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利用条件性降解结构域进行蛋白质表达控制的前沿技术。

Frontiers of protein expression control with conditional degrons.

机构信息

Center for Frontier Research, National Institute of Genetics, Research Organization of Information and Systems, Yata 1111, Mishima, Shizuoka, 411-8540, Japan.

出版信息

Pflugers Arch. 2013 Mar;465(3):419-25. doi: 10.1007/s00424-012-1203-y. Epub 2012 Dec 28.

Abstract

It is useful to artificially control the expression levels of a protein of interest (POI), not only for its characterization in vivo, but also for the modulation of biological pathways. Overexpression of a POI is relatively easy because it is possible to drive its expression from a transgene encoding the POI under the control of a strong promoter. However, it is more challenging to reduce or deplete the expression of a POI. A protein domain called "degron", which induces rapid proteolysis by the proteasome, can be used for this purpose. Degron-based technologies for the conditional depletion of POI--degron fusion proteins have been developed by exploiting various pathways leading to proteasomal degradation. Compared with other depletion technologies that control the expression levels of POIs at the DNA or mRNA levels, these protein-depletion approaches are advantageous in terms of specificity, reversibility, and the time required for depletion. Current conditional degron-based technologies are described and discussed.

摘要

人为控制目的蛋白(POI)的表达水平是很有用的,这不仅有助于对其进行体内特征分析,也有助于对生物途径进行调节。过表达 POI 相对容易,因为可以通过在强启动子控制下的编码 POI 的转基因来驱动其表达。然而,降低或耗尽 POI 的表达则更具挑战性。一种称为“降解结构域”的蛋白域可以通过蛋白酶体诱导快速蛋白水解,可用于此目的。通过利用各种导致蛋白酶体降解的途径,已经开发出基于降解结构域的 POI 条件性耗尽技术——降解结构域融合蛋白。与控制 POI 在 DNA 或 mRNA 水平表达的其他耗尽技术相比,这些蛋白耗尽方法在特异性、可逆性和耗尽所需的时间方面具有优势。本文对当前基于条件性降解结构域的技术进行了描述和讨论。

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