Literature DB >> 11739466

The biochemical basis for increased testosterone production in theca cells propagated from patients with polycystic ovary syndrome.

V L Nelson1, K N Qin, R L Rosenfield, J R Wood, T M Penning, R S Legro, J F Strauss, J M McAllister.   

Abstract

Ovarian theca cells propagated from patients with polycystic ovary syndrome (PCOS) convert steroid precursors into T more efficiently than normal theca cells. To identify the basis for increased T production by PCOS theca cells, we examined type I-V 17 beta-hydroxysteroid dehydrogenase (17 beta HSD) isoform expression in long-term cultures of theca and granulosa cells isolated from normal and PCOS ovaries. RT-PCR analysis demonstrated that theca cells express type V 17 beta HSD a member of the aldo-keto reductase (AKR) superfamily (17 beta HSDV, AKR1C3), whereas expression of type I, II, and IV 17 beta HSD, which are members of the short-chain dehydrogenase/reductase superfamily, was limited to granulosa cells. Type III 17 beta HSD, the testicular isoform, was not detected in either granulosa or theca cells. Northern and real-time PCR analyses demonstrated that 17 beta HSDV transcripts were not significantly increased in PCOS theca cells compared with normal theca cells. RT-PCR analysis revealed that theca cells also express another AKR, 20 alpha HSD (AKR1C1). Both basal and forskolin-stimulated 20 alpha HSD mRNA levels were increased in PCOS theca cells compared with normal theca cells. However, 17 beta HSD enzyme activity per theca cell was not significantly increased in PCOS, suggesting that neither AKR1C3 nor AKR1C1 contributes to the formation of T in this condition. In contrast, 17 alpha-hydroxylase/C17,20 lyase and 3 beta HSD enzyme activities were elevated in PCOS theca cells, driving increased production of T precursors. These findings indicate that 1) increased T production in PCOS theca cells does not result from dysregulation of "androgenic" 17 beta HSD activity or altered expression of AKRs that may express 17 beta HSD activity; and 2) increased synthesis of T precursors is the primary factor driving enhanced T secretion in PCOS.

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Year:  2001        PMID: 11739466     DOI: 10.1210/jcem.86.12.8088

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  98 in total

Review 1.  [Polycystic ovary syndrome. Prototype of a cardio-metabolic syndrome].

Authors:  D Heutling; H Schulz; H Randeva; C Dodt; H Lehnert
Journal:  Internist (Berl)       Date:  2007-02       Impact factor: 0.743

2.  The intraovarian actions of estrogen receptor-alpha are necessary to repress the formation of morphological and functional Leydig-like cells in the female gonad.

Authors:  John F Couse; Mariana M Yates; Karina F Rodriguez; Jo Anne Johnson; Donald Poirier; Kenneth S Korach
Journal:  Endocrinology       Date:  2006-04-20       Impact factor: 4.736

3.  Developmental programming: prenatal steroid excess disrupts key members of intraovarian steroidogenic pathway in sheep.

Authors:  Vasantha Padmanabhan; Natalia R Salvetti; Valentina Matiller; Hugo H Ortega
Journal:  Endocrinology       Date:  2014-07-25       Impact factor: 4.736

Review 4.  Hyperandrogenic origins of polycystic ovary syndrome - implications for pathophysiology and therapy.

Authors:  David H Abbott; Daniel A Dumesic; Jon E Levine
Journal:  Expert Rev Endocrinol Metab       Date:  2019-02-15

5.  Nesfatin-1 and other hormone alterations in polycystic ovary syndrome.

Authors:  Rulin Deniz; Bilgin Gurates; Suleyman Aydin; Husnu Celik; Ibrahim Sahin; Yakup Baykus; Zekiye Catak; Aziz Aksoy; Cihan Citil; Sami Gungor
Journal:  Endocrine       Date:  2012-02-25       Impact factor: 3.633

Review 6.  Obesity and PCOS: the effect of metabolic derangements on endometrial receptivity at the time of implantation.

Authors:  Maureen M B Schulte; Jui-he Tsai; Kelle H Moley
Journal:  Reprod Sci       Date:  2014-12-07       Impact factor: 3.060

Review 7.  The role of TGF-β in polycystic ovary syndrome.

Authors:  Nazia Raja-Khan; Margrit Urbanek; Raymond J Rodgers; Richard S Legro
Journal:  Reprod Sci       Date:  2013-04-12       Impact factor: 3.060

Review 8.  Insulin resistance and the polycystic ovary syndrome revisited: an update on mechanisms and implications.

Authors:  Evanthia Diamanti-Kandarakis; Andrea Dunaif
Journal:  Endocr Rev       Date:  2012-10-12       Impact factor: 19.871

Review 9.  The Pathogenesis of Polycystic Ovary Syndrome (PCOS): The Hypothesis of PCOS as Functional Ovarian Hyperandrogenism Revisited.

Authors:  Robert L Rosenfield; David A Ehrmann
Journal:  Endocr Rev       Date:  2016-07-26       Impact factor: 19.871

10.  Study of RNA interference inhibiting rat ovarian androgen biosynthesis by depressing 17alpha-hydroxylase/17, 20-lyase activity in vivo.

Authors:  Yi Li; Xiao-yan Liang; Li-na Wei; Yong-lao Xiong; Xing Yang; Hui-gan Shi; Zi-hong Yang
Journal:  Reprod Biol Endocrinol       Date:  2009-07-17       Impact factor: 5.211

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