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Death Receptor-Induced Apoptosis of B-Cell Malignancies

Death Receptor-Induced Apoptosis of B-Cell Malignancies
死亡受体诱导的 B 细胞恶性肿瘤细胞凋亡
批准号:
6771809
负责人:
ATUL BEDI
金额:
$32.74万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2006-06-30

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中文摘要
翻译
基因畸变导致细胞无法执行DNA损伤诱导的凋亡,如p53的缺失或Bcl-2的过度表达,有助于b细胞恶性肿瘤对基因毒性抗癌药物的新生或获得性耐药性。本提案的总体目标是确定针对B细胞恶性肿瘤的治疗策略,这些策略基于B细胞存活的分子决定因素的调节。肿瘤细胞的死亡可能是由抗体介导的特异性b细胞分子[b细胞受体/表面免疫球蛋白(BCR/sIg)或CD20]或特异性死亡受体(TRAIL- r1 /R2)与TRAIL/Apo2L(肿瘤坏死因子相关的凋亡诱导配体)的结合引发的。由于死亡受体和DNA损伤诱导独立的信号通路在线粒体水平汇聚形成凋亡细胞,死亡受体转导的信号可能提供消除p53缺陷或bcl -2过表达的b细胞肿瘤的潜在机制。然而,死亡受体诱导的信号可能被核因子κ B (NF-kB)抵消,NF-kB是B细胞肿瘤中由共刺激相互作用、病毒蛋白或遗传畸变激活的转录因子家族。要验证的中心假设是,b细胞肿瘤可以通过配体/抗体介导的死亡受体激活与抑制NF-kB的药物联合消除。具体目标是:1。明确Bcl-2过表达或p53缺陷的B细胞或B细胞肿瘤的抗ig、抗cd20 -或TRAIL/ apo2l介导的凋亡的分子机制和决定因素。2. 确定NF-kB在保护B细胞肿瘤免受死亡受体诱导的凋亡中的作用:a.确定共刺激信号(CD40/CD40L和TACI/BLyS)激活NF-kB的分子机制,并确定特异性NF-kB依赖蛋白在保护B细胞肿瘤免受死亡受体诱导的凋亡中的作用。b.研究靶向IKK复合物的药物抑制NF-kB是否能增强抗ig -、抗cd20 -或TRAIL/ apo2l诱导的b细胞恶性肿瘤的凋亡。提出的研究可以为设计死亡受体结合抗体/配体和NF-kB抑制剂的潜在协同组合方案提供基础,用于治疗抵抗常规化疗或放疗的b细胞恶性肿瘤。
英文摘要
Genetic aberrations that render cells incapable of executing DNA damage-induced apoptosis, such as loss of p53 or overexpression of Bcl-2, contribute to the de novo or acquired resistance of B-cell malignancies to genotoxic anticancer agents. The overall objective of this proposal is to identify therapeutic strategies against B-cell malignancies that are based on modulation of the molecular determinants of B cell survival. Tumor cell death may be triggered by antibody-mediated engagement of specific B-cell molecules [B-cell receptor/surface immunoglobulin (BCR/sIg) or CD20] or ligation of specific death receptors (TRAIL-R1/R2) with TRAIL/Apo2L (tumor necrosis factor- related apoptosis-inducing ligand). Since death receptors and DNA damage induce independent signaling pathways that converge at the level of the mitochondria to form the apoptosome, death- receptor-transduced signals may offer a potential mechanism of eliminating p53-deficient or Bcl-2-overexpressing B-cell tumors. However, death receptor-induced signals may be counteracted by nuclear factor-kappa B (NF-kB), a family of transcription factors that is activated by costimulatory interactions, viral proteins, or genetic aberrations in B-cell tumors. The central hypothesis to be tested is that B-cell tumors can be eliminated via ligand/antibody-mediated activation of death receptors in combination with agents that inhibit NF-kB. The specific aims are: 1. Define the molecular mechanisms and determinants of anti-Ig, anti-CD20-, or TRAIL/Apo2L-mediated apoptosis of Bcl-2- overexpressing or p53-deficient B cells or B-cell tumors. 2. Define the role of NF-kB in protection of B-cell tumors from death receptor-induced apoptosis: a. Identify the molecular mechanism(s) by which costimulatory signals (CD40/CD40L and TACI/BLyS) activate NF-kB and define the role of specific NF-kB-dependent proteins in protection of B cell tumors from death receptor-induced apoptosis. b. Investigate whether inhibition of NF-kB with agents that target the Ikappa B kinase (IKK) complex can augment anti-Ig-, anti-CD20-, or TRAIL/Apo2L-induced apoptosis of B-cell malignancies. The proposed studies could provide a foundation for the design of potentially synergistic combinatorial regimens of death receptor- binding antibodies/ligands and NF-kB inhibitors for treatment of B-cell malignancies that resist conventional chemotherapy or irradiation.
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海外基金