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PXR: Regulation and Pharmacogenomics

PXR: Regulation and Pharmacogenomics
PXR:监管和药物基因组学
批准号:
6879186
负责人:
ERIN G SCHUETZ
金额:
$29.41万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-03-01 至 2008-03-31

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中文摘要
翻译
描述(由申请人提供):配体激活PXR诱导药物解毒基因引起的药物不良相互作用是导致药物疗效下降的重要临床问题。尽管我们有能力使用快速体外筛选来识别激活PXR的化合物,但仍然没有办法预测药物在个体患者中的相互作用程度。我们认为,人类PXR表达的差异导致了CYP3A诱导的个体间差异。此外,PXR诱导的药物解毒基因越来越多,进一步证明了确定PXR表达变量的原因的必要性。我们之前的研究表明,PXR编码区的序列变异(snp,单核苷酸多态性)对人类PXR表达的变异或CYP3A靶基因诱导的人类变异没有显著影响。我们目前的研究旨在进一步阐明调控PXR表达的细胞和分子机制。我们之前的研究表明,PXR有多种异构体,它们的氨基端和配体结合域不同。我们目前在Aim 1的研究旨在发现具有不同氨基末端和不同配体结合域的PXR在人体组织中的表达程度,以及这些PXR剪接变体是否改变了功能。我们假设这些变体PXRs微调PXR激活,产生额外的调控层,并最终影响CYP3A诱导表型。为了了解调节PXR表达的因子,Aims 2和4将确定肝脏富集转录因子在调节人PXR转录和PXR在人肝脏中的表达中的作用。为了可视化PXR在小鼠组织中的转录活性,在Aim 3中,我们将开发一种带有PXR启动子驱动荧光素酶报告基因的转基因小鼠。通过小鼠皮肤的生物发光成像将实时监测PXR在最具信息量的生物条件下的转录。在活的完整动物体内。这种独特而强大的全身成像方法将使我们能够在不同的生理和药物处理环境下可视化多种组织中的PXR转录。总的来说,该提案描述了一套全面的实验,以确定如何调节PXR。
英文摘要
DESCRIPTION (provided by applicant): Adverse drug interactions secondary to induction of drug detoxification genes by ligand activated PXR is an important clinical problem leading to decreased drug efficacy. Despite our ability to use rapid in vitro screens to identify compounds that activate PXR, there is still no way to predict the extent of drug interaction in individual patients. We believe that human variation in PXR expression contributes to the interindividual differences in induction of CYP3A. Moreover, the growing list of drug detoxification genes induced by PXR further justifies the need to determine what is responsible for variable PXR expression. Our prior studies have revealed that sequence variation (SNPs, single nucleotide polymorphisms) in the PXR coding region is not significantly contributing to human variation in PXR expression or human variation in induction of the CYP3A target gene. Our current research is designed to further elucidate the cellular and molecular mechanisms regulating PXR expression. Our prior studies have revealed that there are multiple isoforms of PXR that differ in their amino terminus and in the ligand binding domain. Our current research in Aim 1 is designed to discover the extent to which PXR with different amino termini and different ligand binding domains are expressed in human tissues and whether these PXR splice variants have altered function. We hypothesize that these variant PXRs fine tune PXR activation creating an additional layer of regulation, and ultimately influence the CYP3A inductive phenotype. Towards the goal of understanding factors regulating PXR expression Aims 2 and 4 will determine the role of liver enriched transcriptional factors in regulation of human PXR transcription and PXR expression in human liver. In order to visualize PXR transcriptional activity in mouse tissues, in Aim 3 we will develop a transgenic mouse with the PXR-promoter-driving a luciferase reporter. Bioluminescent imaging through the skin of the mouse will monitor in real-time PXR transcription under the most informative biological conditions-i.e., in a living intact animal. This unique and powerful whole body imaging approach will allow us to visualize PXR transcription in multiple tissues under different physiological and drug treated environments. In total this proposal describes a comprehensive set of experiments to determine how PXR is regulated.
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Genetic Predictors of Human Liver CYP Expression & Activity
Genetic Predictors of Human Liver CYP Expression & Activity
Genetic Predictors of Human Liver CYP Expression & Activity
Genetic Predictors of Human Liver CYP Expression & Activity
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