首页> 外文期刊>International Journal of Molecular Sciences >Comprehensive Proteomic Analysis of Spider Dragline Silk from Black Widows: A Recipe to Build Synthetic Silk Fibers
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Comprehensive Proteomic Analysis of Spider Dragline Silk from Black Widows: A Recipe to Build Synthetic Silk Fibers

机译:全面的蛋白质组学分析从黑寡妇的蜘蛛拉丝的丝绸:建立合成丝纤维的食谱。

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The outstanding material properties of spider dragline silk fibers have been attributed to two spidroins, major ampullate spidroins 1 and 2 (MaSp1 and MaSp2). Although dragline silk fibers have been treated with different chemical solvents to elucidate the relationship between protein structure and fiber mechanics, there has not been a comprehensive proteomic analysis of the major ampullate (MA) gland, its spinning dope, and dragline silk using a wide range of chaotropic agents, inorganic salts, and fluorinated alcohols to elucidate their complete molecular constituents. In these studies, we perform in-solution tryptic digestions of solubilized MA glands, spinning dope and dragline silk fibers using five different solvents, followed by nano liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) analysis with an Orbitrap Fusion? Tribrid?. To improve protein identification, we employed three different tryptic peptide fragmentation modes, which included collision-induced dissociation (CID), electron transfer dissociation (ETD), and high energy collision dissociation (HCD) to discover proteins involved in the silk assembly pathway and silk fiber. In addition to MaSp1 and MaSp2, we confirmed the presence of a third spidroin, aciniform spidroin 1 (AcSp1), widely recognized as the major constituent of wrapping silk, as a product of dragline silk. Our findings also reveal that MA glands, spinning dope, and dragline silk contain at least seven common proteins: three members of the Cysteine-Rich Protein Family (CRP1, CRP2 and CRP4), cysteine-rich secretory protein 3 (CRISP3), fasciclin and two uncharacterized proteins. In summary, this study provides a proteomic blueprint to construct synthetic silk fibers that most closely mimic natural fibers.
机译:蜘蛛拉铲丝纤维的出色材料性能归因于两种蜘蛛蛋白,主要是壶腹蜘蛛蛋白1和2(MaSp1和MaSp2)。尽管拉铲丝纤维已用不同的化学溶剂处理过,以阐明蛋白质结构与纤维力学之间的关系,但尚未对主要的壶腹腺,其纺丝原液和拉铲丝进行广泛的蛋白质组学分析。的离液剂,无机盐和氟化醇,以阐明其完整的分子组成。在这些研究中,我们使用五种不同的溶剂对溶解的MA腺体,纺丝原液和拉丝蚕丝纤维进行溶液内胰蛋白酶消化,然后使用Orbitrap Fusion?将纳米液相色谱与串联质谱联用(LC-MS / MS)分析。三网呢?为了改善蛋白质鉴定,我们采用了三种不同的胰蛋白酶肽片段化模式,包括碰撞诱导解离(CID),电子转移解离(ETD)和高能碰撞解离(HCD),以发现参与丝绸装配路径和丝绸的蛋白质纤维。除了MaSp1和MaSp2外,我们还证实了第三种spidroin,即伞形spidroin 1(AcSp1)的存在,被广泛认为是包裹丝的主要成分,是拉丝蚕丝的产物。我们的研究结果还表明,MA腺体,纺丝原液和拉丝丝至少含有七个常见蛋白:半胱氨酸-富蛋白家族的三个成员(CRP1,CRP2和CRP4),富含半胱氨酸的分泌蛋白3(CRISP3),法西林和两种未表征的蛋白质。总而言之,这项研究提供了蛋白质组学蓝图,用于构建最接近天然纤维的合成丝纤维。

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