首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Pyriform Spidroin 1 a Novel Member of the Silk Gene Family That Anchors Dragline Silk Fibers in Attachment Discs of the Black Widow Spider Latrodectus hesperus
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Pyriform Spidroin 1 a Novel Member of the Silk Gene Family That Anchors Dragline Silk Fibers in Attachment Discs of the Black Widow Spider Latrodectus hesperus

机译:Pyriform Spidroin 1一种丝绸基因家族的新成员在黑寡妇蜘蛛(Latrodectus hesperus)的附着盘中锚定拉铲丝丝绸纤维

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摘要

Spiders spin high performance threads that have diverse mechanical properties for specific biological applications. To better understand the molecular mechanism by which spiders anchor their threads to a solid support, we solubilized the attachment discs from black widow spiders and performed in-solution tryptic digests followed by MS/MS analysis to identify novel peptides derived from glue silks. Combining matrix-assisted laser desorption ionization tandem time-of-flight mass spectrometry and cDNA library screening, we isolated a novel member of the silk gene family called pysp1 and demonstrate that its protein product is assembled into the attachment disc silks. Alignment of the PySp1 amino acid sequence to other fibroins revealed conservation in the non-repetitive C-terminal region of the silk family. MS/MS analysis also confirmed the presence of MaSp1 and MaSp2, two important components of dragline silks, anchored within the attachment disc materials. Characterization of the ultrastructure of attachment discs using scanning electron microscopy studies support the localization of PySp1 to small diameter fibers embedded in a glue-like cement, which network with large diameter dragline silk threads, producing a strong, adhesive material. Consistent with elevated PySp1 mRNA levels detected in the pyriform gland, MS analysis of the luminal contents extracted from the pyriform gland after tryptic digestion support the assertion that PySp1 represents one of the major constituents manufactured in the pyriform gland. Taken together, our data demonstrate that PySp1 is spun into attachment disc silks to help affix dragline fibers to substrates, a critical function during spider web construction for prey capture and locomotion.
机译:蜘蛛旋转高性能的线,这些线对于特定的生物学应用具有多种机械性能。为了更好地了解蜘蛛将其线锚固到固体支持物上的分子机制,我们溶解了黑寡妇蜘蛛的附着盘,并进行了溶液中胰蛋白酶消化,然后进行MS / MS分析,以鉴定出源自胶丝的新型肽。结合基质辅助激光解吸电离串联飞行时间质谱和cDNA文库筛选,我们分离出了一种名为pysp1的丝绸基因家族的新成员,并证明了其蛋白质产物已组装到附着盘丝中。 PySp1氨基酸序列与其他纤维蛋白的比对揭示了丝绸家族非重复性C末端区域的保守性。 MS / MS分析还证实,锚链附件材料中锚固了拉铲丝的两个重要成分MaSp1和MaSp2。使用扫描电子显微镜研究对附着盘的超微结构进行表征,可将PySp1定位于嵌在胶状水泥中的小直径纤维,该纤维与大直径的拉铲丝丝形成网络,从而产生结实的粘合材料。与在梨状腺中检测到的PySp1 mRNA水平升高相一致,胰蛋白酶消化后从梨状腺中提取的管腔内容物的MS分析支持了以下观点:PySp1代表在梨状腺中制造的主要成分之一。两者合计,我们的数据表明PySp1纺成附件盘丝,以帮助将拉斗铲纤维固定到基质上,这是蜘蛛网构建过程中捕食和运动的关键功能。

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