首页> 外文期刊>The Journal of Reproduction and Development >Seasonal Changes in Immunoreactivity of Activin Signaling Component Proteins in Wild Ground Squirrel Testes
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Seasonal Changes in Immunoreactivity of Activin Signaling Component Proteins in Wild Ground Squirrel Testes

机译:野松鼠睾丸中激活素信号成分蛋白免疫反应性的季节性变化

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摘要

The seasonal spermatogenesis and localization of inhibin/activin subunits (alpha, betaA, betaB) in the testes of wild ground squirrel has been previously described; however, the expression pattern of activin receptors and cytoplasmic signaling SMADs has not been detected in any seasonal breeders. The objective of this study was to investigate the abundance and cellular localization of activin signaling components in testes of the wild ground squirrel during the breeding and nonbreeding seasons. The immunolocalizations of ActRIIB (activin type II receptor B) and activin-related SMADs (phospho-SMAD2/3, SMAD4 and SMAD7) were observed by immunohistochemistry. Total proteins were extracted from testicular tissues in the breeding and nonbreeding seasons and were used for Western blotting analysis for ActRIIB and SMADs. Immunoreactivities of activin signaling components were greater in the testes of the breeding season, and then decreased to a relatively low level in the nonbreeding season. ActRIIB and related SMADs were widely spread in the active testes, while spermatogonia were the predominant cellular sites of activin signal transduction during arrested spermatogenesis. The dynamic regulation of activin type II receptor and SMADs indicated that the activin signal pathway played an important paracrine role in seasonal spermatogenesis of the wild ground squirrel. Furthermore, the distinct localizations and immunoreactivity of ActRIIB and SMADs might suggest different functions of activin in seasonal spermatogenesis.
机译:先前已经描述了野生松鼠睾丸中抑制素/激活素亚基(α,βA,βB)的季节性生精和定位;但是,尚未在任何季节性育种者中检测到激活素受体和细胞质信号SMAD​​的表达模式。这项研究的目的是调查在繁殖和非繁殖季节野生地松鼠睾丸中激活素信号成分的丰度和细胞定位。通过免疫组织化学观察到ActRIIB(II型激活素B受体)和与激活素相关的SMADs(磷酸化SMAD2 / 3,SMAD4和SMAD7)的免疫定位。在繁殖和非繁殖季节从睾丸组织中提取总蛋白,并将其用于ActRIIB和SMAD的Western印迹分析。激活素信号转导成分的免疫反应性在繁殖季节的睾丸中较高,然后在非繁殖季节降至相对较低的水平。 ActRIIB和相关的SMADs在活跃的睾丸中广泛传播,而精原细胞是精子发生停止过程中激活素信号转导的主要细胞部位。激活素II型受体和SMAD的动态调节表明,激活素信号通路在野地松鼠的季节性精子发生中起重要的旁分泌作用。此外,ActRIIB和SMAD的独特定位和免疫反应性可能暗示了激活素在季节性精子发生中的不同功能。

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