HTLV-I Tax activates the anaphase promoting complex
HTLV-I Tax activates the anaphase promoting complex
批准号:
7409986
负责人:
CHOU-ZEN GIAM
金额:
$27.65万
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:
2005-06-23 至 2010-04-30
关键词:
AddressAdenovirusesAdultAdult LymphomaAnaphaseAneuploidyAppendixAtypical lymphocyteBindingBiochemicalBiochemical GeneticsBiologic CharacteristicBloodCell CycleCell Cycle ArrestCell Cycle StageCell NucleusCellsCharacteristicsChromosomal InstabilityChromosome abnormalityChromosomesCleaved cellClinicalCodeCommitComplexCyclin ACyclin BCyclin ECyclin-Dependent KinasesCyclinsDNADNA Sequence RearrangementDataDefectDevelopmentDiploidyExhibitsFibroblastsGenesGeneticGenetic TranscriptionGenomeHela CellsHumanHuman PapillomavirusIndividualInfectionLentivirus VectorLife Cycle StagesLinkMalignant NeoplasmsManuscriptsMediatingMetaphaseMitosisMitoticNamesNatureOncogene ProteinsPhasePhenotypePlayPolylobated T-LymphocytePolyubiquitinationProliferatingPropertyResearchRetroviral VectorRodentRoleSaccharomyces cerevisiaeSaccharomycetalesScheduleSpinal Cord DiseasesStagingSuppressor MutationsT-Cell LeukemiaT-LymphocyteTaxesTelefacsimileThinkingTimeToesTrans-ActivatorsTrisomy 3Trisomy 7Tropical Spastic ParaparesisViralViral OncogeneVirusWI 38 cellYeastsadult leukemiaanaphase-promoting complexbasecell growthcell transformationcyclin B1cyclin-dependent kinase inhibitor 1Bexperiencehuman PTTG1 proteininhibitor/antagonistleukemia/lymphomamicronucleusmulticatalytic endopeptidase complexnervous system disordersenescencetax Genesubiquitin-protein ligaseyeast genetics
中文摘要
描述(由申请人提供):HTLV-I感染如何从临床潜伏期进展为成人T细胞白血病/淋巴瘤(ATL)尚不清楚,但涉及独特的病毒反式激活因子/癌蛋白Tax。 与其他白血病细胞不同,ATL细胞通常是非整倍体,具有高度分叶状或卷曲的细胞核,因此被称为“花”细胞。 在HTLV-I感染个体的血涂片中也容易观察到双核或含有分裂/脑形核的非典型淋巴细胞。 这些病理结果表明,有丝分裂畸变伴随HTLV-I病毒复制,并可能在恶性肿瘤的发展中发挥重要作用。 我们已经发现,幼稚细胞(S。酿酒酵母、HeLa和人二倍体成纤维细胞)在S/G2/M进展中变得停滞。 然后,它们经历以严重的染色体非整倍性为特征的错误的有丝分裂,并形成微核、双核和多核细胞。 我们已经进一步表明,税收导致Pds 1 p/securin(后期抑制剂)和Clb 2 p/细胞周期蛋白B在酵母,啮齿动物和人类细胞水平显着降低。 这种Pds 1 p/securin和Clb 2 p/cyclin B1的丢失发生在S/G2期间,并与上述有丝分裂畸变密切相关。 利用S.在酿酒酵母中,我们发现Pds 1 p和Clb 2 p的非程序性降解可以与E3泛素连接酶的异常激活(通过Tax)有关,E3泛素连接酶是Cdc 20相关的后期促进复合物(APC[Cdc 20]),其通过靶向及时的多泛素化和细胞周期蛋白A、securin和细胞周期蛋白B1的破坏来调节中期到后期的转变。 在酵母遗传学的指导下,我们进一步证明了Tax在S期直接结合并激活人APC[Cdc 20],比正常时间表提前。 Tax诱导的细胞周期畸变并不仅仅以有丝分裂异常结束。 我们最近发现,在经历上述有丝分裂危机后,Tax+ HeLa细胞立即永久性地停滞在G1期,并进入衰老样状态,p21[CIP 1/WAF 1]和p27[KIP 1]水平急剧升高。 重要的是,这种衰老表型可以通过APC[Cdc 20]的非程序性激活和Skp 2(最可能是APC介导的)的丧失来解释,Skp 2是SCF[Skp 2]的底物识别亚基,是一种独特的E3泛素连接酶,靶向P21[CIP 1/WAF 1]和p27[KIP 1]降解。有趣的是,在先前Tax初始细胞中检测到的严重有丝分裂危象和衰老在HTLV-I转化的T细胞中没有观察到,其大量产生Tax。 这表明HTLV-I转化的细胞可能具有特定的“抑制”突变,使它们能够逃避Tax诱导的衰老状态。 在本申请中,我们试图进一步研究(1)Tax激活APC[Cdc 20]的机制,(2)Tax诱导的衰老样状态的生物学特征和生化基础,以及(3)HTLV-1转化细胞中的“抑制剂”机制,该机制允许它们逃避Tax诱导的快速衰老。
英文摘要
DESCRIPTION (provided by applicant): How HTLV-I infection progresses from clinical latency to adult T-cell leukemia/lymphoma (ATL) is not well understood but involves the unique viral transactivator/oncoprotein, Tax. Unlike cells of other leukemia, ATL cells are often aneuploid with highly lobulated or convoluted nuclei, earning them the name of "flower" cells. Atypical lymphocytes that are binucleated or contain cleaved/cerebriform nuclei are also readily seen in the blood smears of HTLV-I-infected individuals. These pathological findings suggest that mitotic aberrations