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参与海胆临时黏附的糖蛋白。

Glycoproteins Involved in Sea Urchin Temporary Adhesion.

机构信息

Centro de Ciências do Mar e do Ambiente (MARE), ARNET-Aquatic Research Network, Departamento de Biologia Animal, Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal.

Centre for Proteome Research, Institute of Systems, Molecular and Integrative Biology, University of Liverpool, Liverpool L69 7ZB, UK.

出版信息

Mar Drugs. 2023 Feb 24;21(3):145. doi: 10.3390/md21030145.

Abstract

Biomedical adhesives, despite having been used increasingly in recent years, still face a major technological challenge: strong adhesion in wet environments. In this context, biological adhesives secreted by marine invertebrates have appealing characteristics to incorporate into new underwater biomimetic adhesives: water resistance, nontoxicity and biodegradability. Little is still known about temporary adhesion. Recently, a transcriptomic differential analysis of sea urchin tube feet pinpointed 16 adhesive/cohesive protein candidates. In addition, it has been demonstrated that the adhesive secreted by this species is composed of high molecular weight proteins associated with N-Acetylglucosamine in a specific chitobiose arrangement. As a follow-up, we aimed to investigate which of these adhesive/cohesive protein candidates were glycosylated through lectin pulldowns, protein identification by mass spectroscopy and in silico characterization. We demonstrate that at least five of the previously identified protein adhesive/cohesive candidates are glycoproteins. We also report the involvement of a third Nectin variant, the first adhesion-related protein to be identified in . By providing a deeper characterization of these adhesive/cohesive glycoproteins, this work advances our understanding of the key features that should be replicated in future sea urchin-inspired bioadhesives.

摘要

生物医学粘合剂尽管近年来越来越多地被使用,但仍面临着一项重大的技术挑战:在潮湿环境中具有强大的附着力。在这种情况下,海洋无脊椎动物分泌的生物粘合剂具有吸引人的特点,可以纳入新的水下仿生粘合剂:耐水性、无毒和可生物降解性。关于临时附着力的了解还很少。最近,对海胆管足的转录组差异分析确定了 16 种有潜力的粘合/内聚蛋白候选物。此外,已经证明该物种分泌的粘合剂由与 N-乙酰葡萄糖胺在特定壳二糖排列中相关的高分子量蛋白质组成。作为后续研究,我们旨在通过凝集素拉下实验、通过质谱法进行蛋白质鉴定和计算机模拟特征分析来研究这些粘合/内聚蛋白候选物中哪些是糖基化的。我们证明,至少有五个先前鉴定的蛋白质粘合/内聚候选物是糖蛋白。我们还报告了第三个神经钙黏蛋白变体的参与,这是在 中首次鉴定出的与粘附相关的蛋白质。通过更深入地研究这些粘合/内聚糖蛋白,本工作加深了我们对未来受海胆启发的生物粘合剂应复制的关键特征的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4c8/10057474/78d2b47d95e5/marinedrugs-21-00145-g001.jpg

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