AUTOCRINE TGF B AND BREAST CANCER CELL GROWTH
AUTOCRINE TGF B AND BREAST CANCER CELL GROWTH
批准号:
2010268
负责人:
MICHAEL G BRATTAIN
金额:
$18.74万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-06-01 至 1998-03-31
关键词:
MCF7 cell autocrine breast neoplasms cell cycle cell growth regulation cholecalciferol enzyme inhibitors estrogen inhibitor estrogen receptors gene targeting genetic promoter element growth factor receptors guanine nucleotide binding protein mammary epithelium methylation neoplasm /cancer genetics nucleic acid methylation protein kinase receptor expression tissue /cell culture transfection transforming growth factors
中文摘要
描述:(申请人的摘要)TGFB II型受体的丧失
TGFRII表达是ER+乳腺癌恶性的重要决定因素
通常表达缺陷水平的受体的癌细胞。 的
申请人已经显示TGFRII在MCF-7细胞中的再表达导致
降低致瘤性。 对维生素D3类似物(VD 3)的反应分离
诱导TGFRII表达和负自分泌生长
控制 VD 3导致p21和p27细胞周期蛋白依赖性水平增加
激酶抑制剂。 阐明TGFRII表达的控制可能
导致增加TGFB负生长调节的关键目标,
VD 3对治疗和/或预防的影响。 第一个目标是
确定VD 3类似物对细胞周期生长阻滞的机制。 的
申请人假设p21和p27是VD 3中的中心元件
生长停滞机制和TGFB活性再生导致
抑制剂表达增加。 缺乏TGFRII的重要性
恶性肿瘤中的表达是理解表观遗传
负责ER+细胞中其抑制的机制是第二种
objective. 申请人假设并提供初步数据,
TGFRII的抑制与ER功能相关,导致DNA
甲基化 第三个目标是确定VD 3类似物如何增加
TGFRII转录。 解决这些问题的具体目标是:
VD 3、TGFRII表达和细胞周期阻滞相互作用是:1)
确定p21和p27 CDK抑制剂在细胞周期阻滞中的作用,
VD 3类似物; 2)确定抗雌激素治疗对TGFRII的影响
3)确定甲基化抑制TGFRII的机制
4)确定VD 3类似物诱导TGFRII的机制
表情
英文摘要
DESCRIPTION: (Applicant's Abstract) The loss of TGFB type II receptor
(TGFRII) expression is an important determinant in malignancy of ER+ breast
cancer cells which generally express deficient levels of receptor. The
applicant has shown re-expression of TGFRII in MCF-7 cells leading to
reduced tumorigenicity. Response to vitamin D3 analogues (VD3) segregates
with inducibility of TGFRII expression and negative autocrine growth
control. VD3 leads to increased levels of p21 and p27 cyclin dependent
kinase inhibitors. Elucidation of the controls of TGFRII expression may
lead to key targets for increasing TGFB negative growth regulation and thus,
VD3 effects on therapy and/or prevention. The first objective is to
determine the mechanism of cell cycle growth arrest by VD3 analogues. The
applicant hypothesizes that p21 and p27 are central elements in the VD3
growth arrest mechanism and that regeneration of TGFB activity leads to
increased inhibitor expression. The importance of the lack of TGFRII
expression in malignancy underlies the need for understanding the epigenetic
mechanisms responsible for its repression in ER+ cells is the second
objective. The applicant hypothesizes and provide preliminary data that
repression of TGFRII is associated with ER function resulting in DNA
methylation. The third objective is to determine how VD3 analogues increase
TGFRII transcription. The specific aims to address these aspects of the
interaction of VD3, expression of TGFRII and cell cycle arrest are to: 1)
determine the role of the p21 and p27 CDK inhibitors in cell cycle arrest by
VD3 analogues; 2) determine the effects of anti-estrogen treatment on TGFRII
expression; 3) determine the mechanism by which methylation represses TGFRII
expression; 4) determine the mechanism by which VD3 analogues induce TGFRII
expression.
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