猪甲状腺滤泡及全猪甲状腺碱性成纤维细胞生长因子的分离及部分分子特性研究。

G Bechtner, B Rieder, U Linsenmaier, J Kellermann, W Greil, R Gärtner
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引用次数: 9

摘要

免疫反应性碱性成纤维细胞生长因子(bFGF)可从分离的猪甲状腺滤泡细胞质制剂中分离得到,也可从悬浮培养的甲状腺滤泡条件培养基中分离得到。在十二烷基硫酸钠聚丙烯酰胺凝胶电泳上检测到含有16,500和15,500 D的双条带。在斑点斑点和免疫印迹中,分离的肽与特异性抗牛bFGF抗体具有免疫反应性。通过硫酸铵沉淀、阳离子交换层析和肝素亲和层析,从猪甲状腺中分离出bFGF。从这三种来源获得的材料在对肝素的亲和力和对特异性抗牛bFGF抗体的免疫反应性以及诱导鸡胚绒毛膜尿囊膜新生血管方面是相同的。分离得到的bFGF的16-氨基末端氨基酸序列分析与建立的完整的146-氨基酸bFGF分子一致,只是第10位的甘氨酸被苯丙氨酸取代。另外鉴定的次要肽可能是bFGF的氨基末端截断形式,缺少前15个氨基酸。我们认为,甲状腺细胞释放bFGF的生理意义可能是调节甲状腺发育和甲状腺肿生长过程中的血管生成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation and partial molecular characterization of basic fibroblast growth factor from isolated porcine thyroid follicles and entire porcine thyroid glands.

Immunoreactive basic fibroblast growth factor (bFGF) could be isolated from the cytosol preparation of isolated porcine thyroid follicles as well as in the conditioned medium from thyroid follicles in suspension culture. A double band with 16,500 and 15,500 D was detected on sodium dodecyl sulfate polyacrylamide gel electrophoresis. In dot blot and western blot the isolated peptide was immunoreactive with a specific anti-bovine bFGF antibody. For further biochemical characterization, bFGF was isolated from entire porcine thyroid glands by ammonium sulfate precipitation, cation exchange chromatography and heparin affinity chromatography. The material obtained from all three origins was identical concerning affinity to heparin and immunoreactivity with the specific anti-bovine bFGF antibody and induced neovascularization in the chorioallantois membranes of chick embryos. Amino acid sequence analysis of the 16-amino-terminal amino acids of the isolated bFGF was in accordance with the established complete 146-amino-acid bFGF molecule except that glycine in position 10 is replaced by phenylalanine. An additionally identified minor peptide presumably is an amino-terminal-truncated form of bFGF, missing the first 15 amino acids. We conclude that the physiological significance of bFGF released by thyroid cells may be the regulation of angiogenesis during thyroid development and goiter growth.

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