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1.
蜘蛛丝作为一种具有优良机械性能的天然动物蛋白纤维,其特有的结构和机械性能与其生物学功能密切相关。由大壶状腺纺出的拖牵丝在蜘蛛的行走、建网、捕食、逃生、繁殖等多种生命活动中均发挥了重要的功能,其机械性能会受到多种内外因素相互作用的影响。本文对在不同体重、不同猎物饲养和不同营养状态3种条件下人工抽出的悦目金蛛(Argiope amoena)拖牵丝与其不同单丝间的力学性能进行了比较研究。结果表明,悦目金蛛拖牵丝的力学性能在组间、组内不同个体,以及同一个体不同丝纤维间变异都较大。随着蜘蛛个体的增大,蛛丝横截面直径逐渐增大,这会使得蛛丝的力学性能更好,便于作为救命索的拖牵丝在遇到危险时承受蜘蛛体重;蜘蛛在经过1个月的饥饿后,蛛丝在屈服点附近的力学性能并未发生显著变化,而断裂点应变和断裂能均显著减小,同时也表明无论对于作为救命索还是网丝,拖牵丝的弹性形变性能在与蛛丝相关的微观进化中要优先于塑性形变。这是蜘蛛在能量摄入受到限制时对拖牵丝的投入权衡的结果。  相似文献   

2.
蜘蛛丝蛋白天然基因的体外表达受诸多因素的限制。本研究在获得生长于中国的Nephila clavipes蜘蛛牵引丝蛋白Spidroin2 cDNA(Genbank Accession No. AF441245)的基础上,利用限制性内切酶双酶切反应构建含有Spidroin2 cDNA的重组表达质粒pET-28b(+)-Sp。将该质粒转化至大肠杆菌BL21(DE3)宿主细胞感受态菌中,以不同浓度的IPTG进行诱导,并通过诱导时间、培养温度、加入外源丙氨酸等途径提高Spidroin2 cDNA的表达量,同时利用多克隆抗体对表达产物进行Western blot检测。重组质粒pET-28b(+)-Sp的测序结果表明Spidroin2 cDNA基因以正确的阅读框插入到原核表达载体中;SDS-PAGE结果表明菌体表达蛋白中存在着大小约为31 kDa的目的蛋白带(加入外源丙氨酸条件下),Western blot检测结果进一步证实,目的基因在大肠杆菌中得到正确表达。本研究证实,蜘蛛牵引丝蛋白Spidroin2 cDNA可在原核细胞内正确表达,外源丙氨酸的加入对于提高天然蜘蛛丝蛋白基因在原核系统的表达作用明显。  相似文献   

3.
转蜘蛛拖牵丝蛋白基因家蚕蚕丝氨基酸组成及其机械性能   总被引:1,自引:1,他引:0  
将以绿色荧光蛋白基因为报告基因、含有人工合成的1.6 kb的蜘蛛拖牵丝蛋白基因及转座子pig-gyBac的转基因载体成功导入减秋无滞育家蚕受精卵,得到转蜘蛛拖牵丝蛋白基因家蚕及绿色荧光茧。对转基因家蚕与对照家蚕丝素蛋白进行了氨基酸组成分析,结果表明转基因蚕茧丝素蛋白甘氨酸和丙氨酸的百分含量分别增加了1.65%和1.80%(平均值);对其生丝的机械性能进行了测试研究,结果表明转基因蚕茧生丝的伸长率降低,断裂强度和初始模量增加,且差异均显著,与理论预期结果吻合。结果表明转基因家蚕蚕丝的机械性能一定程度上得到了提高。  相似文献   

