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大鼠精子在附睾转运过程中内质网蛋白29(ERp29)的鉴定与特性分析

Identification and characterization of ERp29 in rat spermatozoa during epididymal transit.

作者信息

Guo Wei, Qu Fei, Xia Li, Guo Qiangsu, Ying Xiaoqian, Ding Zhide

机构信息

Shanghai Key Laboratory for Reproductive Medicine, Histology and Embryology, School of Medicine, Shanghai Jiao Tong University, No. 280, Chong Qing Rd. (South), Shanghai 200025, China.

出版信息

Reproduction. 2007 Mar;133(3):575-84. doi: 10.1530/REP-06-0301.

Abstract

The mammalian epididymis is able to create sequential changes in the composition of luminal fluid throughout its length, wherein spermatozoa undergo morphological, biochemical, and physiological modifications. Subsequently, spermatozoa acquire the ability for fertilization upon reaching the epididymal cauda. In this study, protein variations in Sprague-Dawley rat spermatozoa along the caput and caudal regions of epididymis were investigated by high-resolution two-dimensional gel electrophoresis (2DE) in combination with mass spectrometry. From total protein spots on the 2DE maps, 43 spots were shown to be significantly modified as sperm traverse the epididymis, and seven unambiguous proteins were identified from them. Finally, using indirect immunofluorescence, we demonstrated that localization of one of these seven proteins, the endoplasmic reticulum protein (ERp29) precursor, which was first reported in mammalian spermatozoa, was apparently up-regulated as the sperm underwent epididymal maturation and expressed mainly on caudal sperm. Western blot analysis also revealed that ERp29 precursor, from both whole spermatozoa and membrane proteins, increased significantly as the sperm underwent epididymal maturation. Furthermore, the results from immunofluorescence-stained epididymal frozen sections demonstrated that ERp29 was localized in cytoplasm of epididymal epithelia, and the fluorescence intensity was significantly higher in the caudal epididymis than in the caput. These clues indicated that the ERp29 precursor, perhaps related to secretory protein synthesis and absorbed by spermatozoa, may play a vital role in sperm maturation during the epididymal transit, particularly, in the sperm/organelle membrane.

摘要

哺乳动物的附睾能够在其整个长度范围内使管腔液的成分发生连续变化,精子在这个过程中经历形态、生化和生理方面的改变。随后,精子在到达附睾尾部时获得受精能力。在本研究中,通过高分辨率二维凝胶电泳(2DE)结合质谱法,研究了Sprague-Dawley大鼠精子在附睾头和尾区域的蛋白质变化。从2DE图谱上的总蛋白点中,有43个点显示随着精子穿过附睾而发生显著改变,从中鉴定出了7种明确的蛋白质。最后,通过间接免疫荧光法,我们证明了这7种蛋白质之一,即内质网蛋白(ERp29)前体(首次在哺乳动物精子中报道),在精子经历附睾成熟过程中其定位明显上调,并且主要在尾部精子上表达。蛋白质印迹分析还显示,无论是全精子还是膜蛋白中的ERp29前体,随着精子经历附睾成熟都显著增加。此外,免疫荧光染色的附睾冰冻切片结果表明,ERp29定位于附睾上皮细胞的细胞质中,并且在附睾尾部的荧光强度明显高于附睾头部。这些线索表明,ERp29前体可能与分泌蛋白合成有关并被精子吸收,在精子通过附睾的过程中,特别是在精子/细胞器膜中,可能在精子成熟过程中发挥重要作用。

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