Unhatched bovine blastocysts express all transcripts of the estrogen biosynthetic pathway, but steroid hormone synthesis could not yet be demonstrated

IF 1.9 2区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
R. Fürbass , M. Michaelis , G. Schuler
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引用次数: 0

Abstract

Early embryos of rodent species and rabbits but also farm animals such as pigs, horses and cattle produce estrogens, which are considered important regulators of the implantation process. In cattle, the exact stage at which embryonic estrogen synthesis commences is yet unknown. However, this information is regarded as important to consider a possible role of embryonic estrogens in preimplantation development. Therefore, in this study, we first used quantitative reverse transcription PCR to examine the mRNA expression of the enzymes required for the conversion of cholesterol into free and sulfonated estrogens (CYP11A1, CYP17A1, HSD3B, CYP19A1, and SULT1E1), the cholesterol carrier protein STAR, and the estrogen receptors ESR1 and ESR2 in in vitro produced morulae and unhatched blastocysts (d 6–9). Only in the blastocysts, were the mRNAs of the entire estrogen biosynthesis chain and of both estrogen receptors clearly present, whereas mRNA specific to ESRs was already detectable in the morulae. We also examined the expression of the corresponding enzymes in blastocysts at the protein level. None of the enzymes were detectable by capillary-based western analysis. Immunofluorescence methods were established for the detection of CYP17A1, CYP19A1, and SULT1E1. CYP17A1 was observed in the inner cell mass and trophectoderm, whereas CYP19A1 and SULT1E1 were present only in trophectoderm. An attempt to detect estrogen sulfotransferase activity was unsuccessful. Despite clear evidence that some elements of the estrogen biosynthetic pathway are also present at the protein level, it remains to be clarified whether the enzyme cascade underlying estrogen production is already functional in unhatched blastocysts.

未接种的牛胚泡表达雌激素生物合成途径的所有转录物,但类固醇激素的合成尚未得到证实
啮齿动物和兔子的早期胚胎,以及猪、马和牛等农场动物的早期胚胎都会产生雌激素,雌激素被认为是植入过程的重要调节因子。在牛身上,胚胎雌激素合成开始的确切阶段尚不清楚。然而,这些信息对于考虑胚胎雌激素在植入前发育中的可能作用是重要的。因此,在本研究中,我们首先使用定量逆转录聚合酶链式反应在体外产生的桑椹胚和未孵化的胚泡中检测胆固醇转化为游离和磺化雌激素所需酶(CYP11A1、CYP17A1、HSD3B、CYP19A1和SULT1E1)、胆固醇载体蛋白STAR以及雌激素受体ESR1和ESR2的mRNA表达(第6-9天)。只有在胚泡中,整个雌激素生物合成链和两种雌激素受体的信使核糖核酸都清楚地存在,而在桑椹胚中已经检测到ESR特异性信使核糖核酸。我们还在蛋白质水平上检测了相应酶在胚泡中的表达。基于毛细管的西方分析没有检测到任何酶。建立了检测CYP17A1、CYP19A1和SULT1E1的免疫荧光方法。在内部细胞团和滋养外胚层中观察到CYP17A1,而CYP19A1和SULT1E1仅存在于滋养外胚层。检测雌激素磺基转移酶活性的尝试没有成功。尽管有明确的证据表明雌激素生物合成途径的一些元素也存在于蛋白质水平,但雌激素产生的酶级联是否已经在未孵化的胚泡中发挥作用仍有待澄清。
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来源期刊
Domestic animal endocrinology
Domestic animal endocrinology 农林科学-奶制品与动物科学
CiteScore
5.50
自引率
4.80%
发文量
58
审稿时长
31 days
期刊介绍: Domestic Animal Endocrinology publishes scientific papers dealing with the study of the endocrine physiology of domestic animal species. Those manuscripts utilizing other species as models for clinical or production problems associated with domestic animals are also welcome. Topics covered include: Classical and reproductive endocrinology- Clinical and applied endocrinology- Regulation of hormone secretion- Hormone action- Molecular biology- Cytokines- Growth factors
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