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نوع الوثيقة : مقال في مجلة دورية 
عنوان الوثيقة :
Androgen and Progesterone Receptors Are Targets for Bisphenol A (BPA), 4-Methyl-2,4-bis-(P-Hydroxyphenyl)Pent-1-Ene--A Potent Metabolite of BPA, and 4-Tert-Octylphenol: A Computational Insight
Androgen and Progesterone Receptors Are Targets for Bisphenol A (BPA), 4-Methyl-2,4-bis-(P-Hydroxyphenyl)Pent-1-Ene--A Potent Metabolite of BPA, and 4-Tert-Octylphenol: A Computational Insight
 
لغة الوثيقة : الانجليزية 
المستخلص : Exposure to toxic industrial chemicals that have capacity to disrupt the endocrine system, also known as endocrine disrupting chemicals (EDCs), has been increasingly associated with reproductive problems in human population. Bisphenol A (BPA; 4,4'-(propane-2,2-diyl)diphenol) and 4-tert-octylphenol (OP; 4-(1,1,3,3-tetramethylbutyl)phenol) are among the most common environmental contaminants possessing endocrine disruption properties and are present in plastics, epoxy resins, detergents and other commercial products of common personal and industrial use. A metabolite of BPA, 4-Methyl-2,4-bis(4-hydroxyphenyl)pent-1-ene (MBP) is about 1000 times more biologically active compared to BPA. Epidemiological, clinical, and experimental studies have shown association of BPA and OP with adverse effects on male and female reproductive system in human and animals. The endocrine disruption activity can occur through multiple pathways including binding to steroid receptors. Androgen receptor (AR) and progesterone receptor (PR) are critical for reproductive tract growth and function. Structural binding characterization of BPA, MBP, and OP with AR and PR using molecular docking simulation approaches revealed novel interactions of BPA with PR, and MBP and OP with AR and PR. For BPA, MBP, and OP, five AR interacting residues Leu-701, Leu-704, Asn-705, Met-742, and Phe-764 overlapped with those of native AR ligand testosterone, and four PR interacting residues Leu-715, Leu-718, Met-756, and Met-759 overlapped with those of PR co-complex ligand, norethindrone. For both the receptors the binding strength of MBP was maximum among the three compounds. Thus, these compounds have the potential to block or interfere in the binding of the endogenous native AR and PR ligands and, hence, resulting in dysfunction. The knowledge of the key interactions and the important amino-acid residues also allows better prediction of potential of xenobiotic molecules for disrupting AR- and PR-mediated pathways, thus, helping in design of less potent alternatives for commercial use. 
ردمد : 1932-6203 
اسم الدورية : PloS one 
المجلد : 10 
العدد : 9 
سنة النشر : 1436 هـ
2015 م
 
نوع المقالة : مقالة علمية 
تاريخ الاضافة على الموقع : Wednesday, April 27, 2016 

الباحثون

اسم الباحث (عربي)اسم الباحث (انجليزي)نوع الباحثالمرتبة العلميةالبريد الالكتروني
Mohd RehanRehan, Mohd باحث رئيسي  
Ejaz AhmadAhmad, Ejaz باحث مشارك  
Ishfaq A. SheikhSheikh, Ishfaq A.باحث مشارك  
Adel M. AbuzenadahAbuzenadah, Adel M.باحث مشارك  
Ghazi A. DamanhouriDamanhouri, Ghazi A.باحث مشارك  
Osama S. BajouhBajouh, Osama S.باحث مشارك  
Samera F. AlBasriAlBasri, Samera F.باحث مشارك  
Mansour M. AssiriAssiri, Mansour M.باحث مشارك  
Mohd A. BegBeg, Mohd A.باحث مشارك mabeg51@gmail.com

الملفات

اسم الملفالنوعالوصف
 38722.pdf pdf 

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