卵生蜥蜴性腺性别分化过程中芳香化酶(CYP19)的时空表达

B. S. Khodnapur, R. S. Nindi, Rahul M. Handi, Jyoti F. Hiremath, S. Dasari, P. Seshagiri, L. S. Inamdar
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引用次数: 1

摘要

甾体性激素在性腺性别分化和发育中起着至关重要的作用。在性类固醇中,雌二醇在许多表现出温度依赖性性别决定(TSD)的爬行动物的性别分化中起着中心作用。近年来,越来越多的信息强调了芳香化酶(CYP19)在卵巢形态发生过程中通过芳香化不可逆地催化雄激素转化为雌激素的重要性。为了阐明芳香化酶在这一过程中的作用,我们研究了具有独特的TSD模式的Calotes versicolor蜥蜴胚胎中芳香化酶的个体发生和细胞表达。卵孵化温度为31.5±0.5°C,为100%雌产温度。在不同发育阶段收集含有肾上腺-肾-性腺(AKG)复合物的胚胎躯干,进行免疫印迹和免疫组织化学分析。Western blot分析显示,在热敏期(TSP)早期,AKG复合物总蛋白提取物中存在一个58 kDa的芳香化酶免疫反应蛋白,提示芳香化酶的作用较早。在早期TSP中,在肾上腺皮质细胞、中肾小管(28期)和性腺髓质区域(30期)的细胞质中发现了非常弱但特异性的芳香化酶免疫表达,这表明芳香化酶活性的早期发作,这反过来表明这些是雌激素生物合成的部位。此外,芳香化酶免疫反应强度在TSP晚期和性腺分化阶段显著增加,表明芳香化酶的上调和雌激素的生物合成导致卵巢分化。由此推测,花椒FPT部位芳香化酶的高表达与促进卵巢分化的皮质增生有关。
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Spatiotemporal Expression of Aromatase (CYP19) During Gonadal Sex Differentiation in the Oviparous Lizard Calotes versicolor
Steroidal sex hormones play critical rolest during gonadal sex differentiation and development. Among the sex steroids, estradiol acts at the central level in the sexual differentiation of many reptilian species exhibiting temperature-dependent sex determination (TSD). In recent years, the growing amount of information has highlighted the importance of aromatase (CYP19) in irreversibly catalyzing conversion of androgens into estrogens by aromatization during ovarian morphogenesis. To elucidate the involvement of aromatase in this process we investigated the ontogenic and cellular expression of aromatase in the embryos of the lizard Calotes versicolor that exhibits a unique pattern of TSD. The eggs of this lizard were incubated at 31.5±0.5°C which is 100% Female-Producing Temperature (FPT). The torso of embryos containing Adrenal- Kidney-Gonadal (AKG) complex was collected during different stages of development and subjected to Western blotting and immunohistochemical analysis. Western blot analysis revealed a single immunoreactive protein at 58 kDa for aromatase in the total protein extracts of AKG complex during early Thermo-Sensitive Period (TSP) suggesting early action of aromatase. A very weak but specific immunoexpression of aromatase noticed in the cytoplasm of adrenocortical cells, mesonephric kidney tubules (stage 28) and medullary region of the gonad (stage 30) during early TSP suggests early onset of aromatase activity which in turn indicates that these are the sites of estrogen biosynthesis. Further, a remarkable increase in the intensity of immunoreaction for aromatase during late TSP and gonadal differentiation stage shows it’s up-regulation and estrogen biosynthesis resulting in ovary differentiation. It is inferred that high expression level of aromatase at FPT is associated with proliferation of cortex facilitating differentiation of ovary in C. versicolor .
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