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Effects of bisphenol A (BPA) on brain-specific expression of cyp19a1b gene in swim-up fry of Labeo rohita.
- Source :
-
Comparative biochemistry and physiology. Toxicology & pharmacology : CBP [Comp Biochem Physiol C Toxicol Pharmacol] 2018 Jul; Vol. 209, pp. 63-71. Date of Electronic Publication: 2018 Apr 11. - Publication Year :
- 2018
-
Abstract
- Estrogen regulates numerous developmental and physiological processes and effects are mediated mainly by estrogenic receptors (ERs), which function as ligand-regulated transcription factor. ERs can be activated by many different types endocrine disrupting chemicals (EDCs) and interfere with behaviour and reproductive potential of living organism. Estrogenic regulation of membrane associated G protein-coupled estrogen receptor, GPER activity has also been reported. Bisphenol A (BPA), a ubiquitous endocrine disruptor is present in many household products, has been linked to many adverse effect on sexual development and reproductive potential of wild life species. The present work is aimed to elucidate how an environmentally pervasive chemical BPA affects in vivo expression of a known estrogen target gene, cyp19a1b in the brain, and a known estrogenic biomarker, vitellogenin (Vg) in the whole body homogenate of 30 days post fertilization (dpf) swim-up fry of Labeo rohita. We confirm that, like estrogen, the xenoestrogen BPA exposure for 5-15 days induces strong overexpression of cyp19a1b, but not cyp19a1a mRNA in the brain and increase concentration of vitellogenin in swim-up fry. BPA also induces strong overexpression of aromatase B protein and aromatase activity in brain. Experiments using selective modulators of classical ERs and GPER argue that this induction is largely through nuclear ERs, not through GPER. Thus, BPA has the potential to elevate the levels of aromatase and thereby, levels of endogenous estrogen in developing brain. These results indicate that L. rohita swim-up fry can be used to detect environmental endocrine disruptors either using cyp19a1b gene expression or vitellogenin induction.<br /> (Copyright © 2018 Elsevier Inc. All rights reserved.)
- Subjects :
- Animals
Aquaculture
Aromatase chemistry
Aromatase genetics
Benzhydryl Compounds antagonists & inhibitors
Brain enzymology
Brain growth & development
Cyprinidae growth & development
Endocrine Disruptors chemistry
Environmental Biomarkers drug effects
Enzyme Induction drug effects
Estrogen Receptor Antagonists pharmacology
Estrogens, Non-Steroidal antagonists & inhibitors
Estrogens, Non-Steroidal toxicity
Fish Proteins genetics
Fish Proteins metabolism
Isoenzymes chemistry
Isoenzymes genetics
Isoenzymes metabolism
Nerve Tissue Proteins genetics
Nerve Tissue Proteins metabolism
Neurogenesis drug effects
Neurons enzymology
Osmolar Concentration
Phenols antagonists & inhibitors
RNA, Messenger metabolism
Up-Regulation drug effects
Vitellogenins agonists
Vitellogenins genetics
Vitellogenins metabolism
Water Pollutants, Chemical antagonists & inhibitors
Water Pollutants, Chemical toxicity
Aromatase metabolism
Benzhydryl Compounds toxicity
Brain drug effects
Cyprinidae physiology
Cytochrome P-450 Enzyme Inducers toxicity
Endocrine Disruptors toxicity
Neurons drug effects
Phenols toxicity
Subjects
Details
- Language :
- English
- ISSN :
- 1532-0456
- Volume :
- 209
- Database :
- MEDLINE
- Journal :
- Comparative biochemistry and physiology. Toxicology & pharmacology : CBP
- Publication Type :
- Academic Journal
- Accession number :
- 29654925
- Full Text :
- https://doi.org/10.1016/j.cbpc.2018.04.002