泛素-蛋白酶体和内吞途径组分在大鼠附睾传出小管上皮和初始段的细胞和区域分布

Cleida A. Oliveira, Anna Bolivar Victor-Costa, Rex A. Hess
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引用次数: 9

摘要

摘要:男性生殖道的输出小管中含有高浓度的雌激素受体(ER),雌激素受体对调节液体重吸收和维持正常上皮形态至关重要。抗雌激素ICI 182780和17β-雌二醇治疗导致ERα表达降低;然而,调控下调的机制尚不确定。在其他组织中,泛素-蛋白酶体途径似乎在调节ERα转换中起主导作用,尽管在传出小管中,丰富的上皮溶酶体也可能参与蛋白质转换。为了研究这种活性,我们检测了大鼠附睾传出小管和初始节段中蛋白酶体、泛素和内噬器标志物(早期内噬体抗原-1 [EEA1]、聚簇素和组织蛋白酶D)的表达。在上皮细胞中观察到不同的细胞、亚细胞和区域分布。传出管中蛋白酶体、泛素、EEA1和聚集素染色呈梯度,从近端区到末端共管下降30%-41%。抗雌激素治疗导致传出管中蛋白酶体、EEA1和聚集素的显著降低。泛素-蛋白酶体和内吞途径成分的定位表明,传出小管和附睾头部的蛋白质降解和周转需要不同的调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cellular and Regional Distributions of Ubiquitin-Proteasome and Endocytotic Pathway Components in the Epithelium of Rat Efferent Ductules and Initial Segment of the Epididymis

Cellular and Regional Distributions of Ubiquitin-Proteasome and Endocytotic Pathway Components in the Epithelium of Rat Efferent Ductules and Initial Segment of the Epididymis

ABSTRACT: Efferent ductules of the male reproductive tract contain high concentrations of estrogen receptors (ER), which are essential for the regulation of fluid reabsorption and maintenance of normal epithelial morphology. Treatments with the antiestrogen ICI 182,780 and 17β-estradiol cause a reduction in ERα expression; however, the mechanisms governing the down-regulation are undetermined. In other tissues, the ubiquitin-proteasome pathway appears to have a dominant role in regulating ERα turnover, although in the efferent ductules, an abundance of epithelial lysosomes could also participate in protein turnover. To study this activity, the expressions of proteasome, ubiquitin, and markers for the endocytotic apparatus (early endosome antigen-1 [EEA1], clusterin, and cathepsin D) were examined in rat efferent ductules and initial segment of epididymis. Distinct cellular, subcellular, and regional distributions of these proteins were observed in the epithelial cells. A gradient of proteasome, ubiquitin, EEA1, and clusterin staining was seen in the efferent ducts, which decreased 30%–41% from the proximal zone to the terminal common duct. Antiestrogen treatment resulted in significant decreases in proteasome, EEA1, and clusterin in the efferent ducts. Localization of ubiquitin-proteasome and endocytotic pathway components suggests that differential regulation is required for protein degradation and turnover in efferent ductules and head of the epididymis.

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来源期刊
Journal of andrology
Journal of andrology 医学-男科学
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