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CARS microscopy of lipid stores in yeast: the impact of nutritional state and genetic background

Brackmann, Christian, 1973 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Norbeck, Joakim, 1965 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Åkeson, Madeleine, 1981 (author)
Chalmers tekniska högskola,Chalmers University of Technology
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Bosch, Daniel, 1977 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Larsson, Christer, 1958 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Gustafsson, Lena, 1949 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Enejder, Annika, 1969 (author)
Chalmers tekniska högskola,Chalmers University of Technology
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 (creator_code:org_t)
2009-06-22
2009
English.
In: Journal of Raman Spectroscopy. - : Wiley. - 0377-0486 .- 1097-4555. ; 40:7, s. 748-756
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • We have developed a protocol for sub-micrometer resolved and chemically specific imaging of lipid storage in vivo employing coherent anti-Stokes Raman scattering (CARS) microscopy of one of the most important model organisms Saccharomyces cerevisiae - the yeast cell. By probing the carbon-hydrogen vibration using the nonlinear process of CARS, lipid droplets in the yeast cells clearly appear, as confirmed by comparative studies on relevant labeled organelles using two-photon fluorescence microscopy. From the images, unique quantitative data can be deduced with high three-dimensional resolution, such as the volume, shape, number, and intracellular location of the neutral lipid stores. We exemplify the strength and usability of the method for two cases: the impact on lipid storage of the nutritional condition (starvation and type of carbon source available) as well as of genetic modification of two fundamental metabolic regulation pathways involving carbohydrate and lipid storage (BCY1 and DGA1, LRO1, ARE1/2 deletions), respectively. While the impact of carbon source on the total cellular lipid volume was minimal, long-term starvation induces a significant accumulation of lipid droplets. We also confirm that the lipid-storage-deficient mutant is indeed unable to synthesize lipid droplets, and that the inability of the bcy1-mutant to store carbohydrates is compensated by a two-fold increase in stored neutral lipids. We note that there is a significant cell-to-cell variability in neutral lipid storage in general, i.e. that there is a correspondence to the noise found for gene expression also in lipidomics. Copyright (C) 2009 John Wiley & Sons, Ltd.

Subject headings

NATURVETENSKAP  -- Biologi -- Biokemi och molekylärbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Biochemistry and Molecular Biology (hsv//eng)

Keyword

Saccharomyces cerevisiae
microscopy
protein
yeast
microscopy
biology
neutral storage lipids
coherent anti-Stokes Raman scattering
storage
saccharomyces-cerevisiae
stokes-raman scattering
single-cell
droplets
generation
proteomic analysis
particles

Publication and Content Type

art (subject category)
ref (subject category)

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