课题基金 / 基金详情

Versatile model for conditional prostate gene expression

Versatile model for conditional prostate gene expression
条件性前列腺基因表达的多功能模型
批准号:
6881247
负责人:
CHARLES J. BIEBERICH
金额:
$13.76万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-04-02 至 2007-03-31

项目摘要

项目成果

CHARLES J. BIEBERICH的其他基金

相关文献

中文摘要
翻译
描述(由申请人提供):越来越多的证据表明,在前列腺疾病的病因学中,生长因子和激素或其受体的表达和功能发生了改变。适当的动物模型的可用性将极大地促进确定在人类前列腺疾病中观察到的基因表达的哪些变化与疾病的发生和进展相关的努力。目前唯一可行和实用的哺乳动物系统是小鼠,以检查特定基因中功能突变的获得和丧失的影响。允许在小鼠基因组中添加或删除基因的系统的技术复杂性已经发展到现在可以产生几乎任何可以想象的遗传改变的程度,从点突变到大规模缺失。使用噬菌体P1 Cre-lox重组系统,这些变化可以以组织特异性方式赋予,只要已经定义了能够在适当组织中指导Cre重组酶表达的顺式作用元件。因此,在前列腺上皮细胞中表达组成型活性和诱导型Cre的转基因小鼠品系的开发和验证是高度优先的。以前列腺限制性方式表达Cre的现有小鼠品系在大多数腔上皮细胞中产生功能性Cre。尽管这些小鼠允许前列腺限制基因操作,但在这些小鼠中发生的高频率重组事件不允许模拟与可能发生在人前列腺组织中的那些类似的局部遗传变化。这里提出的工作的目的是开发可重复地表达Cre重组酶的前列腺上皮细胞的百分比,从几个细胞到几乎所有的转基因小鼠品系。我们建议生成表达Cre的天然形式或可以随意激活的诱导形式的小鼠品系。这一目标将通过产生在nkx-3.1顺式调节区控制下携带Cre基因的转基因小鼠品系来实现。将通过将nkx-3.1/cre转基因小鼠与报告基因小鼠品系交配来验证Cre的功能,其中β-半乳糖苷酶基因的激活依赖于Cre切除。我们建议产生的转基因小鼠将是非常有用的,以研究任何基因的缺失或激活在前列腺疾病的发展或进展的影响。有了人类基因组的完整序列在手,我们准备开始系统的分子解剖前列腺疾病的病因。我们在转基因小鼠中以组织特异性方式测试基因功能的能力将是这一过程的关键组成部分。
英文摘要
DESCRIPTION (provided by applicant): An increasing body of evidence points to alterations in the expression and function of growth factors and hormones or their receptors in the etiology of prostate disease. The availability of appropriate animal models would greatly facilitate 'efforts to determine which changes in gene expression observed in human prostate disease are relevant to disease initiation and progression. The only mammalian system where it is currently feasible and practical to examine the effects of both gain and loss of function mutations in specific genes is the mouse. The technical sophistication of the systems that permit the addition or deletion of genes to the mouse genome have progressed to the point where it is now possible to generate nearly any genetic alteration that can be envisioned, from point mutation to large-scale deletion. Using the bacteriophage P 1 Cre-lox recombination system, these changes can be imparted in a tissue-specific manner, provided that cis-acting elements capable of directing Cre recombinase expression in the appropriate tissue have been defined. The development and validation of transgenic mouse strains that express constitutively active and inducible forms of Cre in prostate epithelial cells is therefore a high priority. Existing strains of mice that express Cre in a prostate restricted manner produce functional Cre in the majority of luminal epithelial cells. Although these mice allow for prostate restricted manipulation of genes, the high frequency of recombination events that occur in these mice do not permit modeling of focal genetic changes similar to those that are likely to occur in human prostate tissue. The objective of the work proposed here is to develop strains of transgenic mice that reproducibly express the Cre recombinase in a percentage of prostate epithelial cells that varies from a few cells to nearly all. We propose to generate strains of mice that express either the natural form of Cre or an inducible form that can be activated at will. This goal will be achieved by generating strains of transgenic mice carrying Cre genes under the control of nkx-3.1 cis-regulatory regions. The function of Cre will be validated by mating the nkx-3.1/cre transgenic mice to a reporter strain of mice in which activation of a Beta-galactosidase gene is dependent on Cre excision. The transgenic mice we propose to generate will be extremely useful to study the effects of deletion or activation of any gene in the development or progression of prostate disease. With a complete sequence of the human genome in hand, we are poised to begin a systematic molecular dissection of prostate disease etiology. Our ability to test gene function in a tissue-specific manner in transgenic mice will be a critical component of that process.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Combined MYC Activation and Pten Loss Are Sufficient to Create Genomic Instability and Lethal Metastatic Prostate Cancer.
MYC 激活和 Pten 丢失相结合足以造成基因组不稳定和致命的转移性前列腺癌。
DOI: 10.1158/0008-5472.can-14-3280
发表时间: 2016-01-15
期刊: Cancer research
影响因子: 11.2
作者: [Hubbard GK, Mutton LN, Khalili M, McMullin RP, Hicks JL, Bianchi-Frias D, Horn LA, Kulac I, Moubarek MS, Nelson PS, Yegnasubramanian S, De Marzo AM, Bieberich CJ]
通讯作者: Bieberich CJ
Heteroduplex thermostable ligation assembly: a new platform to rapidly generate large DNA molecules
  • 批准号:
    10383266
  • 项目类别:
  • 资助金额:
    $25.66万
  • 财政年份:
    2021
  • 负责人:
    CHARLES J. BIEBERICH
  • 依托单位:
Developing a strategy to identify & validate pharmacodynamic kinase inhibitor biomarkers
Role of TRPA1 & TRPV1 in pain and voiding symptoms in a new mouse CP/CPPS model
Application of an Innovative Technology to Develop Low Toxicity Kinase Inhibitors