4.
蜘蛛丝具有极高的强度和韧度,工业和医学应用价值很高,但由于蜘蛛的不可驯养性使其应用受到限制.因此,本文尝试利用基因工程的方法获得蛛丝蛋白的表达.我们利用巢式PCR技术从大腹圆蛛Araneus ventricosus基因组中克隆了长度为837 bp的拖牵丝蛋白基因(ASP),并分别将其构建至原核表达载体pGEX-6p-1和真核表达载体pGFP-N2上,分别命名为pASG和pASN.pASG在大肠杆菌中16℃下24 h诱导表达后,经蛋白质印迹证明成功地表达了GST-ASP融合蛋白;pASN转染昆虫sf9细胞48 h后观察到了绿色荧光蛋白GFP的表达,表明ASP基因在大肠杆菌和真核细胞中分别得到了正确表达.本研究为利用基因工程的方法开发蛛丝蛋白的生产途径提供了有益的尝试.  相似文献   

5.
蜘蛛丝的组成结构与生物学功能   总被引:1,自引:0,他引:1  
蜘蛛是纺丝种类最多的一种节肢动物,目前共发现有8种丝腺,各纺出具有不同生物学功能的丝纤维,可分别用于织网、捕食、逃避、扩散、织制卵袋等行为活动。蜘蛛丝是一种天然的动物蛋白纤维,是随蜘蛛4亿年进化的结果,也是为蜘蛛的生存与繁殖所设计的,蜘蛛丝的适应与进化使蜘蛛丝具有多样化的生物学功能。但蜘蛛不是唯一能纺丝的节肢动物,除蛛形纲以外,还有其它很多节肢动物,如昆虫纲和多足纲的动物都有具有丝腺,能纺出一种或多种丝蛋白纤维。本文将以昆虫作为比较来概述蜘蛛丝腺的起源与种类,蜘蛛丝的化学组成、结构、种类与其生物学功能。  相似文献   

6.
经RT-PCR扩增出水稻矮缩病毒(RDV)中国分离物非结构蛋白基因S6,并克隆至 pGEM-Teasy 载体上.序列分析表明该基因与日本株具有高度同源性,并且含有较高比例的稀有密码子.将S6基因克隆到表达载体pGEX-6P-1,并转化大肠杆菌,该基因在大肠杆菌以包涵体形式大量表达.以表达的融合蛋白作抗原免疫家兔,制备抗S6蛋白的抗血清,ELISA 测定表明,该血清与抗原共价特异性反应,抗血清的效价为13000. Western blot印迹实验表明该抗血清能特异性检测RDV感染的水稻组织中的S6蛋白,因而可作为感染RDV的水稻植株的分子手段.  相似文献   

7.
蜘蛛丝是一种高分子蛋白纤维,具有高强度、高弹性等许多重要的优良特性,在军事、医学、工业、建筑、纺织等领域具有广泛而巨大的应用。然而蜘蛛的产丝量小,且无法高密度养殖以获取大量的蜘蛛丝,难以满足实际应用的需要。于是人们只能着眼于生物工程方法,即将蜘蛛丝蛋白基因转入其它生物体来表达生产蜘蛛丝蛋白,经过多年的研究,已取得很多重要的进展。对蜘蛛丝蛋白在微生物、植物、哺乳动物及家蚕等不同生物载体中表达的研究进展进行重点阐述,并探讨了已有研究的不足和今后研究展望,为进一步探索和研发蜘蛛丝的规模化生产方法提供借鉴与参考。  相似文献   

8.
经RT-PCR扩增出水稻矮缩病毒(RDV)中国分离物非结构蛋白基因S6,并克隆至pGEM-Teasy载体上,序列分析表明该基因与日本株具有高度同源性,并且含有较高比例的稀有密码子。将S6基因克隆到表达载体pGEX-6P-1,并转化大肠杆菌,该基因在大肠杆菌以包涵体形式大量表达,以表达的融合蛋白作抗原免疫家兔,制备抗S6蛋白的抗血清,ELISA测定表明,该血清与抗原共价特异性反应,抗血清的效价为1:3000.Western blot印迹实验表明该抗血清能特异性检测RDV感染的水稻组织中的S6蛋白,因而可作为感染RDV的水稻植株的分子手段。  相似文献   

