A split ALFA tag-nanobody system for protein localization and proximity proteomics in mycobacteria.

Allison Fay, Andrew P Kurland, Zhuoning Li, Mara Monetti, Jeffrey R Johnson, Michael S Glickman
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Abstract

Tuberculosis remains a globally significant infection and new insights into the biology of Mycobacterium tuberculosis are badly needed. Discovery of protein localization and protein complex composition are powerful approaches to determine protein function, but have not been widely applied in mycobacteria, in part due to technical barriers. Here we develop a multi-functional system that utilizes the ALFA tag and functional protein fusions to an anti-ALFA nanobody (NBALFA) to target proteins in fast and slow growing mycobacteria. Insertion of the ALFA epitope tag on the target protein, coupled with conditional expression of the NBALFA fused to a fluorescent protein faithfully recapitulates cytosolic and membrane protein localization by fluorescent microscopy in living cells. Targeted NBALFA can relocalize an ALFA tagged protein to inclusion bodies or the cytoplasmic membrane, demonstrating enforced protein localization. Finally, conditional expression of the NBALFA fused to TurboID for proximity proteomics allowed identification of known partner proteins of the RNA polymerase complex and the PKS13 mycolic acid biosynthesis protein. We conclude that the split ALFA tag-nanobody system is a flexible platform for discovery protein biology in mycobacteria.

分枝杆菌中用于蛋白质定位和接近蛋白质组学的分裂ALFA标签-纳米体系统。
结核病仍然是一种全球性的重大感染,迫切需要对结核分枝杆菌的生物学有新的认识。发现蛋白质定位和蛋白质复合物组成是确定蛋白质功能的有力方法,但由于技术障碍,尚未在分枝杆菌中广泛应用。在这里,我们开发了一个多功能系统,利用ALFA标签和功能性蛋白融合到抗ALFA纳米体(NBALFA)中,以靶向快速和缓慢生长的分枝杆菌中的蛋白质。在目标蛋白上插入ALFA表位标签,再加上与荧光蛋白融合的NBALFA的条件表达,通过荧光显微镜忠实地再现了活细胞中细胞质和膜蛋白的定位。靶向NBALFA可以将ALFA标记的蛋白重新定位到包涵体或细胞质膜上,显示出强制的蛋白质定位。最后,将NBALFA的条件表达融合到TurboID中进行接近蛋白质组学,从而鉴定出RNA聚合酶复合物的已知伴侣蛋白和PKS13霉菌酸生物合成蛋白。我们得出结论,分裂ALFA标签-纳米体系统是发现分枝杆菌蛋白质生物学的灵活平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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