Utilizing nucleic strand displacement reactions for sensing and computation in living cells
Utilizing nucleic strand displacement reactions for sensing and computation in living cells
批准号:
453249455
负责人:
Professor Dr. Friedrich Simmel
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
该项目的总体目标是利用所谓的“链置换过程”(即RNA结构中RNA链的动态替换)在活细胞,特别是哺乳动物细胞中进行简单的计算。这将允许通过特定RNA分子的存在读出细胞状态,并将通过改变转录水平甚至通过修改细胞基因组来响应它。我们的项目将建立在我们之前关于CRISPR相关核酸酶Cas12a的链置换引导rna (SD gRNAs)的工作基础上,这些工作已经在体外和细菌细胞内被证明是有效的。在复杂的活细胞环境中建立更强大的RNA“电路”带来了相当大的挑战,其中一些我们的目标是在这个项目中解决。我们首先旨在建立哺乳动物细胞中高效链位移电路的设计规则。为了在哺乳动物细胞中有效地执行这些过程,我们将探索各种RNA设计参数,这些参数有望影响杂交和链位移动力学。我们进一步的目标是开发一组正交元件,以方便多输入电路,并最终使用设计规则生成级联电路。我们还旨在了解可能在细胞的复杂环境中发挥作用的链位移过程动力学的其他影响。为此,我们将在无细胞环境中实验模拟细胞环境的几个方面。特别是,我们将研究大量竞争的DNA或RNA物种对链位移动力学的影响,以及其他方面,如大分子拥挤。然后,我们的目标是扩展现有的基于核酸的反应回路的建模框架,以解释这些影响,并潜在地预测体内链位移过程的动力学。最后,我们希望将我们的见解应用于使用天然RNA作为哺乳动物细胞链位移回路的输入。为了利用细胞RNA物种,我们将开发策略,允许有效地感知具有特定序列约束的长RNA分子,这将包括可用于杂交的序列结构域的评估以及与RNA结合蛋白的竞争。此外,我们将研究细胞内定位和RNA分子浓度对电路功能的影响。
英文摘要
The overall goal of the project is the utilization of so-called “strand displacement processes” (i.e., dynamic replacement of RNA strands in an RNA structure) to perform simple computations in living cells, and especially mammalian cells. This will allow the readout of the cellular state via the presence of specific RNA molecules and will enable responding to it by changing transcription levels or even by modification of the genome of the cell. Our project will build upon our previous work on strand-displacing guide RNAs (SD gRNAs) for the CRISPR associated nuclease Cas12a, which were already shown to work in vitro and inside bacterial cells. Building up more powerful RNA “circuits” in the complex environment of living cells poses considerable challenges, some of which we aim to address in this project.We first aim at establishing design rules for efficient strand displacement circuits in mammalian cells. In order to perform such processes in mammalian cells efficiently, we will explore various RNA design parameters that are expected to influence hybridization and strand displacement kinetics. We further aim at the development of a set of orthogonal components, which facilitate multi-input circuits, and finally use the design rules to generate cascaded circuits. We also aim at understanding additional influences on the kinetics of strand displacement processes that might play a role in the complex environment of a cell. To this end we will experimentally model several aspects of the cellular environment in a cell-free context. In particular, we will study the influence of large pools of competing DNA or RNA species on strand displacement kinetics, but also other aspects such as macromolecular crowding. We then aim to extend existing modeling frameworks for nucleic acid-based reaction circuits to account for these effects and potentially predict the kinetics of strand displacement processes in vivo. Finally, we wish to apply our insights to use natural RNA as input for strand displacement circuits in mammalian cells. In order to utilize cellular RNA species, we will develop strategies that allow efficient sensing of long RNA molecules with their specific sequence constraints, which will include an evaluation of sequence domains available for hybridization and also competition with RNA-binding proteins. Further, we will study the impact of intracellular localization and concentration of the RNA molecules on the functionality of our circuits.
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会议论文
Nanoelektronik und Biomolekulare Nanotechnologie
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批准号:5355354
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项目类别:Independent Junior Research Groups
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资助金额:$0.0万
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财政年份:2002
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负责人:Professor Dr. Friedrich Simmel
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依托单位:
Gene expression from single-stranded circular DNA – a novel component for synthetic gene circuits in vitro and in vivo
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批准号:468955252
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Professor Dr. Friedrich Simmel
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依托单位:
国内基金
海外基金
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批准年份:2011
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负责人:陈楠
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依托单位:
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批准号:81072511
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项目类别:面上项目
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资助金额:31.0万元
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批准年份:2010
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负责人:严江伟
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依托单位:
肽核酸(Peptide Nucleic Acid - PNA)电化学生物传感器的研究
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批准号:20703006
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项目类别:青年科学基金项目
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资助金额:20.0万元
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批准年份:2007
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负责人:李晓宏
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依托单位: