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KISS1: Defining Mechanisms for Antimetastatic Therapy

KISS1: Defining Mechanisms for Antimetastatic Therapy
KISS1:抗转移治疗的定义机制
批准号:
8545686
负责人:
Danny R. Welch
金额:
$27.56万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2015-05-31

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中文摘要
翻译
描述(由申请人提供):由于大多数癌症死亡和发病率是由于转移,因此当转移被预防或更有效地治疗时,生存和生活质量将得到重大改善。确定KISS1转移抑制因子是否能维持弥散性肿瘤细胞处于非增殖、休眠状态,可能为癌症治疗提供一种新的途径。背景:KISS1的重新表达阻断了黑色素瘤细胞在转移级联过程中完成前几个步骤的同时,定域多个异位部位的能力。KISS1被加工成许多肽,称为kisspeptin。一些kisspeptin结合并刺激g蛋白偶联受体GPR54;然而,转移抑制似乎并不需要肿瘤细胞表达GPR54。假设1:KISS1的再表达将阻止已建立的(微)转移瘤的进一步生长。特异性目的1:利用tet诱导表达载体在表达gfp的黑色素瘤细胞中播种肺,当肺灶大小不同时,KISS1的表达会被诱导或关闭。进一步的生长、退化或诱导休眠将通过荧光显微镜进行评估。意义:如果KISS1能够阻止进展或逆转已建立的转移,其治疗人类癌症的效用将显著增加。假设2:选择性kisspeptin抑制转移。特异性目的2:初步数据显示KISS1 -> kisspeptin加工发生在细胞外,但尚未确定哪种kisspeptin抑制转移。使用位点定向诱变,在KISS1中破坏kisspeptin加工位点(R-R或R-K)和加工突变体的异位表达,然后通过GPR54评估kisspeptin诱导的信号传导和转移潜力。意义:确定哪些kisspeptin负责转移抑制将是未来激动剂开发的重点。假设3:KISS1通过基质细胞旁分泌信号抑制转移。特异性目的3:初步数据显示,被KISS1再表达抑制的肿瘤细胞不表达GPR54,提示肿瘤细胞产生KISS1是通过中间细胞(即旁分泌细胞)起作用的。最初的工作假设是基质成纤维细胞是中间细胞,因为它们在体外表达GPR54。使用RTQ和IHC,我们将确定哪些基质细胞原位表达GPR54。将亲本细胞和表达KISS1的细胞与来自不同组织的成纤维细胞进行2D和3D共培养,将评估组织基质对KISS1的差异反应是否向肿瘤细胞返回促进或抑制生长的信号。意义:这些实验最终测试了KISS1在抑制转移方面的实际靶点。在临床上的应用将取决于是针对肿瘤细胞还是正常细胞。来自拟议实验的数据将确定特异性kisspeptin的分子和细胞靶标以及抑制转移所需的暴露时间。如果KISS1要发展成为一种抗转移疗法,这些数据将是至关重要的。
英文摘要
DESCRIPTION (provided by applicant): Since the majority of cancer deaths and morbidity are due to metastases, major improvements in survival and quality of life will occur when metastasis are prevented or more effectively treated. Determining whether the KISS1 metastasis suppressor can maintain disseminated tumor cells in a non- proliferating, dormant state may provide a novel approach to cancer therapy. BACKGROUND: Re-expression of KISS1 blocks the ability of melanoma cells to colonize multiple ectopic sites while still completing antecedent steps of the metastatic cascade. KISS1 is processed into numerous peptides, termed kisspeptins. Some kisspeptins bind to and stimulate a G-protein coupled receptor, GPR54; however, metastasis suppression does not appear to require tumor cell GPR54 expression. HYPOTHESIS #1: KISS1 re- expression will halt further growth of established (micro)metastases. Specific Aim 1: Using Tet-inducible expression vectors in GFP-expressing melanoma cells seeding lung, KISS1 expression will be induced or turned off when lung foci are different sizes. Further growth, regression or induced dormancy will be assessed by fluorescence microscopy. Implications: If KISS1 could halt progression or reverse established metastases, its utility for treatment of human cancer would increase significantly. HYPOTHESIS #2: Selected kisspeptins are responsible for metastasis suppression. Specific Aim 2: Preliminary data show that KISS1 -> kisspeptins processing occurs outside the cell, but which kisspeptin(s) suppresses metastasis has not been determined. Using site-directed mutagenesis, disruption of KISS1->kisspeptin processing sites (R-R or R-K) in KISS1 and ectopic expression of the processing mutants will be done followed by assessment of kisspeptin-induced signaling thru GPR54 and metastatic potential. Implications: Identifying which kisspeptin(s) are responsible for metastasis suppression will focus future agonist development. HYPOTHESIS #3: KISS1 suppresses metastasis via paracrine signaling with stromal cells. Specific Aim 3: Preliminary data show that tumor cells suppressed by re-expression of KISS1 do not express GPR54, suggesting that KISS1 production by tumor cells acts via intermediary cells (i.e., paracrine). The initial working hypothesis is that stromal fibroblasts are the intermediary cell because they express GPR54 in vitro. Using RTQ and IHC, we will determine which stromal cells express GPR54 in situ. 2D and 3D co-culture of parental and KISS1-expressing cells with fibro- blasts from different tissues will assess whether differential response of tissue stroma to KISS1 returns growth promoting or growth inhibitory signals to tumor cells. Implications: These experiments ultimately test what the actual target of KISS1 is with regard to metastasis suppression. Utilization in the clinic will vary depending upon whether one is targeting tumor cells or normal cells. Data from the proposed experiments will determine the molecular and cellular target(s) of specific kisspeptin(s) and aspects of the timing of exposure required to suppress metastasis. Those data will be crucial if KISS1 is to be developed as an anti-metastatic therapy.
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Cancer Research Training & Education Coordination CRTEC
Cancer Research Training & Education Coordination CRTEC
KISS1: Defining Mechanisms for Antimetastatic Therapy
KISS1: Defining Mechanisms for Antimetastatic Therapy
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