9.
为了制备可用于拟蜘蛛拖丝蛋白体外检测的抗血清,利用前期工作中获得的蜘蛛拖丝蛋白基因重组原核表达载体2S-pET-52b( + ),采用原核表达方法获得大量重组蜘蛛拖丝蛋白2S-His,对此重组蛋白进行His标签特异性的亲和纯化,再依次经SDS-PAGE、切胶和与佐剂混合后作为抗原;皮下多点注射法将抗原注入新西兰大白兔皮...  相似文献   

10.
采用同源克隆结合RACE的方法克隆了斜纹夜蛾的普通气味结合蛋白Ⅱ(S1GOBPⅡ)的cDNA序列(GenBank登录号为EU086371)。序列分析表明,S1GOBPⅡ可读框序列为489bp,编码162个氨基酸,分子量为18.2kD,等电点为5.72。S1GOBPⅡ具有昆虫气味结合蛋白的典型特征,即氨基酸序列中具有6个保守的半胱氨酸残基,呈酸性。S1GOBPⅡ氨基酸序列与草地贪夜蛾(S.frugiperda)和甜菜夜蛾(S.exigua)气味结合蛋白具有较高的同源性。RT-PCR和Northem blot检测表明,SIGOBPⅡ具有触角组织表达特异性。将S1GOBPⅡ,克隆到表达载体pET-32a上,阳性重组子转化表达宿主菌BL21(DE3)中,在IPTG诱导下进行了高效表达。SDS-PAGE检测表明S1GOBPⅡ在大肠杆菌中可表达相对分子质量(Mr)为32.0kD的可溶性融合蛋白,Westem blot分析表明表达产物能与Ni-NTA螯合物特异性结合,表明表达的S1GOBPⅡ为N端带有6His标签的融合蛋白。利用Ni^2+-NTA亲和柱进一步纯化了S1GOBPⅡ,以该融合蛋白免疫新西兰大白兔制备了抗S1GOBPⅡ的抗血清,ELISA滴度为1:12800,Western印迹检测结果显示,S1GOBPⅡ抗血清与表达的融合蛋白呈阳性反应,表明所表达的融合蛋白仍保持原有蛋白的免疫原性。  相似文献   

11.
根据GenBank上蜘蛛拖丝蛋白基因序列(AY555585和AH015065)、拖丝蛋白基因的结构特点和密码子的简并性,设计378 bp的拖丝蛋白基因单体,并对其人工聚合成二聚体.Primer5.0分析结果表明,决定拖丝弹性和抗拉力的氨基酸(Gla和Ala)含量(41.43和18.22)接近天然丝蛋白氨基酸含量(42.81和26.32);利用Antheprot软件对二聚体编码氨基酸的二级结构预测结果显示,与丝蛋白的氨基酸链相近,由2个相同的部分排列而成,即β-片层(占48%)、6个α-螺旋间隔(占15%)、散在的转角(占12%)和若干不规则卷曲(占25%).将二聚体与pET-28a( + )连接构建原核表达载体,IPTG诱导重组菌体裂解物经SDS-PAGE电泳可检测到相对分子质量为26.6×103 kD的重组蛋白.上述结果为进一步开展有关转蜘蛛拖丝蛋白基因在绵羊被毛中表达的研究奠定了基础.  相似文献   

12.
蜘蛛拖丝蛋白基因的构建及在大肠杆菌中的表达   总被引:22,自引:2,他引:20  
蜘蛛大壶腹线产生的拖丝是非常优良的纤维蛋白, 具有独特的强度和弹性。基于拖丝蛋白高度重复序列和部分cDNA序列, 合成蜘蛛拖丝蛋白基因单体, 通过头尾相连的构建策略, 得到拖丝蛋白多聚体, 与原核高效表达载体pET30a(+)连接, 转化大肠杆菌BLR(DE3), 用IPTG诱导表达。 表达产物经His.Bind树脂金属螯合亲和层析一步纯化, 纯度达90%以上, 表达量为20mg/L。SDS-PAGE和蛋白质印迹图谱显示表达产物分子量为37kD, 其值与氨基酸组分分析结果与理论推算值基本符合。   相似文献   

