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1.
Tissue Cell ; 61: 51-60, 2019 Dec.
Article in English | MEDLINE | ID: mdl-31759407

ABSTRACT

The etiology and molecular characteristics of Leydig cell tumor (LCT) are scarcely known. From the research data stems that estrogen can be implicated in LCT induction and development, however it is not investigated in detail. Considering the above, herein we analyzed the relation between G-protein coupled membrane estrogen receptor, peroxisome proliferator-activated receptor and insulin-like family peptides (insulin-like 3 peptide; INSL3 and relaxin; RLN) expressions as well as estrogen level with impact of xenoestrogen (bisphenol A; BPA, tetrabromobisphenol A; TBBPA, and tetrachlorobisphenol A; TCBPA). While in our previous studies altered GPER-PPAR partnership was found in human LCT being a possible cause and/or additionally effecting on LCT development, here mouse testes with experimentally induced LCT and mouse tumor Leydig cell (MA-10) treated with BPA chemicals were examined. We revealed either diverse changes in expression or co-expression of GPER and PPAR in mouse LCT as well as in MA-10 cells after BPA analogues when compared to human LCT. Relationships between expression of INSL3, RLN, including co-expression, and estrogen level in human LCT, mouse LCT and MA-10 cells xenoestrogen-treated were found. Moreover, involvement of PI3K-Akt-mTOR pathway or only mTOR in the interactions of examined receptors and hormones was showed. Taken together, species, cell of origin, experimental system used and type of used chemical differences may result in diverse molecular characteristics of LCT. Estrogen/xenoestrogen may play a role in tumor Leydig cell proliferation and biochemical nature but this issue requires further studies. Experimentally-induced LCT in mouse testis and MA-10 cells after BPA exposure seem to be additional models for understanding some aspects of human LCT biology.


Subject(s)
Carcinogenesis/metabolism , Estrogens/pharmacology , Leydig Cell Tumor/metabolism , Peroxisome Proliferator-Activated Receptors/metabolism , Receptors, Estrogen/metabolism , Receptors, G-Protein-Coupled/metabolism , Adult , Animals , Carcinogenesis/pathology , Cell Line, Tumor , Humans , Leydig Cells/drug effects , Leydig Cells/metabolism , Male , Mice, Inbred C57BL , Middle Aged , Neoplasm Proteins/metabolism , Phosphatidylinositol 3-Kinases/metabolism , Proto-Oncogene Proteins c-akt/metabolism , TOR Serine-Threonine Kinases/metabolism , Testis/metabolism
2.
J Physiol Pharmacol ; 69(3)2018 Jun.
Article in English | MEDLINE | ID: mdl-30149370

ABSTRACT

We tested whether G-coupled membrane estrogen receptor (GPER) and peroxisome proliferator activated receptor (PPAR) partnership exists and whether this interaction regulates mouse Leydig cell function. Mature and aged mice were treated with the antagonist of GPER (G-15; 50 µg/kg b.w). Leydig cells (MA-10) were treated with G-15 (10 nM) alone or in combination with peroxisome proliferator-activated receptor α or γ antagonists, respectively (PPARα, 10 µM; PPARγ, 10 µM). GPER blockage affected testis steroidogenic status via changes in lutropin and cholesterol levels as well as protein expression alterations of the lutropin receptor, acute steroidogenesis activating protein, translocator protein, and protein kinase A in mouse Leydig cells both in vivo and in vitro. Inactivation of both GPER and PPAR in vitro revealed expressional modulation of other steroidogenesis-controlling molecules acting on various steps of lipid homeostasis e.g. cytochrome P450scc, perilipin, hormone sensitive lipase, and 3-hydroxy-3-methyl-glutaryl-coenzyme A reductase. Concomitantly, microscopic analysis of cells treated with antagonists showed changes in morphology, migration competences and cytoskeleton structure. In the above processes, the action of GPER and PPARα was regulated through the PI3K/Akt pathway, while PPARγ was mediated by the Ras/Raf pathway. In addition, GPER and PPARs specifically controlled individual signaling proteins. For the first time, we report here the importance of GPER-PPARα and -PPARγ 'neopartnership' in maintenance of Leydig cell morpho-functional status.


Subject(s)
PPAR alpha/metabolism , PPAR gamma/metabolism , Receptors, Estrogen/metabolism , Receptors, G-Protein-Coupled/metabolism , Testis/metabolism , Animals , Benzodioxoles/pharmacology , Cell Line , Cell Movement , Cholesterol/metabolism , Male , Mice , Microscopy, Electron, Scanning , PPAR alpha/antagonists & inhibitors , PPAR gamma/antagonists & inhibitors , Phosphoproteins/metabolism , Quinolines/pharmacology , Receptors, Estrogen/antagonists & inhibitors , Receptors, G-Protein-Coupled/antagonists & inhibitors , Receptors, GABA/metabolism , Receptors, LH/metabolism , Testis/drug effects , Testis/ultrastructure
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