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An Iodide-Yellow Fluorescent Protein-Gap Junction-Intercellular Communication Assay
Published on: February 1, 2019
Benzo[a]pyrene-decreased gap junctional intercellular communication via calcium/calmodulin signaling increases
Xiaoli Ji1, Xin Chou1, Zehe Ge1
1School of Public Health, Fudan University and Key Laboratory of Public Health Safety, Ministry of Education, 130 Dong An Road, Shanghai, 200032, China.
Abstract:
The mechanism of male reproductive toxicity induced by benzo[a]pyrene (BaP) is poorly understood. Gap junctional intercellular communication (GJIC) is known to play a critical role in maintaining spermatogenesis. The aim of the present study was to determine the toxic effects of BaP in Sertoli cells, and to explore the possibility and potential mechanisms of BaP-induced changes in the level of GJIC, and the relationship between GJIC and BaP-induced apoptosis. We treated mouse Sertoli cell lines (TM4) with different concentrations (0.1-100 μm) of BaP for 1-48 hours, and found that GJIC exhibited a dose- and time-dependent downregulation. Treatment with 10 μm BaP increased apoptosis, intracellular Ca2+ level ([Ca2+ ]i ) and calmodulin (CaM) protein expression, and decreased the protein level of connexin 43 (Cx43) (also known as gap junction α-1 protein [GJA1]) in TM4 cells. However, BaP had no effect on the phosphorylation of Cx43 at Ser279/282, Ser255, Ser368 or Ser262. Downregulation of [Ca2+ ]i by BAPTA-AM significantly attenuated the BaP-induced GJIC suppression, Cx43 protein decrease and CaM protein increase. Interestingly, inhibition of CaM expression by W7 partially recovered BaP-induced GJIC inhibition, but had no effect on BaP-induced Cx43 protein decrease. Pretreatment with the GJIC activator retinoic acid significantly mitigated BaP-induced apoptosis. In conclusion, these results suggest that BaP can decrease GJIC via Ca2+ /CaM signaling, and that BaP-induced GJIC suppression increases apoptosis in TM4 cells.
Insights
Benzo[a]pyrene (BaP) impairs male reproductive toxicity by downregulating gap junctional intercellular communication (GJIC) in Sertoli cells. This decrease in GJIC, mediated by Ca2+/calmodulin signaling, leads to increased apoptosis.
Area of Science:
- Reproductive Toxicology
- Cell Biology
- Environmental Health
Background:
- Male reproductive toxicity mechanisms, particularly from benzo[a]pyrene (BaP), remain unclear.
- Gap junctional intercellular communication (GJIC) is vital for maintaining spermatogenesis.
- Understanding BaP's impact on Sertoli cells and GJIC is crucial for reproductive health.
Purpose of the Study:
- To investigate BaP's toxic effects on Sertoli cells.
- To explore BaP-induced alterations in GJIC and its underlying mechanisms.
- To determine the relationship between GJIC and BaP-induced apoptosis.
Main Methods:
- Mouse Sertoli cell lines (TM4) were exposed to varying BaP concentrations (0.1-100 μm) for 1-48 hours.
- Changes in GJIC, intracellular calcium ([Ca2+]i), calmodulin (CaM), and connexin 43 (Cx43) protein levels were assessed.
- Experiments involved BAPTA-AM for calcium downregulation and W7 for CaM inhibition.
Main Results:
- BaP caused a dose- and time-dependent decrease in GJIC.
- BaP increased apoptosis, [Ca2+]i, and CaM levels, while decreasing Cx43 protein.
- Calcium modulation attenuated BaP-induced GJIC suppression and Cx43 decrease; CaM inhibition partially restored GJIC.
Conclusions:
- BaP reduces GJIC in Sertoli cells through Ca2+/calmodulin signaling.
- BaP-induced GJIC suppression contributes to apoptosis in TM4 cells.
- Targeting GJIC may offer therapeutic strategies for BaP-induced reproductive toxicity.
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