| Literature DB >> 24796975 |
Allison Suarez1, Tasuku Ueno2, Robert Huebner1, J Michael McCaffery3, Takanari Inoue4.
Abstract
We provide direct evidence that Bin/Amphiphysin/Rvs (BAR) family members bend the steady state membrane architecture of organelles in intact cells. In response to inducible BAR molecular actuators, organelles exhibit distinct changes to the orientation and degree of their membrane curvature. This rapidly inducible system may offer a mechanism by which to better understand the structure-function relationship of intracellular organelles.Entities:
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Year: 2014 PMID: 24796975 PMCID: PMC4894391 DOI: 10.1038/srep04693
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Recruitment of BAR domains to intracellular locations triggers distinctive morphological changes as shown by membrane markers.
Paired with Supplementary Fig. S1. Representative images of COS-7 cells expressing an organelle anchor unit and recruitable unit (fluorescent protein-FKBP-BAR and fluorescent protein-FRB-anchor unit). For simplicity, recruitable BARs are listed as BAR cartoons to the left of images and anchor units are described above images as their sites of localization. Cartoons of BAR proteins: human Amphiphysin 1 N-BAR, PDB: 4ATM; human FBP17 F-BAR, PDB: 2EFP; human MIM I-BAR, PDB: 2D1L. Note that the cartoon from the crystal structure of Amphiphysin 1 does not show the N-terminal amphipathic helix. Cells were imaged at 15-second intervals for at least 2 minutes and 30 seconds prior to addition of 100 nM rapamycin for a total of 15 minutes. At least 3 independent trials of more than 30 cells were analyzed. Images show the FRB-anchored at organelles before and after rapamycin addition. Red arrowheads highlight morphological changes of membranes. Scale bars indicate 2 μm.
Figure 2Recruitment of BAR-mutant and FKBP-controls to intracellular locations as shown by membrane markers.
Paired with Supplementary Fig. S2. Representative images of COS-7 cells expressing an organelle anchor unit and recruitable unit (fluorescent protein-FKBP-mutant BAR or fluorescent protein-FKBP and fluorescent protein-FRB-anchor unit). For simplicity, recruitable BAR-mutants are listed as cartoons and fluorescent protein-FKBP is designated as “FKBP only” to the left of images. Anchor units are described above images as their sites of localization. Cells were imaged at 15-second intervals for at least 2 minutes prior to addition of 100 nM rapamycin for a total of 15 minutes. At least 3 independent trials of more than 30 cells were analyzed. Images show the FRB-anchored organelles of BAR-mutants and FKBP- control conditions before and after rapamycin addition. Scale bars indicate 2 μm.
Intracellular locations of BAR recruitment and phenotypes. Organelle anchor unit, BAR domain recruitment, and percentage of cells showing phenotypes. Statistical analysis was performed on a total of at least 30 cells from 3 independent experiments. Mean +/− SD were recorded. P values were calculated from unpaired, two-tailed Student's t-tests. P values less than 0.01 are considered significant.
| Location | Anchor unit | Anchor unit abbr. | BAR-induced Phenotype | Recruited unit: CFP-FKBP-BAR domain | Phenotype Frequency: % cells | P value FKBP | P value Mutant BAR |
|---|---|---|---|---|---|---|---|
| Plasma membrane | Lyn | Lyn | Filopodia | N-BARΔN-BARF-BARF-BAR-QQI-BARI-BAR(12,15)FKBP only | 0%0%0%2.0 +/− 3.4 %74.0 +/− 4.1%14.9 +/− 2.1%0% | NANANA0.376.5 × 10−6*0.00027*NA | NANA0.37NA2.5 × 10−5*NANA |
| Inward tubulation | N-BARΔN-BARF-BARF-BAR-QQI-BARI-BAR(12,15)FKBP only | 36.0 +/− 13.1%0%3.7 +/− 6.4%0%2.0 +/− 3.4%2.6 +/− 4.4%0% | 0.0088*NA0.37NA0.370.37NA | 0.0088*NA0.37NA0.86NANA | |||
| Mitochondria | Mono-amine Oxidase A | MoA | Protrusion | N-BARΔN-BARF-BARF-BAR-QQI-BARI-BAR(12,15)FKBP only | 5.3 +/− 4.7%20.5 +/− 14.2%2.2 +/− 3.9%15.6 +/− 14.5%60.9 +/− 5.1%9.9 +/− 4.0%11.1 +/− 6.2% | 0.270.350.110.640.00043*0.79NA | 0.15NA0.20NA0.00017*NANA |
| Endoplasmic Reticulum | Cyto-chrome b5 | Cb5 | Punctate structures at tubular ER | N-BARΔNBARF-BARF-BAR-QQI-BARI-BAR(12,15)FKBP only | 55.1 +/− 14.5%36.9 +/− 11.8%48.9 +/− 1.9 %17.0 +/− 8.9 %100.0% +/− 0.0%79.7 +/− 5.8%8.9 +/− 7.8% | 0.008*0.0270.00099*0.303.5 × 10−5*0.00023*NA | 0.17NA0.0038*NA0.0037*NANA |
| Golgi | Giantin | Giantin | Large tubulation | N-BARΔNBARF-BARF-BAR(QQ)I-BARI-BAR(12,15)FKBP only | 47.0 +/− 2.6%25.0 +/− 8.3%19.4 +/− 5.9%17.5 +/− 2.9%29.8 +/− 14.0%12.1 +/− 6.9%17.5 +/− 2.9% | 0.00020*0.210.631.00.210.28NA | 0.012NA0.63NA0.12NANA |
Figure 3Electron micrographs of the plasma membrane region.
Anti-GFP immunogold labeling of COS-7 cells expressing Lyn-FRB and YFP-FKBP-N-BAR or Lyn-FRB and GFP-FKBP-ΔN-BAR. (a) Immunogold labeling of YFP-FKBP-N-BAR shows localization at the plasma membrane and internal membrane. These labeled internal membrane tubules may reflect the tubules we observe under light microscopy. Less immunogold labeling of internal membrane tubules occurs in the GFP-FKBP-ΔN-BAR negative control sample. The p value calculated from unpaired, two-tailed Student's t-test is 0.81. (b) Quantification of the ratio of gold particles at the plasma membrane surface to the overall amount of labeling is similar for YFP-FKBP-N-BAR and the negative control condition. YFP-FKBP-N-BAR scaffolds internal membrane tubules, as measured within 100 nm of the internal tubule, while the negative control has significantly less labeling along similar tubules. The p value calculated from unpaired, two-tailed Student's t-test is less than 0.0001. Scale bar indicates 500 nm.