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引用本文的文献

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2
Insights into the Synthesis, Secretion and Curing of Barnacle Cyprid Adhesive via Transcriptomic and Proteomic Analyses of the Cement Gland.通过对贻贝粘合腺转录组和蛋白质组的分析,深入了解藤壶幼体粘合的合成、分泌和修复。
Mar Drugs. 2020 Mar 31;18(4):186. doi: 10.3390/md18040186.
3
Identification and characterization of protein phosphorylation in the soluble protein fraction of scallop (Chlamys farreri) byssus.鉴定和表征扇贝(Chlamys farreri)足丝可溶性蛋白部分的蛋白质磷酸化。
Mol Biol Rep. 2019 Oct;46(5):4943-4951. doi: 10.1007/s11033-019-04945-x. Epub 2019 Jul 1.
4
Proteinaceous secretion of bioadhesive produced during crawling and settlement of Crassostrea gigas larvae.贝类幼虫在爬行和附着过程中产生的黏蛋白状分泌物。
Sci Rep. 2018 Oct 17;8(1):15298. doi: 10.1038/s41598-018-33720-4.
5
Acorn Barnacles Secrete Phase-Separating Fluid to Clear Surfaces Ahead of Cement Deposition.藤壶在分泌水泥质之前分泌相分离流体以清洁表面。
Adv Sci (Weinh). 2018 Mar 14;5(6):1700762. doi: 10.1002/advs.201700762. eCollection 2018 Jun.
6
Sequence basis of Barnacle Cement Nanostructure is Defined by Proteins with Silk Homology.藤壶胶纳米结构的序列基础由具有丝同源性的蛋白质定义。
Sci Rep. 2016 Nov 8;6:36219. doi: 10.1038/srep36219.

本文引用的文献

1
The chemistry of stalked barnacle adhesive (Lepas anatifera).有柄藤壶粘合剂(茗荷儿)的化学性质。
Interface Focus. 2015 Feb 6;5(1):20140062. doi: 10.1098/rsfs.2014.0062.
2
Mechanical properties of the cement of the stalked barnacle Dosima fascicularis (Cirripedia, Crustacea).有柄藤壶Dosima fascicularis(蔓足亚纲,甲壳纲)的壳板水泥的力学性能。
Interface Focus. 2015 Feb 6;5(1):20140049. doi: 10.1098/rsfs.2014.0049.
3
Amyloid-like conformation and interaction for the self-assembly in barnacle underwater cement.藤壶水下黏合剂中用于自组装的类淀粉样构象与相互作用。
Biochemistry. 2015 Jan 27;54(3):826-35. doi: 10.1021/bi500965f. Epub 2015 Jan 9.
4
Growth and development of the barnacle Amphibalanus amphitrite: time and spatially resolved structure and chemistry of the base plate.藤壶纹藤壶的生长与发育:基板的时间和空间分辨结构与化学性质
Biofouling. 2014;30(7):799-812. doi: 10.1080/08927014.2014.930736.
5
Synergistic roles for lipids and proteins in the permanent adhesive of barnacle larvae.脂质和蛋白质在藤壶幼虫永久性附肢中的协同作用。
Nat Commun. 2014 Jul 11;5:4414. doi: 10.1038/ncomms5414.
6
Unusual adhesive production system in the barnacle Lepas anatifera: an ultrastructural and histochemical investigation.茗荷(Lepas anatifera)独特的黏附生产系统:超微结构和组织化学研究
J Morphol. 2012 Dec;273(12):1377-91. doi: 10.1002/jmor.20067. Epub 2012 Aug 22.
7
Barnacle Balanus amphitrite adheres by a stepwise cementing process.藤壶藤壶 Amphitrite 以逐步胶结的过程附着。
Langmuir. 2012 Sep 18;28(37):13364-72. doi: 10.1021/la301695m. Epub 2012 Jul 11.
8
The present and future of biologically inspired adhesive interfaces and materials.仿生粘附界面和材料的现状与未来。
Langmuir. 2012 Jan 31;28(4):2200-5. doi: 10.1021/la300044v. Epub 2012 Jan 12.
9
Localization of the bioadhesive precursors of the sandcastle worm, Phragmatopoma californica (Fewkes).沙堡蠕虫(Phragmatopoma californica,Fewkes)生物黏附前体的定位。
J Exp Biol. 2012 Jan 15;215(Pt 2):351-61. doi: 10.1242/jeb.065011.
10
Primary structure and phosphorylation of dentin matrix protein 1 (DMP1) and dentin phosphophoryn (DPP) uniquely determine their role in biomineralization.牙本质基质蛋白 1(DMP1)和牙本质磷蛋白(DPP)的一级结构和磷酸化独特地决定了它们在生物矿化中的作用。
Biomacromolecules. 2011 Aug 8;12(8):2933-45. doi: 10.1021/bm2005214. Epub 2011 Jul 18.

