Please use this identifier to cite or link to this item: 10.1371/journal.pone.0268563
Title: Intracellular dynamics of the Sigma-1 receptor observed with super-resolution imaging microscopy
Authors: Kopanchuk, Sergei
Vavers, Edijs
Veiksina, Santa
Ligi, Kadri
Zvejniece, Liga
Dambrova, Maija
Rinken, Ago
Rīga Stradiņš University
Keywords: 1.4 Chemical sciences;1.6 Biological sciences;3.1 Basic medicine;1.1. Scientific article indexed in Web of Science and/or Scopus database;General
Issue Date: May-2022
Citation: Kopanchuk , S , Vavers , E , Veiksina , S , Ligi , K , Zvejniece , L , Dambrova , M & Rinken , A 2022 , ' Intracellular dynamics of the Sigma-1 receptor observed with super-resolution imaging microscopy ' , PloS one , vol. 17 , no. 5 , e0268563 . https://doi.org/10.1371/journal.pone.0268563
Abstract: Sigma-1 receptor (Sig1R) is an endoplasmic reticulum (ER)-related membrane protein, that forms heteromers with other cellular proteins. As the mechanism of action of this chaperone protein remains unclear, the aim of the present study was to detect and analyze the intracellular dynamics of Sig1R in live cells using super-resolution imaging microscopy. For that, the Sig1R-yellow fluorescent protein conjugate (Sig1R-YFP) together with fluorescent markers of cell organelles were transfected into human ovarian adenocarcinoma (SK-OV-3) cells with BacMam technology. Sig1R-YFP was found to be located mainly in the nuclear envelope and in both tubular and vesicular structures of the ER but was not detected in the plasma membrane, even after activation of Sig1R with agonists. The super-resolution radial fluctuations approach (SRRF) performed with a highly inclined and laminated optical sheet (HILO) fluorescence microscope indicated substantial overlap of Sig1R-YFP spots with KDEL-mRFP, slight overlap with pmKate2-mito and no overlap with the markers of endosomes, peroxisomes, lysosomes, or caveolae. Activation of Sig1R with (+)-pentazocine caused a time-dependent decrease in the overlap between Sig1R-YFP and KDEL-mRFP, indicating that the activation of Sig1R decreases its colocalization with the marker of vesicular ER and does not cause comprehensive translocations of Sig1R in cells.
Description: Publisher Copyright: © 2022 Kopanchuk et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
DOI: 10.1371/journal.pone.0268563
ISSN: 1932-6203
Appears in Collections:Research outputs from Pure / Zinātniskās darbības rezultāti no ZDIS Pure

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