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1.
昆虫对低温的适应——抗冻蛋白研究进展   总被引:12,自引:3,他引:9  
景晓红  郝树广  康乐 《昆虫学报》2002,45(5):679-683
昆虫抗冻蛋白的研究主要在几种昆虫中展开,到目前为止已有二十多种昆虫抗冻蛋白被分离纯化。本文综述了关于昆虫抗冻蛋白的结构、组成、生物学活性及功能等方面的研究进展。昆虫抗冻蛋白的二级结构为β折叠和β转角,在其特殊的氨基酸序列结构中,半胱氨酸形成的二硫键对稳定其结构和活性起着很重要的作用。影响昆虫抗冻蛋白的因子,如活化蛋白及低分子量溶质的发现开辟了昆虫抗冻蛋白研究的新领域。  相似文献   

2.
昆虫抗冻蛋白的结构与生物学特性研究   总被引:2,自引:0,他引:2  
马纪  赵干 《生物技术通报》2006,(5):37-40,44
抗冻蛋白(antifreeze proteins AFPs)是一类抑制冰晶生长的蛋白质,它能以非依数性形式降低溶液的冰点而对其熔点影响甚微,因而也被称作热滞蛋白。近几年来对于昆虫抗冻蛋白的研究取得了较快的发展,已有20多种昆虫抗冻蛋白被分离纯化。就昆虫抗冻蛋白的结构特征、生物学特性以及在农业、医学和食品工业等方面的应用进行介绍。  相似文献   

3.
抗冻蛋白结构与抗冻机制   总被引:13,自引:0,他引:13  
抗冻蛋白(amifreeze proteins,AFPs)是20世纪60年代从极地鱼血淋巴中分离的一种大分子抗冻剂,迄今为止科学工作者已从陆地昆虫、植物、细菌和真菌等各类生物中分离到多种抗冻蛋白,并测得了它们的基因序列及一些晶体结构,近些年的工作主要集中在该类蛋白质抗冻机制的研究上。抗冻蛋白具有广泛的应用前景,它不但可以应用于食物的冷鲜贮存及移植器官的低温保存,还可通过转基因提高经济作物的抗冻能力。  相似文献   

4.
马纪  王芸  刘忠渊  张富春 《昆虫学报》2008,51(5):480-485
为了研究抗冻蛋白基因是否在新疆荒漠昆虫洛氏脊漠甲 Pterocoma loczyi 中存在,利用 RT-PCR 技术克隆获得了洛氏脊漠甲抗冻蛋白的 cDNA 片段,命名为 Plafp743。测序结果表明洛氏脊漠甲 Plafp743 所编码的蛋白质由 94 个氨基酸组成,蛋白序列呈现规则结构 CTX1X2X3X4CX5X6X7X8X 9。利用原核表达载体构建重组质粒 pGEX-4T-1-Plafp743,转化 Escherichia coli BL21 进行融合蛋白表达,SDS-PAGE 结果表明抗冻蛋白PLAFP基因以可溶性融合蛋白形式表达,相对分子质量 36 kD。用 Glutathione Sepharose 4B 亲和柱对表达蛋白进行纯化后,通过赤翅甲 Dendroides canadensis 抗冻蛋白的小鼠抗血清进行 Western blot 分析,结果表明纯化的 GST-PLAFP 融合蛋白与赤翅甲抗血清能够发生特异性的免疫反应。大肠杆菌的低温抗冻保护实验结果证明,30 μg/mL 的 GST-PLAFP 在-6℃ 对细菌具有显著的保护作用,且随着抗冻蛋白浓度的增加,抗冻保护作用的效 果也随之增加。本研究首次报道了从荒漠昆虫洛氏脊漠甲扩增得到抗冻蛋白基因,提示抗冻蛋白可能是荒漠昆虫普遍采取的过冬生存策略,为进一步开发利用昆虫抗冻蛋白奠定了基础。  相似文献   

