ArticleThe Journal of endocrinology2020
Lack of adrenal TSPO/PBR expression in hamsters reinforces correlation to triglyceride metabolism.
Article in The Journal of endocrinology, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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8 citing papers in PubMed, 12 citations in OpenAlex.
- Target validation uncouples mitochondrial translocator protein from 19-Atriol-mediated inhibition of steroidogenesis and identifies enzymatic targets.The Journal of biological chemistry · 2026Article
- Single cell resolution of neurosteroidogenesis in the murine brain: de novo biosynthesis.The Journal of endocrinology · 2025Article
- Thirty years of StAR gazing. Expanding the universe of the steroidogenic acute regulatory protein.The Journal of endocrinology · 2025Review
- Regulation of astrocyte metabolism by mitochondrial translocator protein 18kDa.bioRxiv : the preprint server for biology · 2023Article
- Imaging the Influence of Red Blood Cell Docosahexaenoic Acid Status on the Expression of the 18 kDa Translocator Protein in the Brain: A [Biological psychiatry. Cognitive neuroscience and neuroimaging · 2022Article
- Functional metabolite reserves and lipid homeostasis revealed by the MA-10 Leydig cell metabolome.PNAS nexus · 2022Article
- Exogenous cholesterol acquisition signaling in LH-responsive MA-10 Leydig cells and in adult mice.The Journal of endocrinology · 2022Article
- Mitochondrial translocator protein deficiency exacerbates pathology in acute experimental ulcerative colitis.Frontiers in physiology · 2022Article
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Authors and funding
2 authors at 1 institution in 1 country.
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Abstract
Despite being a highly conserved protein, the precise role of the mitochondrial translocator protein (TSPO), previously known as the peripheral benzodiazepine receptor (PBR), remains elusive. The void created by studies that overturned a presumptive model that described TSPO/PBR as a mitochondrial cholesterol transporter for steroidogenesis has been filled with evidence that it can affect mitochondrial metabolic functions across different model systems. We previously reported that TSPO/PBR deficient steroidogenic cells upregulate mitochondrial fatty acid oxidation and presented a strong positive correlation between TSPO/PBR expression and tissues active in triglyceride metabolism or lipid storage. Nevertheless, the highlighting of inconsistencies in prior work has provoked reprisals that threaten to stifle progress. One frequent factoid presented as being supportive of a cholesterol import function is that there are no steroid-synthesizing cell types without high TSPO/PBR expression. In this study, we examine the hamster adrenal gland that is devoid of lipid droplets in the cortex and largely relies on de novo cholesterol biosynthesis and uptake for steroidogenesis. We find that Tspo expression in the hamster adrenal is imperceptible compared to the mouse. This observation is consistent with a substantially low expression of Cpt1a in the hamster adrenal, indicating minimal mitochondrial fatty acid oxidation capacity compared to the mouse. These findings provide further reinforcement that the much sought-after mechanism of TSPO/PBR function remains correlated with the extent of cellular triglyceride metabolism. Thus, TSPO/PBR could have a homeostatic function relevant only to steroidogenic systems that manage triglycerides associated with lipid droplets.
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