Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner

Despite peroxisomes being important partners of mitochondria by carrying out fatty acid oxidation in brown adipocytes, no clear evidence concerning peroxisome origin and way(s) of biogenesis exists. Herein we used methimazole-induced hypothyroidism for 7, 15, and 21 days to study peroxisomal remodel...

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Main Authors: Marija Aleksic, Igor Golic, Andjelika Kalezic, Aleksandra Jankovic, Bato Korac, Aleksandra Korac
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Cells
Subjects:
Online Access:https://www.mdpi.com/2073-4409/10/9/2248
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spelling doaj-d03290819fc64f7380addd450f58336c2021-09-25T23:52:10ZengMDPI AGCells2073-44092021-08-01102248224810.3390/cells10092248Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent MannerMarija Aleksic0Igor Golic1Andjelika Kalezic2Aleksandra Jankovic3Bato Korac4Aleksandra Korac5Center for Electron Microscopy, Faculty of Biology, University of Belgrade, 11000 Belgrade, SerbiaCenter for Electron Microscopy, Faculty of Biology, University of Belgrade, 11000 Belgrade, SerbiaDepartment of Physiology, Institute for Biological Research “Sinisa Stankovic”—National Institute of Republic of Serbia, University of Belgrade, 11000 Belgrade, SerbiaDepartment of Physiology, Institute for Biological Research “Sinisa Stankovic”—National Institute of Republic of Serbia, University of Belgrade, 11000 Belgrade, SerbiaCenter for Electron Microscopy, Faculty of Biology, University of Belgrade, 11000 Belgrade, SerbiaCenter for Electron Microscopy, Faculty of Biology, University of Belgrade, 11000 Belgrade, SerbiaDespite peroxisomes being important partners of mitochondria by carrying out fatty acid oxidation in brown adipocytes, no clear evidence concerning peroxisome origin and way(s) of biogenesis exists. Herein we used methimazole-induced hypothyroidism for 7, 15, and 21 days to study peroxisomal remodeling and origin in rat brown adipocytes. We found that peroxisomes originated via both canonic, and <i>de novo</i> pathways. Each pathway operates in euthyroid control and over the course of hypothyroidism, in a time-dependent manner. Hypothyroidism increased the peroxisomal number by 1.8-, 3.6- and 5.8-fold on days 7, 15, and 21. Peroxisomal presence, their distribution, and their degree of maturation were heterogeneous in brown adipocytes in a Harlequin-like manner, reflecting differences in their origin. The canonic pathway, through numerous dumbbell-like and “pearls on strings” structures, supported by high levels of Pex11β and Drp1, prevailed on day 7. The <i>de novo</i> pathway of peroxisomal biogenesis started on day 15 and became dominant by day 21. The transition of peroxisomal biogenesis from canonic to the <i>de novo</i> pathway was driven by increased levels of Pex19, PMP70, Pex5S, and Pex26 and characterized by numerous tubular structures. Furthermore, specific peroxisomal origin from mitochondria, regardless of thyroid status, indicates their mutual regulation in rat brown adipocytes.https://www.mdpi.com/2073-4409/10/9/2248hypothyroidismbrown adipocyteperoxisomebiogenesis pathwayinter-organellar association
collection DOAJ
language English
format Article
sources DOAJ
author Marija Aleksic
Igor Golic
Andjelika Kalezic
Aleksandra Jankovic
Bato Korac
Aleksandra Korac
spellingShingle Marija Aleksic
Igor Golic
Andjelika Kalezic
Aleksandra Jankovic
Bato Korac
Aleksandra Korac
Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner
Cells
hypothyroidism
brown adipocyte
peroxisome
biogenesis pathway
inter-organellar association
author_facet Marija Aleksic
Igor Golic
Andjelika Kalezic
Aleksandra Jankovic
Bato Korac
Aleksandra Korac
author_sort Marija Aleksic
title Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner
title_short Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner
title_full Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner
title_fullStr Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner
title_full_unstemmed Hypothyroidism Intensifies Both Canonic and the <i>De Novo</i> Pathway of Peroxisomal Biogenesis in Rat Brown Adipocytes in a Time-Dependent Manner
title_sort hypothyroidism intensifies both canonic and the <i>de novo</i> pathway of peroxisomal biogenesis in rat brown adipocytes in a time-dependent manner
publisher MDPI AG
series Cells
issn 2073-4409
publishDate 2021-08-01
description Despite peroxisomes being important partners of mitochondria by carrying out fatty acid oxidation in brown adipocytes, no clear evidence concerning peroxisome origin and way(s) of biogenesis exists. Herein we used methimazole-induced hypothyroidism for 7, 15, and 21 days to study peroxisomal remodeling and origin in rat brown adipocytes. We found that peroxisomes originated via both canonic, and <i>de novo</i> pathways. Each pathway operates in euthyroid control and over the course of hypothyroidism, in a time-dependent manner. Hypothyroidism increased the peroxisomal number by 1.8-, 3.6- and 5.8-fold on days 7, 15, and 21. Peroxisomal presence, their distribution, and their degree of maturation were heterogeneous in brown adipocytes in a Harlequin-like manner, reflecting differences in their origin. The canonic pathway, through numerous dumbbell-like and “pearls on strings” structures, supported by high levels of Pex11β and Drp1, prevailed on day 7. The <i>de novo</i> pathway of peroxisomal biogenesis started on day 15 and became dominant by day 21. The transition of peroxisomal biogenesis from canonic to the <i>de novo</i> pathway was driven by increased levels of Pex19, PMP70, Pex5S, and Pex26 and characterized by numerous tubular structures. Furthermore, specific peroxisomal origin from mitochondria, regardless of thyroid status, indicates their mutual regulation in rat brown adipocytes.
topic hypothyroidism
brown adipocyte
peroxisome
biogenesis pathway
inter-organellar association
url https://www.mdpi.com/2073-4409/10/9/2248
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