Putative role of cocaine- and amphetamine-regulated transcript (CARTPT) in dominant follicle selection in cattle.

G W Smith, A Sen, J K Folger, J J Ireland
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Abstract

The mechanisms regulating development of a single (dominant) follicle capable of ovulation during each follicular wave in cattle and atresia of remaining follicles (dominant follicle selection) are not well understood. FSH and IGF1 are known regulators of follicle growth and granulosa cell estradiol production during follicular waves. Recent evidence indicates cocaine and amphetamine regulated transcript (CARTPT), with intraovarian expression only in single-ovulating species, is a novel regulator of follicular development. The mature CARTPT peptide (CART) is a potent negative regulator of FSH and IGF1 action on granulosa cells in vitro and can inhibit follicular estradiol production in vivo. Follicular fluid CART concentrations in healthy follicles decrease after dominant follicle selection and CARTPT mRNA is lower in healthy versus atretic follicles collected prior to and early after initiation of follicle dominance, suggestive of a regulatory role in the selection process. The inhibitory actions of CART on FSH signaling and estradiol production are dependent on the G(o/i)-subclass of inhibitory G proteins and linked to multiple components of the FSH signal transduction pathway resulting in reduced CYP19A1 mRNA and estradiol production. Evidence to date supports a potential important functional role for CART in regulation of dominant follicle selection and the species-specific ovulatory quota in monotocous species.

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可卡因和安非他明调控转录本(CARTPT)在牛显性卵泡选择中的作用。
在牛的每次卵泡波中,调节能够排卵的单个(显性)卵泡发育和剩余卵泡闭锁(显性卵泡选择)的机制尚不清楚。FSH和IGF1是已知的卵泡生长和卵泡波期间颗粒细胞雌二醇产生的调节因子。最近的证据表明,可卡因和安非他命调节转录本(CARTPT)仅在单一排卵物种的卵巢内表达,是卵泡发育的一种新的调节剂。成熟的CARTPT肽(CART)在体外是FSH和IGF1对颗粒细胞作用的有效负调节因子,在体内可以抑制卵泡雌二醇的产生。在优势卵泡选择后,健康卵泡中的卵泡液CART浓度降低,而在卵泡优势开始前和开始后早期收集的健康卵泡中,CARTPT mRNA低于闭锁卵泡,提示在选择过程中起调节作用。CART对FSH信号传导和雌二醇产生的抑制作用依赖于抑制G蛋白的G(o/i)-亚类,并与FSH信号转导途径的多个组分相关,导致CYP19A1 mRNA和雌二醇产生减少。迄今为止的证据表明,在单株物种中,CART在调节显性卵泡选择和物种特异性排卵配额方面具有潜在的重要功能作用。
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