphocytic
leukemia (ALL). CML usually starts as a relatively benign chronic phase (CML-CP), which progresses to an
aggressive disease - blast crisis (CML-BC). Malignant transformation of the disease is associated with
accumulation of additional genetic errors.
Imatinib mesylate (IM), a small molecule inhibitor of BCR/ABL kinase, revolutionized the treatment of
CML-CP. Unfortunately patients may develop resistance to the drug caused by point mutations encoding
amino acid substitutions in the BCR/ABL kinase domain.
In conclusion, CML cells display genomic instability leading to resistance to IM and malignant
progression of the disease. This proposal is focused on determination the mechanisms responsible for these
phenomena and subsequently on prevention/inhibition of the development of IM resistance and CML-BC.
BCR/ABL kinase stimulates numerous signaling pathways to induce and maintain transformation of
hematopoietic cells. We, and others found that phosphatidylinositol-3 kinase (PI-3k) play an essential role in
growth factor independent proliferation and protection from apoptosis in CML.
Here we propose to study the role of PI-3k and its downstream effectors Akt and Rac in genomic
instability in CML stem and progenitor cell populations. Using genetic approach (dominant-negative mutants,
siRNA, antisense cDNA, knockout mice) and small molecule inhibitors (for example perifosine, NSC23766) we
will determine how PI-3k and its downstream effectors generate the reactive oxygen species (ROS), which in
turn may cause oxidative DNA damage and facilitate genomic instability. Long-term in vitro culture and mouse
models of CML will be applied here. IM resistance will be detected in clonogenic assays and by sequencing
BCR/ABL kinase domain, and chromosomal aberrations will be detected by SNPs and SKY.
If successfully accomplished, these experiments will determine if PI-3k pathway inhibitors should be
used to improve therapeutic effect of IM and prevent/delay CML progression toward lethal blast crisis.
期刊论文(0)
专著(0)
科研奖励(0)
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海外基金