首页> 外文期刊>Domestic Animal Endocrinology >Effect of 3,3 ',5-triiodothyronine and 3,5-diiodothyronine on progesterone production, cAMP synthesis, and mRNA expression of STAR, CYP11A1, and HSD3B genes in granulosa layer of chicken preovulatory follicles
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Effect of 3,3 ',5-triiodothyronine and 3,5-diiodothyronine on progesterone production, cAMP synthesis, and mRNA expression of STAR, CYP11A1, and HSD3B genes in granulosa layer of chicken preovulatory follicles

机译:3,3',5-三碘甲甲状腺素和3,5-二碘甲甲状腺素对鸡排卵前卵泡颗粒层中孕酮产生,cAMP合成以及STAR,CYP11A1和HSD3B基因mRNA表达的影响

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摘要

In vitro studies were performed to assess whether stimulatory effects of triiodothyronine (T-3) on progesterone (P-4) production in a granulosa layer (GL) of chicken preovulatory follicles are associated with 3',5'-cyclic adenosine monophosphate (cAMP) synthesis and mRNA expression of STAR protein, CYP11A1, and HSD3B. Effects of 3,5-diiodothyronine (3,5-T-2) on steroidogenic function in these follicles were also investigated. The GL of F3 to F1 follicles was incubated in medium supplemented with T-3 or 3,5-T-2, LH, or forskolin (F), and a combination of each iodothyronine with LH or F. Levels of P-4 and cAMP in culture media were determined by RIA. Expression of genes involved in P-4 synthesis (ie. STAR protein, CYP11A1, and HSD3B) in the GL of F3 to F1 follicles incubated in medium with T-3 or 3,5-T-2 and their combination with LH was performed by real-time PCR. Triiodothyronine increased basal and LH- and F-stimulated P-4 secretion by preovulatory follicles. The 3.5-T-2 elevated P-4 synthesis by F3, had no effect on F2 follicles, and diminished P-4 production by the GL of F1 follicles. It had no effect on LH-stimulated P-4 production; however, it augmented F-stimulated P-4 production by F2 and F1 follicles. Although T, did not affect basal and F-stimulated cAMP synthesis by the GL of preovulatory follicles, it increased LH-stimulated synthesis of this nucleotide. However, 3,5-T-2 elevated F-stimulated cAMP synthesis in F3 and F2 follicles; it did not change basal and LH-stimulated cAMP production. Triiodothyronine decreased basal STAR and CYP11A1 mRNAs in F3 follicles, increased them in F1 follicles, and elevated HSD3B mRNA levels in F1 follicles. Triiodothyronine augmented LH-stimulated STAR, CYP11A1, and HSD3B mRNA levels in F2 and CYP11A1 in F1 follicles. However. T decreased LH-stimulated STAR and HSD3B mRNA levels in F1 follicles. The 3,5-T-2 did not affect basal STAR and CYP11A1 mRNA expression in all investigated follicles; however, it decreased LH-stimulated STAR expression in F2 and F1 ones. The effects of 3,5-T-2 caused elevated basal but diminished LH-stimulated HSD3B mRNA levels. In conclusion, data indicate that both iodothyronines are involved in P-4 production in the GL of chicken preovulatory follicles acting alone and additively with LH. Effects of iodothyronines depend on follicle maturation and are associated with modulation of cAMP synthesis and STAR, CYP11A1, and HSD3B mRNA expression. We suggest that iodothyronines participate in maturation and ovulation of chicken follicles
机译:进行了体外研究以评估三碘甲状腺素(T-3)对鸡排卵前卵泡颗粒层(GL)中孕酮(P-4)产生的刺激作用是否与3',5'-环磷酸腺苷(cAMP)相关)STAR蛋白,CYP11A1和HSD3B的合成及其mRNA表达。还研究了3,5-二碘甲状腺素(3,5-T-2)对这些卵泡中类固醇生成功能的影响。 F3至F1卵泡的GL在补充有T-3或3,5-T-2,LH或毛喉素(F)以及每种碘甲状腺素与LH或F的组合的培养基中孵育.P-4和通过RIA确定培养基中的cAMP。在含有T-3或3,5-T-2的培养基中孵育F3至F1卵泡的P3合成的GL中,参与P-4合成的基因(即STAR蛋白,CYP11A1和HSD3B)的表达及其与LH的结合通过实时PCR。 Triiodothyronine通过排卵前卵泡增加基础以及LH和F刺激的P-4分泌。 F3可以提高3.5-T-2的P-4合成,对F2卵泡没有影响,并且减少了GL对F1卵泡的P-4产生。它对LH刺激的P-4产生没有影响;然而,它通过F2和F1卵泡增加了F刺激的P-4产生。尽管T不影响排卵前卵泡GL的基础和F刺激的cAMP合成,但它增加了LH刺激的该核苷酸的合成。然而,F3和F2卵泡中3,5-T-2升高了F刺激的cAMP合成;它并没有改变基础和LH刺激的cAMP产生。 Triiodothyronine降低F3卵泡中的基础STAR和CYP11A1 mRNAs,增加F1卵泡中的基础STAR和CYP11A1 mRNA,并提高F1卵泡中的HSD3B mRNA水平。 Triiodothyronine增加LH刺激F1卵泡中F2和CYP11A1的STAR,CYP11A1和HSD3B mRNA水平。然而。 T降低F1卵泡中LH刺激的STAR和HSD3B mRNA水平。 3,5-T-2不会影响所有研究卵泡的基础STAR和CYP11A1 mRNA表达。然而,它减少了LH刺激的F2和F1的STAR表达。 3,5-T-2的作用导致基础升高,但LH刺激的HSD3B mRNA水平降低。总之,数据表明两种碘甲状腺素都参与了单独和与LH共同作用的鸡排卵前卵泡的GL中的P-4产生。碘甲状腺素的作用取决于卵泡的成熟,并与cAMP合成以及STAR,CYP11A1和HSD3B mRNA表达的调节有关。我们建议碘甲状腺素参与鸡卵泡的成熟和排卵

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