5.
邱立明  马纪 《昆虫知识》2009,46(6):837-845
产生抗冻蛋白(antifreeze protein,AFP)是许多昆虫抵御寒冷的一种重要机制。昆虫抗冻蛋白基因的克隆和表达是研究抗冻蛋白活性和功能的主要途径。文章归纳GenBank所登录的昆虫抗冻蛋白基因及其特点,总结昆虫抗冻蛋白基因的天然表达和基因工程表达方面尚未明确或需要克服的一些问题。目前在GenBank注册的昆虫抗冻蛋白基因约100个,集中于9种昆虫隶属鞘翅目3个科和鳞翅目1个科。昆虫抗冻蛋白基因具有多拷贝和多同种型(isoforms)的特点。昆虫抗冻蛋白的天然表达具有物种间和同种型间的多样性。基因工程表达昆虫抗冻蛋白需要克服表达量低活性不高的问题。对昆虫抗冻蛋白表达规律的研究有助于全面认识其功能。  相似文献   

6.
昆虫抗冻蛋白: 规则结构适应功能   总被引:5,自引:0,他引:5  
邵强  李海峰  徐存拴 《昆虫学报》2006,49(3):491-496
抗冻蛋白在环境温度低于体液熔点时能够结合到生物体内的冰核表面,通过限制冰核生长和抑制冰晶重结晶而保护有机体免受结冰引起的伤害。与其他生物抗冻蛋白比较,昆虫抗冻蛋白有很强的活性,结构上具有显著特征,如一级结构规律重复,超二级结构为β-螺旋,可与冰晶发生相互作用,具有TXT基序等。该文综述了近年来关于昆虫抗冻蛋白的结构以及分子生物学等方面研究的新进展,讨论了其结构与功能的关系。  相似文献   

7.
吕国栋  孙洁  马纪  张富春 《昆虫知识》2006,43(6):821-826
研究准噶尔小胸鳖甲Microdera punctipennis dzhungarica Kasz抗冻蛋白MPAFP5真核表达产物的功能及理化性质。首先用硫酸铵浓度梯度沉淀初步纯化酵母真核表达产物,然后通过细菌低温保护实验检测抗冻蛋白MPAFP5低温保护功能,同时探讨抗冻蛋白MPAFP5在酸碱环境和100℃时的稳定性,并通过等电聚焦凝胶电泳检测其等电点。研究表明MPAFP5真核表达产物在低温下能够提高细菌的存活率,能够耐受高温和一定程度的强酸强碱,其等电点约为5.8左右。准噶尔小胸鳖甲抗冻蛋白MPAFP5真核表达产物与赤翅甲抗冻蛋白(DAFP)的比较表明拟步甲类昆虫抗冻蛋白具有相似的理化性质。  相似文献   

8.
研究光滑鳖甲抗冻蛋白Ap AFP914及其突变体的原核表达及活性,推测TXT基序的突变对昆虫抗冻蛋白抗冻活性的影响。通过定点突变新疆荒漠昆虫光滑鳖甲抗冻蛋白apafp914基因TXT基序的规则位点个数,并亚克隆至p ET32a原核表达载体,转化大肠杆菌,Ni-NTA纯化得到融合蛋白Trx A-Ap AFP914及3种突变体蛋白;利用Swis S-Model服务器预测分析了Ap AFP914蛋白的三维结构;通过差示扫描量热法测定Trx A-Ap AFP914及其突变体的热滞活性。结果显示,4种融合蛋白分子量均在30 k D左右;且突变蛋白Trx A-A19T具有最高的热滞活性,而突变体Trx A-T33F和Trx A-T3345F的热滞活性显著低于未突变的Trx A-914。研究结果表明昆虫抗冻蛋白的TXT基序越规则其具有的热滞活性越高。  相似文献   

