氚离子束标记新技术  被引量:1

A new technique of ion beam tritium labelling

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作  者:张年宝[1] 盛树刚[1] 要福增[1] 谢炳华[1] 周美英[1] 曹蓉珍[1] 俞斌伟[1] 钟德松[1] 秦锐芳[1] 王国平[1] 

机构地区:[1]中国科学院上海原子核研究所

出  处:《核技术》1990年第10期599-606,共8页Nuclear Techniques

摘  要:本文介绍一种先进的氚离子束标记技术,用于蛋白质、肽和非挥发性有机化合物的氚标记。在该技术中,加速受激发的氚离子束,去轰击固体样品,发生氢-氚交换反应。氚化大豆胰蛋白酶抑制剂、核糖核酸酶A、弹性蛋白和茯苓聚糖等十一种化合物已用此法输备。氚化粗产物经透析、离子交换色层和凝胶过滤等方法纯化后,蛋白质和聚糖的比活性一般可达37GBq/mmol以上,没有放射性副产物和具有与天然物质相同的生物活性。氚化蛋白质的氨基酸分析表明,在蛋白质中,His、Tyr和Phe残基具有较高的比活性而Val、Ile和Ser残基的比活性较低。In this paper a new technique is reported for tritium labelling of proteins, peptides and other nonvolatile organic compounds. A tritium ion beam is accelerated to bombard solid sample target for producing tritium exchange with hydrogen. The tritium labelling method has been applied to tritiated soybean trypsin inhibitor, ribonuclease A, elastin, pa-chyman and others totalled 11. After purifying by dialysis, ion exchange chromatography and gel filtration, the tritiated proteins and polysaccharide were obtained with specific activity over 37GBq/mmol, without decomposition and with biological activity well preserved. By amino acid analysis of tritiated protein it was shown that the relative specific radioactivities for His., Tyr. and Phe. residues were higher while those for Val., He. and Ser. residues were lower.

关 键 词:氚离子束 标记 氢-氚交换 氚化肽 

分 类 号:TL923[核科学技术—核燃料循环与材料]

 

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