accompany HTLV-I viral replication and are likely to play an important role in the development of malignancy. We have discovered that naive cells (S. cerevisiae, HeLa, and human diploid fibroblast) that express Tax for the first time become stalled in S/G2/M progression. They then undergo faulty mitosis characterized by severe chromosome aneuploidy, and formation of micronucleated, binucleated and multinucleated cells. We have shown further that Tax causes a significant reduction in Pds1p/securin (the anaphase inhibitor) and Clb2p/cyclin B levels in yeast, rodent, and human cells. This loss of Pds1p/securin and Clb2p/cyclin B1 occurs during S/G2, and strongly correlates with the aforementioned mitotic aberrations. Taking advantage of the genetics of S. cerevisiae, we have found that the unscheduled degradation of Pds1p and Clb2p can be linked to the aberrant activation (by Tax) of an E3 ubiquitin ligase, the Cdc20-associated anaphase promoting complex (APC[Cdc20]), which regulates metaphase to anaphase transition by targeting the timely polyubiquitination and destruction of cyclin A, securin and cyclin B1. Guided by yeast genetics, we have further demonstrated that Tax directly binds and activates human APC[Cdc20] during S phase, ahead of the normal schedule. The cell cycle aberrations induced by Tax does not end with just mitotic abnormalities. We have discovered recently that immediately after experiencing the mitotic crisis described above, Tax+ HeLa cells become permanently arrested in G1, and enter into a senescence-like state with drastically elevated levels of p21[CIP1/WAF1 and p27[KIP1]. Importantly, this senescence phenotype can be explained by the unscheduled activation of APC[Cdc20] and the loss of Skp2 (most likely APC-mediated), the substrate-recognition subunit of SCF[Skp2], a distinct E3 ubiquitin ligase that targets P21[CIP1/WAF1] and p27[KIP1] degradation. Interestingly, the severe mitotic crisis and senescence detected in previously Tax-naive cells are not seen in HTLV-I transformed T-cells, which produce Tax abundantly. This suggests that HTLV-I transformed cells may harbor specific "suppressor" mutations that allow them to escape the senescence state induced by Tax. In this application, we seek to investigate further (1) the mechanism by which Tax activates APC[Cdc20], (2) the biological characteristics of and biochemical basis for the senescence-like state induced by Tax, and (3) the "suppressor" mechanism(s) in HTLV-I transformed cells that allow them to escape the rapid senescence induced by Tax.
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会议论文
HTLV-1 Replication/Reactivation-Induced DNA Damage: Mechanisms and Pathogenesis
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HTLV-I Tax activates the anaphase promoting complex
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HTLV-I Tax activates the anaphase promoting complex
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HTLV-I Tax activates the anaphase promoting complex
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HTLV-I Tax activates the anaphase promoting complex
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资助金额:$27.65万
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财政年份:2005
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