课题基金 / 基金详情

NITRIC OXIDE AND DROSOPHILA DEVELOPMENT

NITRIC OXIDE AND DROSOPHILA DEVELOPMENT
一氧化氮和果蝇的发育
批准号:
6387943
负责人:
GRIGORI N ENIKOLOPOV
金额:
$33.49万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-08-05 至 2004-05-31

项目摘要

项目成果

GRIGORI N ENIKOLOPOV的其他基金

相似基金

相关文献

中文摘要
翻译
这个项目的总体目标是了解一氧化氮(NO)在生物体发育中的作用。NO是一种可扩散的多功能第二信使,参与动物的多种生理功能。近年来,NO已成为细胞增殖、细胞分化和动物发育的重要因子。我们的研究表明,在生物发育过程中,NO作为一种抗增殖剂,调节细胞增殖和分化之间的平衡,最终控制发育中的果蝇组织和器官的形状和大小。这一提议将检验这一假说,即NO是生物体发育和形态发生过程中细胞增殖和分化的一般调节因子。我们将结合遗传学和分子方法来研究NO的作用机制。我们将搜索DNOS基因座的突变。这种突变将为在DNOS基因中产生特定的遗传损伤和对DNOS的遗传伙伴进行筛查提供一个起点。我们将对分离的参与果蝇发育的一氧化氮合酶基因的分子结构进行表征,并在果蝇基因组中寻找其他一氧化氮合酶基因(S)。我们将阐明能够抑制NOS活性的发育调节亚型的生物学功能,并寻找其他与NOS相互作用的基因。最近,我们已经证明了NO与视网膜母细胞瘤途径相互作用来控制果蝇的眼睛发育,在这里,我们建议研究一氧化氮合酶与细胞周期机制组件之间的遗传和分子相互作用。
英文摘要
The overall goal of this project is to understand the function of nitric oxide (NO) in organism development. NO is a diffusible multifunctional second messenger implicated in numerous physiological functions in animals. Recently NO has emerged as an important factor in cell proliferation, cell differentiation, and animal development. Our studies have shown that NO acts as an antiproliferative agent during organism development, regulating the balance between cell proliferation and differentiation, and, ultimately, controlling the shape and size of tissues and organs in the developing Drosophila. This proposal will test the hypothesis that NO is a general regulator of cell proliferation and differentiation during organism development and morphogenesis. We will combine genetic and molecular approaches to study the mechanisms of NO action. We will search for mutations in the dNOS locus. Such mutations will provide a starting point to develop specific genetic lesions in dNOS gene and to perform screens for genetic partners of dNOS. We will characterize the molecular organization of the isolated NO synthase (NOS) genes involved in Drosophila development, and we will search for other NOS gene(s) in Drosophila genome. We will elucidate the biological functions of the developmentally regulated isoforms which are capable of inhibiting NOS activity, and we will search for other genes that interact with NOS. Recently, we have demonstrated that NO interacts with the retinoblastoma pathway to control eye development in Drosophila, and here we propose to study genetic and molecular interactions between NOS and the components of the cell cycle machinery.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Endogenous barcoding to determine complex dynamics of adult neurogenesis in aging and Alzheimer's disease
Endogenous barcoding to determine complex dynamics of adult neurogenesis in aging and Alzheimer's disease
Endogenous barcoding to determine complex dynamics of adult neurogenesis in aging and Alzheimer's disease
Endogenous barcoding to reveal neural stem cell lineage
海外基金