9.
昆虫抗冻蛋白的研究   总被引:5,自引:0,他引:5  
抗冻蛋白是具有热滞活性,能结合并抑制冰晶生长和抑制冰的重结晶的一类蛋白质。近几年来,昆虫抗冻蛋白的研究取得了较快的发展,本文通过分析昆虫抗冻蛋白的结构特点、抗冻活性、作用机制,并讨论了抗冻蛋白在食品工业、医学、基因工程方面的应用。结果表明,昆虫抗冻蛋白虽然结构呈多样性,但有很多关键的残基具有保守性,对维持抗冻蛋白结构和功能的完整性发挥着重要的作用;抗冻蛋白是由多基因家簇编码的。其作用机制主要是吸附一抑制机制,抗冻蛋白依靠氢键吸附到冰晶格,抑制冰晶生长;昆虫抗冻蛋白的应用具有很广阔的前景。  相似文献   

10.
利用生物信息学方法对准噶尔小胸鳖甲抗冻蛋白基因Mpafp149所编码蛋白MPAFP149进行分析,分别从氨基酸组成、理化性质、二三级结构和功能、进化关系等方面进行预测。结果表明MPAFP149与其他昆虫抗冻蛋白在氨基酸水平上具有79%的相似性,二级结构上预测其为水溶性蛋白,含有信号肽和跨膜区。三级结构上与黄粉虫抗冻蛋白YL-1具有较高的相似性,并且具有昆虫抗冻蛋白所特有的结构域。本研究为准噶尔小胸鳖甲抗冻蛋白功能的研究鉴定了基础。  相似文献   

11.
Antifreeze proteins (AFPs) inhibit the growth of ice by binding to the surface of ice crystals, preventing the addition of water molecules to cause a local depression of the freezing point. AFPs from insects are much more effective at depressing the freezing point than fish AFPs. Here, we have investigated the possibility that insect AFPs bind more avidly to ice than fish AFPs. Because it is not possible to directly measure the affinity of an AFP for ice, we have assessed binding indirectly by examining the partitioning of proteins into a slowly growing ice hemisphere. AFP molecules adsorbed to the surface and became incorporated into the ice as they were overgrown. Solutes, including non-AFPs, were very efficiently excluded from ice, whereas AFPs became incorporated into ice at a concentration roughly equal to that of the original solution, and this was independent of the AFP concentration in the range (submillimolar) tested. Despite their >10-fold difference in antifreeze activity, fish and insect AFPs partitioned into ice to a similar degree, suggesting that insect AFPs do not bind to ice with appreciably higher affinity. Additionally, we have demonstrated that steric mutations on the ice binding surface that decrease the antifreeze activity of an AFP also reduce its inclusion into ice, supporting the validity of using partitioning measurements to assess a protein's affinity for ice.  相似文献   

12.
昆虫抗冻蛋白的研究进展   总被引:20,自引:2,他引:18  
费云标  江勇  赵淑慧 《昆虫学报》2000,43(1):98-102
热滞效应(Tberm Hysteresis Action)最早在昆虫研究中发现,后来研究表明,它是抗冻蛋白(Antifreeze Proteins,AFPs)的一种基本性质。和鱼类,植物AFPs相比,昆虫AFPs具有更高 的热滞活性和独特的化学结构特征。昆虫AFPs在昆虫抗冻生理过程中起着相当重要的作用,表现在以下三个方面:①抑制一些冰晶形成;②提高冰冻耐受性;③可能参与水分平衡过程。光周期,气温和湿度是调控AFPs生物合成与降解的三种外部因子,而体内激素的变化可能是直接调节脂肪体合成AFPs的内部因子。  相似文献   