藤壶粘附界面内磷蛋白的定位

Localization of Phosphoproteins within the Barnacle Adhesive Interface.

作者信息

Dickinson Gary H, Yang Xu, Wu Fanghui, Orihuela Beatriz, Rittschof Dan, Beniash Elia

机构信息

Department of Oral Biology, McGowan Institute for Regenerative Medicine, University of Pittsburgh, 505 SALKP, 335 Sutherland Drive, Pittsburgh, Pennsylvania 15213; Department of Biology, The College of New Jersey, 2000 Pennington Road, Ewing, New Jersey 08628; and.

Department of Oral Biology, McGowan Institute for Regenerative Medicine, University of Pittsburgh, 505 SALKP, 335 Sutherland Drive, Pittsburgh, Pennsylvania 15213;

出版信息

Biol Bull. 2016 Jun;230(3):233-42. doi: 10.1086/BBLv230n3p233.

DOI:10.1086/BBLv230n3p233
PMID:27365418
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6377941/
Abstract

Barnacles permanently adhere to nearly any inert substrate using proteinaceous glue. The glue consists of at least ten major proteins, some of which have been isolated and sequenced. Questions still remain about the chemical mechanisms involved in adhesion and the potential of the glue to serve as a platform for mineralization of the calcified base plate. We tested the hypothesis that barnacle glue contains phosphoproteins, which have the potential to play a role in both adhesion and mineralization. Using a combination of phosphoprotein-specific gel staining and Western blotting with anti-phosphoserine antibody, we identified multiple phosphorylated proteins in uncured glue secretions from the barnacle Amphibalanus amphitrite The protein composition of the glue and the quantity and abundance of phosphoproteins varied distinctly among individual barnacles, possibly due to cyclical changes in the glue secretion over time. We assessed the location of the phosphoproteins within the barnacle glue layer using decalcified barnacle base plates and residual glue deposited by reattached barnacles. Phosphoproteins were found throughout the organic matrix of the base plate and within the residual glue. Staining within the residual glue appeared most intensely in regions where capillary glue ducts, which are involved in cyclical release of glue, had been laid down. Lastly, mineralization studies of glue proteins separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) indicated that proteins identified as phosphorylated possibly induce mineralization of calcium carbonate (CaCO3). These results contribute to our understanding of the protein composition of barnacle glue, and provide new insights into the potential roles of phosphoproteins in underwater bioadhesives.

摘要

藤壶利用蛋白质类胶水永久附着在几乎任何惰性基质上。这种胶水至少由十种主要蛋白质组成,其中一些已被分离和测序。关于粘附所涉及的化学机制以及胶水作为钙化基板矿化平台的潜力,仍然存在问题。我们测试了一个假设,即藤壶胶水含有磷蛋白,其有可能在粘附和矿化过程中发挥作用。通过结合磷蛋白特异性凝胶染色和使用抗磷酸丝氨酸抗体的蛋白质印迹法,我们在藤壶纹藤壶未固化的胶水分泌物中鉴定出多种磷酸化蛋白质。胶水的蛋白质组成以及磷蛋白的数量和丰度在不同的藤壶个体之间有明显差异,这可能是由于胶水分泌随时间的周期性变化所致。我们使用脱钙的藤壶基板和重新附着的藤壶沉积的残留胶水来评估磷蛋白在藤壶胶水层中的位置。在基板的整个有机基质以及残留胶水中都发现了磷蛋白。在残留胶水中,染色最强烈的区域出现在参与胶水周期性释放的毛细管状胶水管道所在的位置。最后,通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)分离的胶水蛋白的矿化研究表明,被鉴定为磷酸化的蛋白质可能诱导碳酸钙(CaCO₃)的矿化。这些结果有助于我们了解藤壶胶水的蛋白质组成,并为磷蛋白在水下生物粘合剂中的潜在作用提供了新的见解。