课题基金 / 基金详情

项目摘要

项目成果

DAVID J SEGAL的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):这项提案描述了一种用于特定DNA序列成像的新技术的发展。这些试剂将由信号产生酶的两个非活性部分组成,它们具有识别特定DNA序列的能力。当存在合适的DNA序列时,这两个部分将相互结合并产生荧光信号。如果序列缺失或发生突变,则不会产生任何信号。因此,这些组件将起到“开启”传感器的作用,在没有序列定向重组的情况下,基本上没有背景。这个名为SEER(序列激活酶再激活)的系统能够“看到”或检测到遗传信息。它应该提供一种灵敏而廉价的检测方法,作为临床诊断试剂可能有用。SEER可以检测病原体特有的特定核酸序列,例如用于检测食源性病原体或生物恐怖因子。它可以用来检测基因组重排或指示端粒长度,这可能是癌症或年龄相关疾病的标志。它还可以检测DNA的可及性、不寻常的DNA结构和DNA修饰,这些都是目前用类似方法无法检测到的。这种方法最新颖的方面是它能够识别双链DNA,而不是变性的单链DNA。这一功能提供了报告单个活细胞内的基因组信息的可能性,这是任何现有技术都不具备的能力。该系统可以被重新配置为通过重新激活细胞毒酶来杀死细胞,从而产生顺序依赖的细胞死亡。因此,这项研究有可能对疾病检测和治疗的研究产生影响。基于重组GFP(SEER-GFP)和重组β-内酰胺酶(SEER-LAC),构建了两个SEER原型系统。在这里,我们建议优化系统(目标1),并使用体外和活细胞中的生物相关靶标来检查其检测能力的特定方面(目标2-5)。
英文摘要
DESCRIPTION (provided by applicant): This proposal describes the development of a new technology for the imaging of specific DNA sequences. These agents will consist of two inactive parts of a signal-generating enzyme that have the ability to recognize specific DNA sequences. When the appropriate DNA sequence is present, the two parts will bind near each other and generate a fluorescent signal. If the sequence is absent or mutated, no signal will be generated. The components will therefore act as "turn-on" sensors, with essentially no background in the absence of sequence-directed reassembly. This system, designated SEER (Sequence-Enabled Enzyme Reactivation), is able to "see" or detect genetic information. It should provide a sensitive yet inexpensive assay that may be useful as a clinical diagnostic agent. SEER could detect specific nucleic acid sequences that are unique to a pathogen, such as for detecting food-borne pathogens or bio terror agents. It could be used to detect genomic rearrangements or indicate telomere length, which can be markers for cancer or age related diseases. It could also allow for the detection of DNA accessibility, unusual DNA structures and DNA modifications, which are presently undetectable by similar methods. The most novel aspect of this method is its ability to recognize double-stranded DNA, rather than denatured single-strand DNA. This feature presents the possibility to report on genomic information within individual living cells, an ability not provided by any existing technology. The system could be reconfigured to kill cells through reactivation of a cytotoxic enzyme, producing sequence-dependent cell death. This research therefore has the potential to impact studies of disease detection and treatment. Two prototype SEER systems have been constructed, based on the reassembly of GFP (SEER-GFP) and b-lactamase (SEER-LAC). Here we propose to optimize the systems (Aim 1) and examine specific aspects of their detection capabilities using biologically relevant targets in vitro and in living cells (Aims 2-5).
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Genome Editing and Biological Effects Testing Component
Innovative Translational Imaging Technologies to Monitor Genome Edited Cells in Vivo
Nonhuman Primate Testing Center for Evaluation of Somatic Cell Genome Editing Tools: Equipment Supplement
Innovative Translational Imaging Technologies to Monitor Genome Edited Cells in Vivo
海外基金