13.
The mechanisms by which the antifreeze protein (AFP) modifies the ice morphology are identified precisely as surface poisoning by the ice binding surface (IBS) of insect AFPs and as bridge-induced surface reconstruction by the IBS of fish AFPs and antifreeze glycoproteins. The primary surfaces of hexagonal ice have predetermined face indices. The "two-dimensional" insect type IBS has regularly spaced binding intervals in two directions. It causes surface poisoning by matching and reinforcing simultaneously intersecting strong bonding directions on the primary ice surfaces. The secondary ice surfaces have variable face indices. The "one-dimensional" and "irregular" IBS variants of fish AFPs and antifreeze glycoproteins are either linearly extended with regular ice binding intervals or have ice binding sites lacking spacing regularity. These variants can bridge transversely lattice periods or shorter oxygen-oxygen distances between parallel adjacent strong bonding directions that do not intersect. Thus, one-dimensional and irregular IBS variants induce supplementary bridges cross-wise on selected secondary surfaces by mimicking strong bonding directions that are not present in the ice structure. These proteins cause surfaces with variable face indices, which in the absence of the AFPs would not grow flat, to appear in the morphology. Whereas for the primary ice surfaces it is only the morphological importance that is determined by the experimental conditions, for the secondary ice surfaces it is the face indices themselves that become adjusted in the process of maximizing the AFP-substrate interaction through attainment of the best structural match. The growth morphology of the AFP-ice system is derived from various factors, including the face indices, surface molecular compositions, relative growth rates, and the mechanisms responsible for that morphology. The theoretical formulation agrees with experiments over a wide range and resolves these, to date, unexplained phenomena.  相似文献   

14.
The study of mechanisms by which animals tolerate environmental extremes may provide strategies for preservation of living mammalian materials. Animals employ a variety of compounds to enhance their survival, including production of disaccharides, glycerol, and antifreeze compounds. The cryoprotectant glycerol was discovered before its role in amphibian survival. In the last decade, trehalose has made an impact on freezing and drying methods for mammalian cells. Investigation of disaccharides was stimulated by the variety of organisms that tolerate dehydration stress by accumulation of disaccharides. Several methods have been developed for the loading of trehalose into mammalian cells, including inducing membrane lipid-phase transitions, genetically engineered pores, endocytosis, and prolonged cell culture with trehalose. In contrast, the many antifreeze proteins (AFPs) identified in a variety of organisms have had little impact. The first AFPs to be discovered were found in cold water fish; their AFPs have not found a medical application. Insect AFPs function by similar mechanisms, but they are more active and recombinant AFPs may offer the best opportunity for success in medical applications. For example, in contrast to fish AFPs, transgenic organisms expressing insect AFPs exhibit reduced ice nucleation. However, we must remember that nature's survival strategies may include production of AFPs, antifreeze glycolipids, ice nucleators, polyols, disaccharides, depletion of ice nucleators, and partial desiccation in synchrony with the onset of winter. We anticipate that it is only by combining several natural low temperature survival strategies that the full potential benefits for mammalian cell survival and medical applications can be achieved.  相似文献   

15.
Strom CS  Liu XY  Jia Z 《Biophysical journal》2005,89(4):2618-2627
The antifreeze protein (AFP) reduces the growth rates of the ice crystal facets. In that process the ice morphology undergoes a modification. An AFP-induced surface pinning mechanism, through matching of periodic bond chains in two dimensions, enables two-dimensional regular ice-binding surfaces (IBSs) of the insect AFPs to engage a certain class of ice surfaces, called primary surfaces. They are kinetically stable surfaces with unambiguous and predetermined orientations. In this work, the orientations and molecular compositions of the primary ice surfaces that undergo growth rate reduction by the insect AFPs are obtained from first principles. Besides the basal face and primary prism, the ice surfaces engaged by insect AFPs include the specific ice pyramids produced by the insect AFP Tenebrio molitor (TmAFP). TmAFP-induced pyramids differ fundamentally from the ice pyramids produced by fish AFPs and antifreeze protein glycoproteins (AFPGs) as regards the ice surface configurations and the mode of interaction with the protein IBS. The molecular compositions of the TmAFP-induced pyramids are strongly bonded in two dimensions and have the constant face indices (101). In contrast, the molecular composition of the ice pyramids produced by fish AFPs and AFPGs are strongly bonded in only one direction and have variable face indices (h 0 l), none of which equal (101). The thus far puzzling behavior of the TmAFP in producing pyramidal crystallites is fully explained in agreement with experiment.  相似文献   

