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NPM-ALK and ALK in Lymphoma and Normal Development

NPM-ALK and ALK in Lymphoma and Normal Development
NPM-ALK 和 ALK 在淋巴瘤和正常发育中的作用
批准号:
6607490
负责人:
STEPHAN W MORRIS
金额:
$32.68万
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-04-01 至 2007-06-30

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项目成果

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中文摘要
翻译
间变性淋巴瘤(ALK)受体酪氨酸激酶(RTK)在非霍奇金淋巴瘤(NHL)和被称为炎性肌纤维母细胞瘤(IMT)的肉瘤中通过染色体重排而改变,从而产生具有结构性活性的ALK融合蛋白。ALK融合基因的表达与NHL或IMT的发生有直接的因果关系。相反,抑制ALK活性可以在实验上逆转恶性表型。ALK的正常功能尚不完全清楚,ALK基因敲除小鼠没有表现出大体或组织病理异常。对ALK信号转导的研究已经确定了几种先前已知的在介导ALK信号转导中起重要作用的底物,但该激酶所需的正常或致癌信号转导所需底物的完整谱尚不清楚。鉴于ALK作为定向治疗靶点的良好有效性,本提案的目标1a试图开发与ATP竞争的ALK小分子抑制剂,并在临床前肿瘤模型中确定它们的特异性、毒性和有效性。为了指导ALK抑制剂的合理、基于结构的设计,目标1b中的研究将确定非活性和三磷酸化的、完全活性的ALK KD的X射线晶体结构,以及与所选抑制剂共结晶的ALK KD的结构。被称为白细胞酪氨酸激酶(LTK)的RTK与ALK有显著的同源性和部分重叠的表达模式,提示可能存在功能冗余。为了更好地了解这些激酶在生长和发育中的作用,并评估它们同时被抑制的后果(即使使用高度特异的ATP竞争性ALK抑制剂,也可能在药理学上发生这种情况),将产生同时缺乏ALK和Ltd K的小鼠,并在AIM 1c中确定其特征。最近的ALK信号研究发现了一种新的底物,ALK相互作用核蛋白3(ANP-3),它具有改变细胞凋亡和细胞周期传递,特别是有丝分裂进入和退出的能力。Aim 2a的研究将试图确定ANP-3在正常调控细胞死亡和细胞周期中的确切作用,特别是在M期转移方面,并了解ANP-3通过致癌ALK融合来解除调控的机制和后果。最后,在Aim 2b中,将评估体内ANP-3失活对胚胎发育、细胞周期完整性和细胞凋亡控制的表型影响。这些研究将提高对ALK正常功能和ALK融合蛋白在恶性肿瘤中所用机制的基本了解,同时还将识别小分子ALK抑制剂,作为基础研究工具,并最终可能用于治疗应用。
英文摘要
The anaplastic lymphoma kinase (ALK) receptor tyrosine kinase (RTK) is altered by chromosomal rearrangements in non- Hodgkin's lymphoma (NHL) and the sarcoma known as inflammatory myofibroblastic tumor (IMT) to produce constitutively active ALK fusion proteins. A direct causal relationship exists between the expression of ALK fusions and the genesis of NHL or IMT. Conversely, inhibition of ALK activity reverses the malignant phenotype experimentally. The normal functions of ALK are incompletely known, and Alk knockout mice exhibit no gross or histopathologic abnormalities. Studies of ALK signal transduction have identified several previously known kinase substrates as important in mediating ALK signaling, but the complete spectrum of substrates required for normal or oncogenic signaling by the kinase is not yet clear. Given the excellent validation of ALK as a target for directed therapies, Aim 1a of this proposal seeks to develop ATP-competitive small molecule inhibitors of ALK and to determine their specificity, toxicity and efficacy in preclinical tumor models. To provide guidance for the rational, structure-based design of ALK inhibitors, the studies in Aim 1b will determine the X-ray crystallographic structure of the apo, inactive and tris-phosphorylated, fully active ALK KD, as well as the structure of the ALK KD co- crystallized with selected inhibitors. The RTK known as leukocyte tyrosine kinase (LTK) and ALK share remarkable homology and a partially overlapping expression pattern, suggesting possible functional redundancy. To better understand the function of these kinases in growth and development and assess the consequences of their simultaneous inhibition (as may occur pharmacologically even with highly specific ATP-competitive ALK inhibitors), mice that lack both Alk and Ltk will be generated and characterized in Aim 1c. Recent ALK signaling studies have identified a novel substrate, ALK-interacting nuclear protein 3 (ANP-3), that possesses the ability to alter both apoptosis and cell cycle transit, especially mitotic entry and exit. The studies in Aim 2a will seek to determine the exact role of ANP-3 in the normal regulation of apoptotic death and the cell cycle, focusing especially on M-phase transit, and to understand the mechanism and consequences of ANP-3 deregulation by oncogenic ALK fusions. Finally, in Aim 2b, the phenotypic effects of Anp-3 inactivation in vivo on embryonic development, cell cycle integrity and apoptosis control will be assessed. These studies will improve basic understanding of normal ALK functions and the mechanisms employed by ALK fusion proteins in malignancy, while also identifying small molecule ALK inhibitors for use as basic research tools and ultimately perhaps for therapeutic applications.
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