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人附睾上皮细胞培养物中成熟相关麦胚凝集素结合蛋白的鉴定

Identification of maturation-related wheat-germ lectin-binding proteins in the culture of human corpus epididymal epithelial cells.

作者信息

Sun G H, Liu H W, Lin Y C, Yu D S, Chang S Y

机构信息

Department of Surgery, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan, Republic of China.

出版信息

Arch Androl. 2000 Jul-Aug;45(1):53-60.

Abstract

This study is designed to investigate the synthesis of maturation-related wheat germ agglutinin (WGA) binding glycoproteins in the human corpus epididymal epithelial cells by in vitro culture. Epithelial cells were isolated from the corpus of human epididymides and cultured with RPMI 1640 medium supplemented with 10% fetal calf serum in type IV collagen-coated dishes at 37 degrees C. The epithelial nature, presence of fibroblasts, WGA-binding sites, and existence of GP-83 were determined by an indirect immunocytochemical and histochemical staining technique. Proteins in the cultured cells were analyzed by SDS-PAGE and autoradiography. After culturing for 10 days, the cells were shown to be positive with epithelial cell-specific keratins but devoid of fibroblasts. WGA-binding granules and positive binding sites of GP-83 were also detected in the cytoplasm. Immunoblots of cell extracts probed with the anti-GP-83 antibody from seminal fluid revealed the sperm maturation-related glycoprotein GP-83. The results indicate that WGA-binding proteins may be synthesized by the corpus epididymal epithelial cells of human and GP-83 may play an important role in sperm maturation. This culture model may be suitable for the investigation on the biosynthesis and physiology of human epididymal principal cells in vitro.

摘要

本研究旨在通过体外培养研究人附睾体部上皮细胞中与成熟相关的麦胚凝集素(WGA)结合糖蛋白的合成。从人附睾体部分离上皮细胞,在涂有IV型胶原的培养皿中,于37℃用补充有10%胎牛血清的RPMI 1640培养基培养。通过间接免疫细胞化学和组织化学染色技术确定上皮细胞性质、成纤维细胞的存在、WGA结合位点以及GP - 83的存在。用SDS - PAGE和放射自显影分析培养细胞中的蛋白质。培养10天后,细胞显示上皮细胞特异性角蛋白呈阳性,但无成纤维细胞。在细胞质中也检测到WGA结合颗粒和GP - 83的阳性结合位点。用来自精液的抗GP - 83抗体探测细胞提取物的免疫印迹显示出与精子成熟相关的糖蛋白GP - 83。结果表明,WGA结合蛋白可能由人附睾体部上皮细胞合成,并且GP - 83可能在精子成熟中起重要作用。这种培养模型可能适用于体外研究人附睾主细胞的生物合成和生理学。

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