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抗冻蛋白研究进展(英文)
引用本文:李金耀,马纪,张富春.抗冻蛋白研究进展(英文)[J].中国生物化学与分子生物学报,2005,21(6):717-722.
作者姓名:李金耀  马纪  张富春
作者单位:新疆大学生命科学与技术学院分子生物学重点实验室,新疆生物资源基因工程重点实验室,乌鲁木齐,830046
基金项目:国家科技攻关西部科技行动项目资助(No.2001BA901A32)~~
摘    要:很多越冬的生物会产生抗冻蛋白,这些抗冻蛋白能够吸附到冰晶的表面改变冰晶形态并抑制冰晶的生长.抗冻蛋白在很多生物体内都被发现,不同的抗冻蛋白结构差异非常大.目前的一些研究揭示了几种抗冻蛋白的结构,并提出了抗冻蛋白与冰晶的结合模型,但是还没有一种机制能解释所有抗冻蛋白的作用机理.抗冻蛋白能被广泛的应用到农业、水产业和低温储藏器官、组织和细胞,利用转基因技术提高植物的抗冻性具有重要应用价值.而抗冻蛋白基因的表达调控则有待进一步阐明.

关 键 词:抗冻蛋白  冰晶  冰结合模型  应用  
收稿时间:2005-12-20
修稿时间:2005年2月25日

Recent Advances in Research of Antifreeze Proteins
LI Jin-Yao,MA Ji,ZHANG Fu-Chun.Recent Advances in Research of Antifreeze Proteins[J].Chinese Journal of Biochemistry and Molecular Biology,2005,21(6):717-722.
Authors:LI Jin-Yao  MA Ji  ZHANG Fu-Chun
Institution:LI Jin-Yao,MA Ji*,ZHANG Fu-Chun
Abstract:Many overwintering organisms produce antifreeze proteins (AFPs) that can be adsorbed onto the surface of ice crystals and modify their growth. These proteins show great diversity in structures, and they have been found in a variety of organisms. AFPs from insects have higher thermal hysteresis activity than other organisms. Recent studies revealed the structures of AFPs and put forward different ice-binding models. No mechanism, however, can apply to all antifreeze proteins and the molecular interaction between AFPs and ice are not accurately resolved. AFPs can be applied extensively to agriculture, aquaculture and low temperature storage of organs, tissues, as well as cells. To confer transgenic plant cold resistance application of AFPs is essential, while the expression and regulation of antifreeze gene need to be elucidated.
Keywords:antifreeze protein  ice crystal  thermal hysteresis activity  ice-binding model
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