Signaling Pathways that Determine Ewings Sarcoma Outcome
Signaling Pathways that Determine Ewings Sarcoma Outcome
批准号:
7059405
负责人:
JEFFREY A TORETSKY
金额:
$23.06万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-02-13 至 2009-04-30
关键词:
Ewing&aposs tumorathymic mousebiological signal transductioncell linecell motilityclinical researchenzyme substrategene expressiongrowth factor receptorshuman subjectinsulinlike growth factormetastasismicroarray technologymolecular oncologyneoplasm /cancer geneticsneoplastic growthoncoproteinsprotein structure functionprotein tyrosine phosphatasetranscription factortransfection /expression vectorxenotransplantation
中文摘要
描述(申请人提供):尤文氏肉瘤肿瘤家族(ESFTS)包含一种特征性易位,它将22号染色体上的EWS基因与位于11号染色体t(11;22)上的ETS家族基因FLI1连接起来。这一新的转录本被翻译成EWS/FLI1融合蛋白,其功能是一种致癌转录因子。ESFT转化的另一个关键组成部分是胰岛素样生长因子(IGF)信号系统。I型胰岛素样生长因子受体(IGF-IR)是EWS/FLI1转化成纤维细胞所必需的。胰岛素受体底物-1(IRS-1)是IGF-IR的关键底物,受酪氨酸磷酸化和去磷酸化的调节。EWS/FLI1转化与IRS-1酪氨酸磷酸化的基础减少有关;到目前为止,负责这一过程的磷酸酶还没有被发现。我们已经确定了一个蛋白酪氨酸磷酸酶(PTP)PTPL1(又名PTP-BAS,人PTP1E,PTPN13,后来的FAP-1),我们认为它可能负责EWS/FLI1和IGF-IR信号之间的联系。因此,我们假设EWS/FLI1融合蛋白通过诱导PTPL1的表达而发挥癌基因的作用。我们进一步假设,PTPL1促使ESFT中的信号平衡有利于肿瘤细胞的存活和转化。除了IGF-IR外,PTPL1还被报道调节其他关键的ESFT信号通路,包括Fas和p75NTR。我们的具体目标将:(I)通过评估PTPL1水平降低的ESFT克隆的生长、存活和肿瘤形成,确定PTPL1如何促进ESFT恶性表型,(Ii)确定相关的PTPL1临床途径,以及ESFT患者肿瘤中的PTPL1通路信号是否影响临床治疗反应和总体生存(训练集,n=100,验证集n>;100),以及(Iii)在ESFT细胞模型中建立EWS/FLI1调节PTPL1的性质。我们热衷于研究磷酸酶PTPL1如何调节ESFT生物学,作为我们目前IGF-I研究的逻辑扩展。我们在初步数据中描述的一个更重要的发现是,PTPL1的减少严重减少了软琼脂中ESFT克隆的形成。PTPL1是一种新的IGF-IR和Fas信号通路的调节因子。显然,如果PTPL1被证实是一种支持性癌蛋白,并且PTPL1调控的通路被确定,那么包括乳腺癌在内的许多其他依赖IGF-IR信号的肿瘤患者可能会从我们的发现中受益。
英文摘要
DESCRIPTION (provided by applicant): The Ewing's sarcoma family of tumors (ESFTs) contains a characteristic translocation that joins the EWS gene on chromosome 22 to an ets family gene, FLI1, located on chromosome 11, t(11;22). This novel transcript is translated to become the EWS/FLI1 fusion protein, which functions as an oncogenic transcription factor. Another key component of transformation in ESFT is the insulin-like growth factor (IGF) signaling system. The IGF type I receptor (IGF-IR) is required for EWS/FLI1 transformation of fibroblasts. Insulin-Receptor Substrate-1 (IRS-1), the key substrate of IGF-IR is regulated by tyrosine phosphorylation and dephosphorylation. EWS/FLI1 transformation is associated with a basal reduction in tyrosine phosphorylation of IRS-1; until now, the phosphatase responsible for this has eluded discovery. We have identified a protein tyrosine phosphatase (PTP) PTPL1 (aka, PTP-BAS, human PTP1E, PTPN13, and later FAP-1) that we believe could be responsible for the connection between EWS/FLI1 and IGF-IR signaling. We therefore hypothesize that the EWS/FLI1 fusion protein functions as an oncogene by inducing PTPL1 expression. We further hypothesize that PTPL1 tips the balance of signaling in ESFT to favor tumor cell survival and transformation. In addition to IGF-IR, PTPL1 has been reported to modulate other key ESFT signaling pathways including Fas and p75NTR. Our specific aims will (i) identify how PTPL1 contributes to the ESFT malignant phenotype by evaluating growth, survival and tumorigenesis in ESFT clones with reduced PTPL1 levels, (ii) determine relevant PTPL1 clinical pathways and if PTPL1 pathway signatures in ESFT patient tumors affects clinical response to therapy and overall survival (training set, n=100, validation set n>100), and (iii) establish the nature of PTPL1 regulation by EWS/FLI1 in ESFT cell models. We are enthusiastically pursuing how the phosphatase PTPL1 regulates ESFT biology as the logical extension of our current IGF-I studies. One of the more important findings we describe in our Preliminary Data is that reduction of PTPL1 severely reduces ESFT colony formation in soft-agar. PTPL1 is a novel regulator of IGF-IR and Fas pathways. Clearly, if PTPL1 is validated as a supportive oncoprotein and the pathways modulated by PTPL1 are identified, patients with many other tumors that rely on IGF-IR signaling including breast carcinoma could benefit from our findings.
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