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用于细胞蛋白质翻译后时空控制的平台。

A platform for post-translational spatiotemporal control of cellular proteins.

作者信息

Jayanthi Brianna, Bachhav Bhagyashree, Wan Zengyi, Martinez Legaspi Santiago, Segatori Laura

机构信息

Systems, Synthetic and Physical Biology Graduate Program, Rice University, Houston, TX, USA.

Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX, USA.

出版信息

Synth Biol (Oxf). 2021 Feb 2;6(1):ysab002. doi: 10.1093/synbio/ysab002. eCollection 2021.

Abstract

Mammalian cells process information through coordinated spatiotemporal regulation of proteins. Engineering cellular networks thus relies on efficient tools for regulating protein levels in specific subcellular compartments. To address the need to manipulate the extent and dynamics of protein localization, we developed a platform technology for the target-specific control of protein destination. This platform is based on bifunctional molecules comprising a target-specific nanobody and universal sequences determining target subcellular localization or degradation rate. We demonstrate that nanobody-mediated localization depends on the expression level of the target and the nanobody, and the extent of target subcellular localization can be regulated by combining multiple target-specific nanobodies with distinct localization or degradation sequences. We also show that this platform for nanobody-mediated target localization and degradation can be regulated transcriptionally and integrated within orthogonal genetic circuits to achieve the desired temporal control over spatial regulation of target proteins. The platform reported in this study provides an innovative tool to control protein subcellular localization, which will be useful to investigate protein function and regulate large synthetic gene circuits.

摘要

哺乳动物细胞通过蛋白质的协调时空调节来处理信息。因此,构建细胞网络依赖于在特定亚细胞区室中调节蛋白质水平的有效工具。为了满足操纵蛋白质定位范围和动态变化的需求,我们开发了一种用于蛋白质靶向定位的平台技术。该平台基于双功能分子,其包含靶向特异性纳米抗体和决定靶标亚细胞定位或降解速率的通用序列。我们证明,纳米抗体介导的定位取决于靶标和纳米抗体的表达水平,并且通过将多个具有不同定位或降解序列的靶向特异性纳米抗体组合,可以调节靶标亚细胞定位的程度。我们还表明,这种用于纳米抗体介导的靶标定位和降解的平台可以进行转录调控,并整合到正交遗传回路中,以实现对靶标蛋白空间调节的所需时间控制。本研究报道的平台提供了一种控制蛋白质亚细胞定位的创新工具,这将有助于研究蛋白质功能和调节大型合成基因回路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f1b/7976946/3508a501719a/ysab002f1.jpg

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