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植物抗冻蛋白及其高级结构研究进展

Research Progress of Plant Antifreeze Proteins and Their Advanced Structures

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【作者】 张党权谭晓风乌云塔娜王金发

【Author】 ZHANG Dang-quan~1, TAN Xiao-feng~1, WUYUN Ta-na~1, WANG Jin-fa~2 (1.The Key Lab. of Non-Wood Forest Product of Forestry Ministry, CSFU, Changsha 410004, Hunan, China; 2.The Key Lab. of Gene Engineering of Ministry of Education, Sun Yat-sen University, Guangzhou 510275, Guangdong, China)

【机构】 中南林学院经济林育种与栽培国家林业局重点实验室中山大学生命科学学院教育部基因工程重点实验室 湖南长沙410004湖南长沙410004广东广州510275

【摘要】 抗冻蛋白是一类能控制冰晶生长和抑制冰晶之间发生重结晶的蛋白质,并具有两种明显不同的活性——热滞活性和重结晶抑制活性.植物抗冻蛋白的抗冻特性是低热滞活性和高重结晶抑制活性.植物抗冻蛋白虽然在DNA和氨基酸水平上具有较大的差异,几乎没有同源性,但却拥有相似的高级结构,冰晶结合位点也有一定的相似性,而且都可以通过“表面互补”模型较好地解释它们与冰晶之间的相互作用.全面介绍了植物抗冻蛋白的种类及特性,以及它们的高级结构和冰晶结合位点.

【Abstract】 Antifreeze proteins (AFPs) are a family of proteins capable of controlling the growth of ice and inhibiting the recrystallization between ice granules and possess two distinct antifreeze activities which are termed thermal hysteresis (TH) activity and recrystallization inhibition (RI) activity respectively. The characteristics of antifreeze activities of plant AFPs are the low TH activity and high RI activity. Though there is a distinct difference in DNA and amino acids with almost no homology, plant AFPs display similar advanced structures and ice-binding sites. Moreover, the interaction between ice and all plant AFPs can be explained well by the model "Surface Complementarity". In this paper, the species and characteristics, advanced structures, and ice-binding sites of plant AFPs being researched at present were completely discussed.

【基金】 中南林学院引进人才项目“胡萝卜抗冻蛋白基因的植物转化”.
  • 【文献出处】 中南林学院学报 ,Journal of Central South Forestry University , 编辑部邮箱 ,2005年04期
  • 【分类号】O629.73
  • 【被引频次】32
  • 【下载频次】499
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