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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >The molecular structures of major ampullate silk proteins of the wasp spider, Argiope bruennichi: A second blueprint for synthesizing de novo silk
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The molecular structures of major ampullate silk proteins of the wasp spider, Argiope bruennichi: A second blueprint for synthesizing de novo silk

机译:黄蜂蜘蛛主要的壶腹丝蛋白的分子结构,Argiope bruennichi:合成新丝的第二个蓝图

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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.
机译:织球蜘蛛的拉铲丝具有极高的拉伸强度和弹性。迄今为止,已经确定了在非洲百寿菊中编码两个主要壶腹丝蛋白(MaSp)的两个基因的全长序列。为了进一步了解该基因家族,我们在这项研究中使用了多种策略来分离黄蜂蜘蛛Argiope bruennichi中的全长MaSp1和MaSp2 cDNA。 A. bruennichi MaSp1和MaSp2主要由包含多个复杂基序的非常均一的整体重复序列组成,并且都具有高度保守的C末端和N末端。在MaSp1和MaSp2中分别发现了两个新的氨基酸基序GGF和SGR。蚕丝的氨基酸组成,腔含量和预测序列的分析表明,MaSp1和MaSp2是主要壶腹腺的两个主要成分,在拉丝蚕丝中,MaSp1与MaSp2的比例约为3:2。此外,MaSp1:MaSp2的比例和保守的末端都与高质量合成纤维的生产紧密相关。我们的结果为我们对主要壶腹丝蛋白结构的理解做出了重要贡献,并为创建模仿天然蜘蛛拉丝的新型复合丝提供了第二个蓝图。

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