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盲鳗黏液丝绞团的自发解开由一种海水可溶性蛋白质黏合剂介导。

Spontaneous unraveling of hagfish slime thread skeins is mediated by a seawater-soluble protein adhesive.

作者信息

Bernards Mark A, Oke Isdin, Heyland Andreas, Fudge Douglas S

机构信息

Department of Integrative Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.

出版信息

J Exp Biol. 2014 Apr 15;217(Pt 8):1263-8. doi: 10.1242/jeb.096909.

Abstract

Hagfishes are known for their ability to rapidly produce vast quantities of slime when provoked. The slime is formed via the interaction between seawater and two components released by the slime glands: mucin vesicles from gland mucous cells, which swell and rupture in seawater to form a network of mucus strands, and intermediate filament-rich threads, which are produced within gland thread cells as tightly coiled bundles called skeins. A previous study showed that the unraveling of skeins from Atlantic hagfish (Myxine glutinosa) requires both the presence of mucins and hydrodynamic mixing. In contrast, skeins from Pacific hagfish (Eptatretus stoutii) unravel in the absence of both mucins and mixing. We tested the hypothesis that spontaneous unraveling of E. stoutii skeins is triggered by the dissolution of a seawater-soluble protein adhesive and the release of stored strain energy within the coiled thread. Here we show that, as predicted by this hypothesis, unraveling can be initiated by a protease under conditions in which unraveling does not normally occur. We also demonstrate, using high resolution scanning electron microscopy, that the treatment of skeins with solutions that cause unraveling also leads to the disappearance of surface and inter-thread features that remain when skeins are washed with stabilizing solutions. Our study provides a mechanism for the deployment of thread skeins in Pacific hagfish slime, and raises the possibility of producing novel biomimetic protein adhesives that are salt, temperature and kosmotrope sensitive.

摘要

盲鳗以受到刺激时能迅速分泌大量黏液而闻名。黏液是通过海水与黏液腺分泌的两种成分相互作用形成的:来自腺黏液细胞的黏蛋白囊泡,在海水中膨胀并破裂形成黏液丝网络;富含中间丝的细丝,在腺丝细胞内以紧密缠绕的束状形式产生,称为线团。先前的一项研究表明,大西洋盲鳗(Myxine glutinosa)的线团展开既需要黏蛋白的存在,也需要流体动力混合。相比之下,太平洋盲鳗(Eptatretus stoutii)的线团在没有黏蛋白和混合的情况下也能展开。我们测试了这样一个假设,即太平洋盲鳗线团的自发展开是由一种海水可溶性蛋白质粘合剂的溶解以及螺旋状细丝中储存的应变能的释放引发的。在此我们表明,正如该假设所预测的,在通常不会发生展开的条件下,蛋白酶可以引发展开。我们还使用高分辨率扫描电子显微镜证明,用导致展开的溶液处理线团也会导致在用稳定溶液洗涤线团时仍然存在的表面和线间特征消失。我们的研究为太平洋盲鳗黏液中线团的展开提供了一种机制,并提出了生产对盐、温度和促溶剂敏感的新型仿生蛋白质粘合剂的可能性。

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