16.
甲虫抗冻蛋白是一种具有规则结构的昆虫抗冻蛋白。在相同浓度条件下,甲虫抗冻蛋白比鱼类抗冻蛋白有更高的热滞活性,目前已成为人们重点研究的一类抗冻蛋白。根据甲虫抗冻蛋白的结构特点及其在冰晶表面的吸附模式,应用二维吸附结合模型计算分析了具有6 ̄11个β-螺旋(β-helix)结构片段的甲虫抗冻蛋白变体分子,得到了它们的热滞活性随溶液浓度变化的规律,特别是热滞活性与甲虫抗冻蛋白的β-螺旋结构片段数的关系。结果显示,抗冻蛋白在冰晶表面的覆盖度是一个影响其热滞活性的重要因素。  相似文献   

17.
Antifreeze proteins (AFPs) are characterized by their capacity to inhibit the growth of ice and are produced by a variety of polar fish, terrestrial arthropods and other organisms inhabiting cold environments. This capacity reflects their role as stabilizers of supercooled body fluids. The longhorn beetle Rhagium inquisitor is known to express AFPs in its body fluids. In this work we report on the primary structure and structural characteristics of a 12.8 kDa AFP from this beetle (RiAFP). It has a high capacity to evoke antifreeze activity as compared to other known insect AFPs and it is structurally unique in several aspects. In contrast to the high content of disulfide bond-formation observed in other coleopteran AFPs, RiAFP contains only a single such bond. Six internal repeat segments of a thirteen residue repeat pattern is irregularly spaced apart throughout its sequence. The central part of these repeat segments is preserved as TxTxTxT, which is effectively an expansion of the TxT ice-binding motif found in the AFPs of several known insect AFPs.  相似文献   

18.
A variety of organisms have independently evolved proteins exhibiting antifreeze activity that allows survival at subfreezing temperatures. The antifreeze proteins (AFPs) bind ice nuclei and depress the freezing point by a noncolligative absorption–inhibition mechanism. Many organisms have a heterogeneous suite of AFPs with variation in primary sequence between paralogous loci. Here, we demonstrate that the diversification of the AFP paralogues is promoted by positive Darwinian selection in two independently evolved AFPs from fish and beetle. First, we demonstrate an elevated rate of nonsynonymous substitutions compared to synonymous substitutions in the mature protein coding region. Second, we perform phylogeny-based tests of selection to demonstrate a subset of codons is subjected to positive selection. When mapped onto the three-dimensional structure of the fish antifreeze type III antifreeze structure, these codons correspond to amino acid positions that surround but do not interrupt the putative ice-binding surface. The selective agent may be related to efficient binding to diverse ice surfaces or some other aspect of AFP function. Received: 27 February 2001 / Accepted: 12 September 2001  相似文献   

19.
Structure and function of antifreeze proteins   总被引:11,自引:0,他引:11  
High-resolution three-dimensional structures are now available for four of seven non-homologous fish and insect antifreeze proteins (AFPs). For each of these structures, the ice-binding site of the AFP has been defined by site-directed mutagenesis, and ice etching has indicated that the ice surface is bound by the AFP. A comparison of these extremely diverse ice-binding proteins shows that they have the following attributes in common. The binding sites are relatively flat and engage a substantial proportion of the protein's surface area in ice binding. They are also somewhat hydrophobic -- more so than that portion of the protein exposed to the solvent. Surface-surface complementarity appears to be the key to tight binding in which the contribution of hydrogen bonding seems to be secondary to van der Waals contacts.  相似文献   

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