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Interspecies comparison of sea star adhesive proteins

机译:海星粘合剂蛋白的间隙比较

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摘要

Sea stars use adhesive secretions to attach their numerous tube feet strongly and temporarily to diverse surfaces. After detachment of the tube feet, the adhesive material stays bound to the substrate as so-called 'footprints'. In the common sea star species Asterias rubens, the adhesive material has been studied extensively and the first sea star footprint protein (Sfp1) has been characterised. We identified Sfp1-like sequences in 17 additional sea star species, representing different taxa and tube foot morphologies, and analysed the evolutionary conservation of this protein. In A. rubens, we confirmed the expression of 34 footprint proteins in the tube foot adhesive epidermis, with 22 being exclusively expressed in secretory cells of the adhesive epidermis and 12 showing an additional expression in the stem epidermis. The sequences were used for BLAST searches in seven asteroid transcriptomes providing a first insight in the conservation of footprint proteins among sea stars. Our results highlighted a high conservation of the large proteins making up the structural core of the footprints, whereas smaller, potential surface-binding proteins might be more variable among sea star species.
机译:海星使用粘合剂分泌物强烈地且暂时地将其众多管脚连接到多样化的表面上。在管脚脱离之后,粘合材料如所谓的“足迹”所示。在普通海星物种Asterias Rubens中,已经广泛研究了粘合材料,并且已经表征了第一海星足迹蛋白(SFP1)。我们在17种额外的海星物种中鉴定了SFP1样序列,代表了不同的分类群和管足部形态,并分析了该蛋白质的进化守恒。在A.Rubens中,我们确认了在管足粘合剂表皮中的34个占状蛋白的表达,22分别在粘合表表皮的分泌细胞中表达,显示在茎表皮中的另外的表达。该序列用于七个小行星转录om中的爆炸搜查,在海星中提供了第一次见解覆盖素蛋白的保守。我们的结果强调了占占地面积结构核的大蛋白质的高度保护,而较小的潜在的表面结合蛋白在海星物种之间可能会变得更变化。

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