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缺氧通过中断黏附斑固化过程中的 DOPA 交联作用来削弱贻贝的黏附。

Hypoxia weakens mussel attachment by interrupting DOPA cross-linking during adhesive plaque curing.

机构信息

Friday Harbor Laboratories, 620 University Road, Friday Harbor, WA 98250, USA

Department of Biology, University of Washington, 24 Kincaid Hall, Seattle, WA 98195, USA.

出版信息

J R Soc Interface. 2018 Oct 24;15(147):20180489. doi: 10.1098/rsif.2018.0489.

DOI:10.1098/rsif.2018.0489
PMID:30355807
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6228490/
Abstract

Marine mussels ( spp.) attach to a wide variety of surfaces underwater using a network of byssal threads, each tipped with a protein-based adhesive plaque that uses the surrounding seawater environment as a curing agent. Plaques undergo environmental post-processing, requiring a basic seawater pH be maintained for up to 8 days for the adhesive to strengthen completely. Given the sensitivity of plaques to local pH conditions long after deposition, we investigated the effect of other aspects of the seawater environment that are known to vary in nearshore habitats on plaque curing. The effect of seawater temperature, salinity and dissolved oxygen concentration were investigated using tensile testing, atomic force microscopy and amino acid compositional analysis. High temperature (30°C) and hyposalinity (1 PSU) had no effect on adhesion strength, while incubation in hypoxia (0.9 mg l) caused plaques to have a mottled coloration and prematurely peel from substrates, leading to a 51% decrease in adhesion strength. AFM imaging of the plaque cuticle found that plaques cured in hypoxia had regions of lower stiffness throughout, indicative of reductions in DOPA cross-linking between adhesive proteins. A better understanding of the dynamics of plaque curing could aid in the design of better synthetic adhesives, particularly in medicine where adhesion must take place within wet body cavities.

摘要

贻贝( spp.)利用由贻贝足丝组成的网络将自身附着在水下的各种表面上,每条足丝的末端都有一个基于蛋白质的粘性斑块,该斑块利用周围的海水环境作为固化剂。斑块会经历环境后处理,需要将基本的海水 pH 值维持长达 8 天,以确保完全增强粘性。鉴于斑块在沉积后很长一段时间内对局部 pH 值条件的敏感性,我们研究了已知在近岸栖息地变化的海水环境的其他方面对斑块固化的影响。我们通过拉伸测试、原子力显微镜和氨基酸组成分析研究了海水温度、盐度和溶解氧浓度的影响。高温(30°C)和低盐度(1 PSU)对附着力没有影响,而在低氧(0.9 mg l)环境中孵育会导致斑块出现斑驳的颜色,并提前从基质上剥落,导致附着力下降 51%。对缺氧环境中固化的斑块角质层的 AFM 成像发现,整个斑块的硬度都较低,表明粘性蛋白之间的 DOPA 交联减少。更好地了解斑块固化的动态可以帮助设计更好的合成粘合剂,特别是在需要在潮湿的体腔中进行黏附的医学领域。

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J R Soc Interface. 2018 Oct 24;15(147):20180489. doi: 10.1098/rsif.2018.0489.
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本文引用的文献

1
Competition between Oxidation and Coordination in Cross-Linking of Polystyrene Copolymer Containing Catechol Groups.含儿茶酚基团的聚苯乙烯共聚物交联中氧化与配位之间的竞争
ACS Macro Lett. 2012 Apr 17;1(4):457-460. doi: 10.1021/mz200217d. Epub 2012 Mar 19.
2
Environmental post-processing increases the adhesion strength of mussel byssus adhesive.环境后处理可提高贻贝足丝粘合剂的粘附强度。
Biofouling. 2018 Apr;34(4):388-397. doi: 10.1080/08927014.2018.1453927. Epub 2018 Apr 11.
3
The DOPA Ephemera: A Recurrent Motif in Invertebrates.多巴胺短暂现象:无脊椎动物中的一个反复出现的主题。
Biol Bull. 1992 Aug;183(1):178-184. doi: 10.2307/1542421.
4
Mussel adhesion - essential footwork.贻贝附着——关键的基础机制。
J Exp Biol. 2017 Feb 15;220(Pt 4):517-530. doi: 10.1242/jeb.134056.
5
Interspecies comparison of the mechanical properties and biochemical composition of byssal threads.足丝的力学性能和生化组成的种间比较。
J Exp Biol. 2017 Mar 15;220(Pt 6):984-994. doi: 10.1242/jeb.141440. Epub 2017 Feb 2.
6
Redox Capacity of an Extracellular Matrix Protein Associated with Adhesion in Mytilus californianus.与加州贻贝黏附相关的细胞外基质蛋白的氧化还原能力
Biochemistry. 2016 Apr 5;55(13):2022-30. doi: 10.1021/acs.biochem.6b00044. Epub 2016 Mar 21.
7
A mussel-inspired double-crosslinked tissue adhesive intended for internal medical use.一种受贻贝启发的用于内部医疗用途的双交联组织粘合剂。
Acta Biomater. 2016 Mar;33:51-63. doi: 10.1016/j.actbio.2016.02.003. Epub 2016 Feb 2.
8
Underwater contact adhesion and microarchitecture in polyelectrolyte complexes actuated by solvent exchange.溶剂交换驱动的聚电解质复合物中的水下接触粘附与微观结构
Nat Mater. 2016 Apr;15(4):407-412. doi: 10.1038/nmat4539. Epub 2016 Jan 18.
9
The microscopic network structure of mussel (Mytilus) adhesive plaques.贻贝(紫贻贝)粘附斑的微观网络结构。
J R Soc Interface. 2015 Dec 6;12(113):20150827. doi: 10.1098/rsif.2015.0827.
10
The staying power of adhesion-associated antioxidant activity in Mytilus californianus.加州贻贝中粘附相关抗氧化活性的持久力。
J R Soc Interface. 2015 Oct 6;12(111):20150614. doi: 10.1098/rsif.2015.0614.