4.5 Article

Free Fatty Acids Induce Lhb mRNA but Suppress Fshb mRNA in Pituitary LβT2 Gonadotropes and Diet-Induced Obesity Reduces FSH Levels in Male Mice and Disrupts the Proestrous LH/FSH Surge in Female Mice

Journal

ENDOCRINOLOGY
Volume 154, Issue 6, Pages 2188-2199

Publisher

ENDOCRINE SOC
DOI: 10.1210/en.2012-2218

Keywords

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Funding

  1. Eunice Kennedy Shriver National Institute of Child Health and Human Development/National Institutes of Health, Specialized Cooperative Centers Program in Infertility Research [U54 HD012303]
  2. National Institutes of Health [DK033651, DK074868, HD047400, DK007494, DK090962, DK063491, CA023100, CA155435]
  3. Veterans Affairs Merit Award [BX000130]

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Female obesity is associated with insulin resistance, hyperandrogenemia, and reproductive dysfunction. We hypothesized that elevated free fatty acids (FFAs) might directly modulate pituitary gonadotropin production. FFAs caused a time-and dose-dependent increase in phosphorylation of the MAPKs p38MAPK, c-Jun N-terminal kinase (JNK)-1/2, and ERK1/2 in L beta T2 gonadotrope cells. Furthermore, FFAs up-regulated Lhb mRNA expression acutely, an effect that was blocked by JNK inhibition, but suppressed Fshb mRNA expression, an effect that was independent of MAPK signaling. FFAs enhanced the activation of the MAPKs in the presence of GnRH, although the cotreatment did not alter Lhb induction but did eliminate the GnRH induction of Fshb. FFAs also suppressed activin-induced Fshb expression. Knockdown experiments showed that the FFA effect on the inflammatory kinases p38MAPK and JNK and on Lhb, but not Fshb, mRNA expression is mediated via toll-like receptor-2 and toll-like receptor-4 and was mimicked by lipopolysaccharide stimulation. In vivo, male C57BL/6 mice on a high-fat diet showed reduced FSH levels consistent with the suppression of Fshb seen in vitro. Histological analysis of the testes showed an increased number of abnormal seminiferous tubules. Female mice on a high-fat diet lacked the expected proestrus LH and FSH surge and exhibited an increase in the number of days at estrus and a reduced number of days at proestrus, and ovaries had significantly fewer corporalutea. Taken together, our findings suggest that lipid excess can lead to reproductive defects in both male and female mice.

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