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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Regulation of granulosa cell cocaine and amphetamine regulated transcript (CART) binding and effect of CART signaling inhibitor on granulosa cell estradiol production during dominant follicle selection in cattle.
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Regulation of granulosa cell cocaine and amphetamine regulated transcript (CART) binding and effect of CART signaling inhibitor on granulosa cell estradiol production during dominant follicle selection in cattle.

机译:调节颗粒细胞可卡因和Amphetamine调节转录物(推车)结合和推车信号抑制剂对牛粒细胞雌二醇雌二醇产生的结合及影响。

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摘要

We previously established a potential role for cocaine and amphetamine regulated transcript (CARTPT) in dominant follicle selection in cattle. CARTPT expression is elevated in subordinate versus dominant follicles, and treatment with the mature form of the CARTPT peptide (CART) decreases follicle-stimulating hormone (FSH)-stimulated granulosa cell estradiol production in vitro and follicular fluid estradiol and granulosa cell CYP19A1 mRNA in vivo. However, mechanisms that regulate granulosa cell CART responsiveness are not understood. In this study, we investigated hormonal regulation of granulosa cell CART-binding sites in vitro and temporal regulation of granulosa cell CART-binding sites in bovine follicles collected at specific stages of a follicular wave. We also determined the effect of inhibition of CART receptor signaling in vivo on estradiol production in future subordinate follicles. Granulosa cell CART binding in vitro was increased by FSH, and this induction was blocked by estrogen receptor antagonist treatment. In follicles collected in vivo at specific stages of a follicular wave, granulosa cell CART binding in the F2 (second largest), future subordinate follicle increased during dominant follicle selection. Injection into the F2 follicle (at onset of diameter deviation) of an inhibitor of the o/i subclass of G proteins (previously shown to block CART actions in vitro) resulted in increased follicular fluid estradiol concentrations in vivo. Collectively, results demonstrate hormonal regulation of granulosa cell CART binding in vitro and temporal regulation of CART binding in subordinate follicles during dominant follicle selection. Results also suggest that CART signaling may help suppress estradiol-producing capacity of the F2 (subordinate) follicle during this time period.
机译:我们之前为可卡因和Amphetamine受调节转录物(Cartpt)在牛中的主要卵泡选择中建立了潜在的作用。笛卡特表达在下属与显性卵泡中升高,并且用毛囊肽(推车)的成熟形式的治疗减少了卵泡刺激激素(FSH) - 刺激的颗粒组细胞雌二醇在体外和颗粒细胞CYP19A1 mRNA中的生产。然而,不理解调节粒细胞传感器响应性的机制。在这项研究中,我们研究了在滤泡波的特定阶段收集的牛卵泡中颗粒细胞诱导细胞结合位点的体外和时间调节的颗粒细胞带式结合位点的激素调节。我们还确定了在未来从属卵泡中抑制抑制患者受体信号传导在体内雌二醇产生的影响。通过FSH增加体外颗粒细胞推车在体外增加,并且通过雌激素受体拮抗剂治疗阻断该诱导。在体内收集的卵泡在滤泡波的特定阶段,颗粒式电池推车在F2(第二大)中结合,未来从属卵泡在显性卵泡选择期间增加。将G蛋白的O / I亚类的抑制剂(先前所示以阻断体外阻断推车的直径偏离的直径偏差)注射,导致体内滤泡流体雌二醇浓度增加。统称,结果表明颗粒细胞传递在粒度卵泡选择中颗粒细胞传递结合的造粒细胞传递和时间调节。结果还表明推车信号传导可以有助于在该时间段期间抑制F2(从属)卵泡的雌二醇产生能力。

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