Optimization of the fluorogen-activating protein tag for quantitative protein trafficking and colocalization studies in S. cerevisiae

被引:0
作者
Oppenheimer, Katherine G. [1 ]
Hager, Natalie A. [1 ]
McAtee, Ceara K. [1 ]
Filiztekin, Elif [1 ]
Shang, Chaowei [1 ]
Warnick, Justina A. [1 ]
Bruchez, Marcel P. [2 ]
Brodsky, Jeffrey L. [1 ]
Prosser, Derek C. [3 ]
Kwiatkowski, Adam, V [4 ]
O'Donnell, Allyson F. [1 ]
机构
[1] Univ Pittsburgh, Dept Biol Sci, Pittsburgh, PA 15260 USA
[2] Carnegie Mellon Univ, Mol Biosensor & Imaging Ctr, Pittsburgh, PA 15213 USA
[3] Virginia Commonwealth Univ, Dept Biol, Richmond, VA 23284 USA
[4] Univ Pittsburgh, Sch Med, Dept Cell Biol, Pittsburgh, PA 15261 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
CELL-SURFACE PROTEINS; SACCHAROMYCES-CEREVISIAE; ALPHA-ARRESTINS; PLASMA-MEMBRANE; ENDOCYTIC TRAFFICKING; MECHANICAL-PROPERTIES; SIGNAL-TRANSDUCTION; PHEROMONE RESPONSE; CYSTIC-FIBROSIS; FUSION PROTEINS;
D O I
10.1091/mbc.E24-04-0174
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Spatial and temporal tracking of fluorescent proteins (FPs) in live cells permits visualization of proteome remodeling in response to extracellular cues. Historically, protein dynamics during trafficking have been visualized using constitutively active FPs fused to proteins of interest. While powerful, such FPs label all cellular pools of a protein, potentially masking the dynamics of select subpopulations. To help study protein subpopulations, bioconjugate tags, including the fluorogen activation proteins (FAPs), were developed. FAPs are comprised of two components: a single-chain antibody (SCA) fused to the protein of interest and a malachite-green (MG) derivative, which fluoresces only when bound to the SCA. Importantly, the MG derivatives can be either cell-permeant or-impermeant, thus permitting isolated detection of SCA-tagged proteins at the cell surface and facilitating quantitative endocytic measures. To expand FAP use in yeast, we optimized the SCA for yeast expression, created FAP-tagging plasmids, and generated FAP-tagged organelle markers. To demonstrate FAP efficacy, we coupled the SCA to the yeast G-protein coupled receptor Ste3. We measured Ste3 endocytic dynamics in response to pheromone and characterized cis- and trans-acting regulators of Ste3. Our work significantly expands FAP technology for varied applications in S. cerevisiae .
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页数:21
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