13.
Spider dragline silk is a natural fiber that has excellent tensile properties; however, it is difficult to produce artificially as a long, strong fiber. Here, the spider (Araneus ventricosus) dragline protein gene was cloned and a transgenic silkworm was generated, that expressed the fusion protein of the fibroin heavy chain and spider dragline protein in cocoon silk. The spider silk protein content ranged from 0.37 to 0.61% w/w (1.4–2.4 mol%) native silkworm fibroin. Using a good silk-producing strain, C515, as the transgenic silkworm can make the raw silk from its cocoons for the first time. The tensile characteristics (toughness) of the raw silk improved by 53% after the introduction of spider dragline silk protein; the improvement depended on the quantity of the expressed spider dragline protein. To demonstrate the commercial feasibility for machine reeling, weaving, and sewing, we used the transgenic spider silk to weave a vest and scarf; this was the first application of spider silk fibers from transgenic silkworms.  相似文献   

14.
Spider dragline silk is a unique fibrous protein with combination of tensile strength and elasticity, but the isolation of large amount of silk from spiders is not feasible. In this paper, we used a newly established Bac-to-Bac/BmNPV Baculovirus expression system to express the recombinant spider (Nephila clavata) dragline silk protein (MaSp1) fused EGFP in BmN cells and larvae of silkworm. A 70 kDa fusion protein was visualized after rBacmid/BmNPV/drag infection by SDS-PAGE and immunoblotting analysis. Fusion protein expressed in the BmN cells probably occupied five percent of the cell total protein; In a silkworm larva, approximately 6 mg fusion proteins were expressed. Solubility analysis of the expressed spider dragline silk protein indicated that 60% fusion protein is insoluble. EGFP fluorescence showed that fusion protein is tend to form aggregate by self assemblage. The results indicated the solubility is the primary limit for spider dragline proteins yield. It also suggested that directly produce fibrous spider silk in the secreting-silk organs of the transgenic silkworm larvae might be a better method.  相似文献   

15.
Spider dragline silk is renowned as one of the toughest materials of its kind. In nature, spider silks are spun out of aqueous solutions under environmental conditions. This is in contrast to production of most synthetic fibres, where hazardous solvents, high temperatures and pressure are used. In order to identify some of the chemical processes involved in spider silk spinning, we have produced a collection of cDNA sequences from specific regions of Nephila senegalensis major ampullate gland. We examined in detail the sequence and expression of a putative Nephila senegalensis peroxidase gene (NsPox) from our EST collection. NsPox encodes a protein with similarity to Drosophila melanogaster and Aedes aegypti peroxidases. Northern analysis and in situ localisation experiments revealed that NsPox is expressed in major and minor ampullate glands of the spider where the main components of the dragline silk are produced. We suggest that NsPox plays a role in dragline silk fibre formation and/or processing.  相似文献   

16.
Spider dragline silk is a unique fibrous protein with a combination of tensile strength and elasticity, but the isolation of large amounts of silk from spiders is not feasible. In this study, we generated germline-transgenic silkworms (Bombyx mori) that spun cocoons containing recombinant spider silk. A piggyBac-based transformation vector was constructed that carried spider dragline silk (MaSp1) cDNA driven by the sericin 1 promoter. Silkworm eggs were injected with the vector, producing transgenic silkworms displaying DsRed fluorescence in their eyes. Genotyping analysis confirmed the integration of the MaSp1 gene into the genome of the transgenic silkworms, and silk protein analysis revealed its expression and secretion in the cocoon. Compared with wild-type silk, the recombinant silk displayed a higher tensile strength and elasticity. The results indicate the potential for producing recombinant spider silk in transgenic B. mori.  相似文献   

