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Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse

FSH acts through the Sertoli cell to ensure normal testicular development and function. To identify transcriptional mechanisms through which FSH acts in the testis, we have treated gonadotrophin-deficient hypogonadal (hpg) mice with recombinant FSH and measured changes in testicular transcript level...

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Autores principales: Abel, M H, Baban, D, Lee, S, Charlton, H M, O'Shaughnessy, P J
Formato: Texto
Lenguaje:English
Publicado: Society for Endocrinology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2659293/
https://www.ncbi.nlm.nih.gov/pubmed/19136570
http://dx.doi.org/10.1677/JME-08-0107
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author Abel, M H
Baban, D
Lee, S
Charlton, H M
O'Shaughnessy, P J
author_facet Abel, M H
Baban, D
Lee, S
Charlton, H M
O'Shaughnessy, P J
author_sort Abel, M H
collection PubMed
description FSH acts through the Sertoli cell to ensure normal testicular development and function. To identify transcriptional mechanisms through which FSH acts in the testis, we have treated gonadotrophin-deficient hypogonadal (hpg) mice with recombinant FSH and measured changes in testicular transcript levels using microarrays and real-time PCR 12, 24 and 72 h after the start of treatment. Approximately 400 transcripts were significantly altered at each time point by FSH treatment. At 12 h, there was a clear increase in the levels of a number of known Sertoli cell transcripts (e.g. Fabp5, Lgals1, Tesc, Scara5, Aqp5). Additionally, levels of Leydig cell transcripts were also markedly increased (e.g. Ren1, Cyp17a1, Akr1b7, Star, Nr4a1). This was associated with a small but significant rise in testosterone at 24 and 72 h. At 24 h, androgen-dependent Sertoli cell transcripts were up-regulated (e.g. Rhox5, Drd4, Spinlw1, Tubb3 and Tsx) and this trend continued up to 72 h. By contrast with the somatic cells, only five germ cell transcripts (Dkkl1, Hdc, Pou5f1, Zfp541 and 1700021K02Rik) were altered by FSH within the time-course of the experiment. Analysis of canonical pathways showed that FSH induced a general decline in transcripts related to formation and regulation of tight junctions. Results show that FSH acts directly and indirectly to induce rapid changes in Sertoli cell and Leydig cell transcript levels in the hpg mouse but that effects on germ cell development must occur over a longer time-span.
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spelling pubmed-26592932009-04-01 Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse Abel, M H Baban, D Lee, S Charlton, H M O'Shaughnessy, P J J Mol Endocrinol Regular papers FSH acts through the Sertoli cell to ensure normal testicular development and function. To identify transcriptional mechanisms through which FSH acts in the testis, we have treated gonadotrophin-deficient hypogonadal (hpg) mice with recombinant FSH and measured changes in testicular transcript levels using microarrays and real-time PCR 12, 24 and 72 h after the start of treatment. Approximately 400 transcripts were significantly altered at each time point by FSH treatment. At 12 h, there was a clear increase in the levels of a number of known Sertoli cell transcripts (e.g. Fabp5, Lgals1, Tesc, Scara5, Aqp5). Additionally, levels of Leydig cell transcripts were also markedly increased (e.g. Ren1, Cyp17a1, Akr1b7, Star, Nr4a1). This was associated with a small but significant rise in testosterone at 24 and 72 h. At 24 h, androgen-dependent Sertoli cell transcripts were up-regulated (e.g. Rhox5, Drd4, Spinlw1, Tubb3 and Tsx) and this trend continued up to 72 h. By contrast with the somatic cells, only five germ cell transcripts (Dkkl1, Hdc, Pou5f1, Zfp541 and 1700021K02Rik) were altered by FSH within the time-course of the experiment. Analysis of canonical pathways showed that FSH induced a general decline in transcripts related to formation and regulation of tight junctions. Results show that FSH acts directly and indirectly to induce rapid changes in Sertoli cell and Leydig cell transcript levels in the hpg mouse but that effects on germ cell development must occur over a longer time-span. Society for Endocrinology 2009-04 /pmc/articles/PMC2659293/ /pubmed/19136570 http://dx.doi.org/10.1677/JME-08-0107 Text en © 2009 Society for Endocrinology http://www.endocrinology.org/journals/reuselicence/ This is an Open Access article distributed under the terms of the Society for Endocrinology's Re-use Licence (http://www.endocrinology.org/journals/reuselicence/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular papers
Abel, M H
Baban, D
Lee, S
Charlton, H M
O'Shaughnessy, P J
Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse
title Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse
title_full Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse
title_fullStr Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse
title_full_unstemmed Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse
title_short Effects of FSH on testicular mRNA transcript levels in the hypogonadal mouse
title_sort effects of fsh on testicular mrna transcript levels in the hypogonadal mouse
topic Regular papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2659293/
https://www.ncbi.nlm.nih.gov/pubmed/19136570
http://dx.doi.org/10.1677/JME-08-0107
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