Application of image cytometry to characterize heterologous lipid flippases in yeast

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Application of image cytometry to characterize heterologous lipid flippases in yeast. / Jensen, Maria Stumph; Costa, Sara; Theorin, Lisa; Christensen, Jan Pravsgaard; Günther-Pomorski, Thomas; Lopez Marques, Rosa Laura.

In: Cytometry. Part A, Vol. 89, No. 7, 2016, p. 673–680.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Jensen, MS, Costa, S, Theorin, L, Christensen, JP, Günther-Pomorski, T & Lopez Marques, RL 2016, 'Application of image cytometry to characterize heterologous lipid flippases in yeast', Cytometry. Part A, vol. 89, no. 7, pp. 673–680. https://doi.org/10.1002/cyto.a.22886

APA

Jensen, M. S., Costa, S., Theorin, L., Christensen, J. P., Günther-Pomorski, T., & Lopez Marques, R. L. (2016). Application of image cytometry to characterize heterologous lipid flippases in yeast. Cytometry. Part A, 89(7), 673–680. https://doi.org/10.1002/cyto.a.22886

Vancouver

Jensen MS, Costa S, Theorin L, Christensen JP, Günther-Pomorski T, Lopez Marques RL. Application of image cytometry to characterize heterologous lipid flippases in yeast. Cytometry. Part A. 2016;89(7):673–680. https://doi.org/10.1002/cyto.a.22886

Author

Jensen, Maria Stumph ; Costa, Sara ; Theorin, Lisa ; Christensen, Jan Pravsgaard ; Günther-Pomorski, Thomas ; Lopez Marques, Rosa Laura. / Application of image cytometry to characterize heterologous lipid flippases in yeast. In: Cytometry. Part A. 2016 ; Vol. 89, No. 7. pp. 673–680.

Bibtex

@article{4655840ab1f04ce1824a74b1513cf3ef,
title = "Application of image cytometry to characterize heterologous lipid flippases in yeast",
abstract = "Lipid flippases are integral membrane proteins that play a central role in moving lipids across cellular membranes. Some of these transporters are ATPases that couple lipid translocation to ATP hydrolysis, whereas others function without any discernible metabolic energy input. A growing number of lipid flippases has been identified but key features of their activity remain to be elucidated. A well-established method to characterize ATP-driven flippases is based on their heterologous expression in yeast, followed by incubation of the cells with fluorescent lipids. Internalization of these probes is typically monitored by flow cytometry, a costly and maintenance-intensive method. Here, we have optimized a protocol to use an automated image-based cell counter to accurately measure lipid uptake by heterologous lipid flippases expressed in yeast. The method was validated by comparison with the classical flow cytometric evaluation of lipid-labeled cells. In addition, we demonstrated that expression of fluorescently tagged flippase complexes can be directly co-related with fluorescent lipid uptake using the image-based cell counter system. The method extends the number of techniques available for characterization of lipid flippase activity, and should be readily adaptable to analyze a variety of other transport systems in yeast, parasites, and mammalian cells. {\textcopyright} 2016 International Society for Advancement of Cytometry.",
author = "Jensen, {Maria Stumph} and Sara Costa and Lisa Theorin and Christensen, {Jan Pravsgaard} and Thomas G{\"u}nther-Pomorski and {Lopez Marques}, {Rosa Laura}",
note = "{\textcopyright} 2016 International Society for Advancement of Cytometry.",
year = "2016",
doi = "10.1002/cyto.a.22886",
language = "English",
volume = "89",
pages = "673–680",
journal = "Cytometry. Supplement : the journal of the Society for Analytical Cytology",
issn = "1046-7386",
publisher = "JohnWiley & Sons, Inc.",
number = "7",

}

RIS

TY - JOUR

T1 - Application of image cytometry to characterize heterologous lipid flippases in yeast

AU - Jensen, Maria Stumph

AU - Costa, Sara

AU - Theorin, Lisa

AU - Christensen, Jan Pravsgaard

AU - Günther-Pomorski, Thomas

AU - Lopez Marques, Rosa Laura

N1 - © 2016 International Society for Advancement of Cytometry.

PY - 2016

Y1 - 2016

N2 - Lipid flippases are integral membrane proteins that play a central role in moving lipids across cellular membranes. Some of these transporters are ATPases that couple lipid translocation to ATP hydrolysis, whereas others function without any discernible metabolic energy input. A growing number of lipid flippases has been identified but key features of their activity remain to be elucidated. A well-established method to characterize ATP-driven flippases is based on their heterologous expression in yeast, followed by incubation of the cells with fluorescent lipids. Internalization of these probes is typically monitored by flow cytometry, a costly and maintenance-intensive method. Here, we have optimized a protocol to use an automated image-based cell counter to accurately measure lipid uptake by heterologous lipid flippases expressed in yeast. The method was validated by comparison with the classical flow cytometric evaluation of lipid-labeled cells. In addition, we demonstrated that expression of fluorescently tagged flippase complexes can be directly co-related with fluorescent lipid uptake using the image-based cell counter system. The method extends the number of techniques available for characterization of lipid flippase activity, and should be readily adaptable to analyze a variety of other transport systems in yeast, parasites, and mammalian cells. © 2016 International Society for Advancement of Cytometry.

AB - Lipid flippases are integral membrane proteins that play a central role in moving lipids across cellular membranes. Some of these transporters are ATPases that couple lipid translocation to ATP hydrolysis, whereas others function without any discernible metabolic energy input. A growing number of lipid flippases has been identified but key features of their activity remain to be elucidated. A well-established method to characterize ATP-driven flippases is based on their heterologous expression in yeast, followed by incubation of the cells with fluorescent lipids. Internalization of these probes is typically monitored by flow cytometry, a costly and maintenance-intensive method. Here, we have optimized a protocol to use an automated image-based cell counter to accurately measure lipid uptake by heterologous lipid flippases expressed in yeast. The method was validated by comparison with the classical flow cytometric evaluation of lipid-labeled cells. In addition, we demonstrated that expression of fluorescently tagged flippase complexes can be directly co-related with fluorescent lipid uptake using the image-based cell counter system. The method extends the number of techniques available for characterization of lipid flippase activity, and should be readily adaptable to analyze a variety of other transport systems in yeast, parasites, and mammalian cells. © 2016 International Society for Advancement of Cytometry.

U2 - 10.1002/cyto.a.22886

DO - 10.1002/cyto.a.22886

M3 - Journal article

C2 - 27272389

VL - 89

SP - 673

EP - 680

JO - Cytometry. Supplement : the journal of the Society for Analytical Cytology

JF - Cytometry. Supplement : the journal of the Society for Analytical Cytology

SN - 1046-7386

IS - 7

ER -

ID: 163776869