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RBD11,一种用于可视化和分析内源性 Rab11 的生物工程化 Rab11 结合模块。

RBD11, a bioengineered Rab11-binding module for visualizing and analyzing endogenous Rab11.

机构信息

Laboratory of Membrane Trafficking Mechanisms, Department of Integrative Life Sciences, Graduate School of Life Sciences, Tohoku University, Aobayama, Aoba-ku, Sendai, Miyagi 980-8578, Japan.

出版信息

J Cell Sci. 2021 Apr 1;134(7). doi: 10.1242/jcs.257311. Epub 2021 Apr 13.

Abstract

The small GTPase Rab11 (herein referring to the Rab11A and Rab11B isoforms) plays pivotal roles in diverse physiological phenomena, including the recycling of membrane proteins, cytokinesis, neurite outgrowth and epithelial morphogenesis. One effective method of analyzing the function of endogenous Rab11 is to overexpress a Rab11-binding domain from one of its effectors, for example, the C-terminal domain of Rab11-FIP2 (Rab11-FIP2-C), as a dominant-negative construct. However, the drawback of this method is the broader Rab-binding specificity of the effector domain, because Rab11-FIP2-C binds to Rabs other than Rab11, for example, to Rab14 and Rab25. In this study, we bioengineered an artificial Rab11-specific binding domain, named RBD11. Expression of RBD11 allowed visualization of endogenous Rab11 without affecting its localization or function, whereas expression of a tandem RBD11, named 2×RBD11, inhibited epithelial morphogenesis and induced a multi-lumen phenotype characteristic of Rab11-deficient cysts. We also developed two tools for temporally and reversibly analyzing Rab11-dependent membrane trafficking - tetracycline-inducible 2×RBD11 and an artificially oligomerized domain (FM)-tagged RBD11.

摘要

小 GTPase Rab11(在此指 Rab11A 和 Rab11B 同工型)在多种生理现象中发挥关键作用,包括膜蛋白的再循环、胞质分裂、神经突生长和上皮形态发生。分析内源性 Rab11 功能的一种有效方法是过表达其效应物之一的 Rab11 结合域,例如 Rab11-FIP2 的 C 末端结构域(Rab11-FIP2-C)作为显性负构象。然而,这种方法的缺点是效应物结构域具有更广泛的 Rab 结合特异性,因为 Rab11-FIP2-C 除了 Rab11 之外还结合其他 Rab,例如 Rab14 和 Rab25。在这项研究中,我们生物工程设计了一种人工 Rab11 特异性结合域,命名为 RBD11。表达 RBD11 可以可视化内源性 Rab11,而不影响其定位或功能,而表达串联 RBD11,命名为 2×RBD11,则抑制上皮形态发生并诱导具有 Rab11 缺陷小囊特征的多腔表型。我们还开发了两种用于时间和可逆性分析 Rab11 依赖性膜运输的工具 - 四环素诱导的 2×RBD11 和人工寡聚化结构域(FM)标记的 RBD11。

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