Control of lung cancer invasion and metastasis by vimentin
Control of lung cancer invasion and metastasis by vimentin
批准号:
8815268
负责人:
Adam I. Marcus
金额:
$32.16万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-03-01 至 2016-05-31
关键词:
AccountingAddressBiologyCancer PatientCancer cell lineCell Motility PathwayCell PolarityCellular biologyCessation of lifeClinicalComplexDataData SetDiseaseFeedbackFibronectinsGuanineGuanine Nucleotide Exchange FactorsGuanosine TriphosphateHealthHumanIn VitroIntegrinsIntermediate Filament ProteinsLinkMalignant - descriptorMalignant NeoplasmsMalignant neoplasm of lungModelingMolecularMolecular BiologyMutateMutationNeoplasm MetastasisNon-Small-Cell Lung CarcinomaPathway interactionsPatientsPhenotypePhosphorylationProteomicsPublishingRegulationReportingRoleSTK11 geneSignal TransductionSurvival RateTestingTissuesTranslatingTumor Suppressor ProteinsUnited StatesVAV2 geneVimentinXenograft Modelbasecdc42 GTP-Binding Proteincell motilityin vivoinnovationmalignant phenotypemouse modelmutantoutcome forecastoverexpressionprogramsresearch studyscaffoldtranslational approachtumor
中文摘要
描述(申请人提供):肺癌是世界上最致命的恶性肿瘤,每年在美国导致超过15万人死亡。尤其是非小细胞肺癌(NSCLC),占所有肺癌的近80%,其5年生存率仅为15%-25%。大量报告表明,中间丝蛋白波形蛋白在人类侵袭性肿瘤中过度表达,但在非侵袭性、静止性肿瘤中几乎检测不到。在非小细胞肺癌中,波形蛋白的表达与生存不良、转移性疾病增加和分化不良有关。然而,波形蛋白在非小细胞肺癌中的作用机制尚不清楚。在此,我们发现STRAD1-LKB1肺癌抑癌通路在30%的非小细胞肺癌患者中发生突变,是非小细胞肺癌中第三大突变通路,在肺癌运动过程中调节波形蛋白的功能。因此,我们将波形蛋白与一个强大的非小细胞肺癌肿瘤抑制通路联系起来。我们将检验这一中心假设,即在肺癌侵袭过程中,波形蛋白由STRAD1-LKB1监督,并参与维持方向性持久性的正反馈循环。我们的目标是确定STRAD1-LKB1如何监督波形蛋白的功能,波形蛋白如何继续调节非小细胞肺癌的运动性,以及波形蛋白表达在非小细胞肺癌患者中的分子和临床后果。重要的是,我们已经发表了STRAD1-LKB1与典型的细胞极性和运动蛋白CDC42-PAK1相互作用。我们根据这些数据来确定STRAD1-LKB1是否通过CDC42-PAK1调节波形蛋白。此外,我们认为Vimentin然后通过一个包含CDC42和CDC42鸟嘌呤交换因子VAV2的正反馈环来调节NSCLC的方向性持久性。我们采取创新和全面的机制方法,结合最先进的细胞和分子生物学、体内异种移植模型和基于患者组织的方法来完全翻译这些发现。通过了解STRAD1-LKB1如何调控Vimentin以及Vimentin表达如何促进NSCLC转移,我们可以影响我们对LKB1突变(约50,000名患者)和Vimentin过表达的NSCLC患者生物学的理解。因此,这一建议可以为非小细胞肺癌中波形蛋白的功能提供一个新的范例,并使波形蛋白在肺癌转移侵袭的调控中发挥重要作用。
英文摘要
DESCRIPTION (provided by applicant): Lung cancer is the most lethal malignant cancer worldwide and results in over 150,000 deaths per year in the United States. In particular, non-small cell lung cancer (NSCLC), which accounts for nearly 80% of all lung cancers, has a 5-year survival rate ranging from only 15-25%. Numerous reports show that the intermediate filament protein vimentin is overexpressed in invasive human tumors but is nearly undetectable in non- invasive, stationary tumors. In NSCLC, vimentin expression correlates with poor survival, increased metastatic disease, and poor differentiation. Nevertheless, the mechanistic role of vimentin in NSCLC is unexplored. Here we show that the STRAD1-LKB1 lung cancer tumor suppressor pathway, which is mutated in 30% of NSCLC patients and is the 3rd highest mutated pathway in NSCLC, regulates vimentin function during lung cancer motility. Thus, we link vimentin to a robust NSCLC tumor suppressor pathway. We will test the central hypothesis that during lung cancer invasion, vimentin is overseen by STRAD1-LKB1 and participates in a positive feedback loop that maintains directionality persistence. Our objectives are to determine how STRAD1-LKB1 oversees vimentin function, how vimentin goes on to regulate NSCLC motility, and the molecular and clinical consequences of vimentin expression in NSCLC patients. Importantly, we have published that STRAD1-LKB1 interact with the canonical cell polarity and motility proteins cdc42-PAK1. We build upon this data to determine whether STRAD1-LKB1 regulate vimentin through cdc42-PAK1. Moreover, we propose that vimentin then goes on to regulate NSCLC directionality persistence through a positive feedback loop containing cdc42, and the cdc42 guanine exchange factor (GEF) VAV2. We take an innovative and comprehensive mechanistic approach by combining state-of-the-art cell and molecular biology, in vivo xenograft models, and patient tissue-based approaches to fully translate these findings. By understanding how STRAD1-LKB1 regulates vimentin and how vimentin expression contributes to NSCLC metastasis, we can impact our understanding of the biology of LKB1 mutant (~50,000 patients) and vimentin overexpressing NSCLC patients. Thus, this proposal can develop a new paradigm for vimentin function in NSCLC and present vimentin as a major player in the regulation of lung cancer metastatic invasion.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
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