17.
The dragline silk of orb-weaving spiders possesses extremely high tensile strength and elasticity. To date, full-length sequences of only two genes encoding major ampullate silk protein (MaSp) in Latrodectus hesperus have been determined. In order to further understand this gene family, we utilized in this study a variety of strategies to isolate full-length MaSp1 and MaSp2 cDNAs in the wasp spider Argiope bruennichi. A. bruennichi MaSp1 and MaSp2 are primarily composed of remarkably homogeneous ensemble repeats containing several complex motifs, and both have highly conserved C-termini and N-termini. Two novel amino acid motifs, GGF and SGR, were found in MaSp1 and MaSp2, respectively. Amino acid composition analysis of silk, luminal contents and predicted sequences indicates that MaSp1 and MaSp2 are two major components of major ampullate glands and that the ratio of MaSp1 to MaSp2 is approximately 3:2 in dragline silk. Furthermore, both the MaSp1:MaSp2 ratio and the conserved termini are closely linked with the production of high quality synthetic fibers. Our results make an important contribution to our understanding of major ampullate silk protein structure and provide a second blueprint for creating new composite silk which mimics natural spider dragline silk.  相似文献   

18.
高分子量RGD-蛛丝蛋白重组体的构建、高密度发酵及纯化   总被引:3,自引:0,他引:3  
蜘蛛丝是自然界综合性能优良的天然蛋白质纤维之一,因其具有良好的生物相容性和可降解性在生物医学领域具有潜在的应用前景。在本室已经构建的RGD-蜘蛛拖丝蛋白基因16多聚体基础上,通过首尾相连、倍加等方法进一步多聚化,得到RGD-蜘蛛拖丝蛋白基因32和64多聚体,分别将这两种多聚体与原核高效表达载体pET-30a( )连接,转化大肠杆菌BL21(DE3)pLysS,得到的32多聚体表达重组子命名为pNSR32,64多聚体表达重组子命名为pNSR64。通过酶切、琼脂糖电泳鉴定及对目的片段的测序均与理论值相符。将32和64多聚体基因序列注册GenBank,序列号分别为DQ469929和DQ837297。重组体pNSR32和pNSR64经IPTG诱导表达,SDS-PAGE图谱显示表达产物分子量分别为102kD和196.6kD,与天然蛛丝蛋白分子量接近并与理论值相吻合。高分子量的蛛丝蛋白在原核生物成功实现高效表达,在国内外尚未见报道。在此基础上对pNSR32工程菌进行高密度发酵,建立了简单高效的目的蛋白纯化工艺。  相似文献   

19.
Dragline spider silk has been intensively studied for its superior qualities as a biomaterial. In previous studies, we made use of the baculovirus mediated expression system for the production of a recombinant Araneus diadematus spider silk dragline ADF4 protein and its self‐assembly into intricate fibers in host insect cells. In this study, our aim was to explore the function of the major repetitive domain of the dragline spider silk. Thus, we generated an array of synthetic proteins, each containing a different number of identical repeats up to the largest recombinantly expressed spider silk to date. Study of the self‐assembly properties of these proteins showed that depending on the increasing number of repeats they give rise to different assembly phenotypes, from a fully soluble protein to bona fide fibers with superior qualities. The different assembly forms, the corresponding chemical resistance properties obtained as well as ultrastructural studies, revealed novel insights concerning the structure and intermolecular interactions of the repetitive and nonrepetitive domains. Based on these observations and current knowledge in the field, we hereby present a comprehensive hypothetical model for the mechanism of dragline silk self‐assembly and fiber formation. © 2009 Wiley Periodicals, Inc. Biopolymers 93: 458–468, 2010. This article was originally published online as an accepted preprint. The “Published Online” date corresponds to the preprint version. You can request a copy of the preprint by emailing the Biopolymers editorial office at biopolymers@wiley.com  相似文献   

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