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Proteomic dataset of the sea urchin Paracentrotus lividus adhesive organs and secreted adhesive

机译:海胆Paracentrotus lividus粘附器官和分泌的粘附剂的蛋白质组学数据集

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摘要

Sea urchins have specialized adhesive organs called tube feet, which mediate strong but reversible adhesion. Tube feet are composed by a disc, producing adhesive and de-adhesive secretions for substratum attachment, and a stem for movement. After detachment the secreted adhesive remains bound to the substratum as a footprint. Recently, a label-free quantitative proteomic approach coupled with the latest mass-spectrometry technology was used to analyze the differential proteome of Paracentrotus lividus adhesive organ, comparing protein expression levels in the tube feet adhesive part (the disc) versus the non-adhesive part (the stem), and also to profile the proteome of the secreted adhesive (glue). This data article contains complementary figures and results related to the research article “Deciphering the molecular mechanisms underlying sea urchin reversible adhesion: a quantitative proteomics approach” (Lebesgue et al., 2016) . Here we provide a dataset of 1384 non-redundant proteins, their fragmented peptides and expression levels, resultant from the analysis of the tube feet differential proteome. Of these, 163 highly over-expressed tube feet disc proteins (>3-fold), likely representing the most relevant proteins for sea urchin reversible adhesion, were further annotated in order to determine the potential functions. In addition, we provide a dataset of 611 non-redundant proteins identified in the secreted adhesive proteome, as well as their functional annotation and grouping in 5 major protein groups related with adhesive exocytosis, and microbial protection. This list was further analyzed to identify the most abundant protein groups and pinpoint putative adhesive proteins, such as Nectin, the most abundant adhesive protein in sea urchin glue. The obtained data uncover the key proteins involved in sea urchins reversible adhesion, representing a step forward to the development of new wet-effective bio-inspired adhesives.
机译:海胆有专门的粘附器官,称为管脚,可调节牢固但可逆的粘​​附。管脚由圆盘组成,可产生用于基底附着的粘合剂和去粘合剂分泌物,以及用于移动的茎。分离后,分泌的粘合剂仍然作为足迹附着在基质上。最近,一种无标签的定量蛋白质组学方法与最新的质谱技术相结合,被用于分析Paracentrotus lividus粘附器官的差异蛋白质组,比较了管脚粘附部分(椎间盘)和非粘附部分中的蛋白质表达水平。 (茎),并分析分泌的粘合剂(胶)的蛋白质组。该数据文章包含与研究文章“解读海胆可逆粘附的分子机制:定量蛋白质组学方法”相关的补充数据和结果(Lebesgue等人,2016)。在这里,我们提供了1384个非冗余蛋白,其片段化肽段和表达水平的数据集,这些数据是通过对管脚差异蛋白质组进行分析得出的。在这些蛋白中,有163种高度过表达的管脚圆盘蛋白(> 3倍),可能代表了与海胆可逆粘附最相关的蛋白,并作了进一步注释,以确定其潜在功能。此外,我们提供了在分泌的黏附蛋白质组中鉴定出的611种非冗余蛋白质的数据集,以及它们的功能注释和与黏附性胞吐作用和微生物保护有关的5个主要蛋白质组的分组。对该列表进行了进一步分析,以找出最丰富的蛋白质组,并查明推定的粘附蛋白,例如Nectin,这是海胆胶中最丰富的粘附蛋白。获得的数据揭示了与海胆可逆粘附有关的关键蛋白质,代表着开发新的湿有效生物启发粘合剂的一步。

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