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藤壶附着诱导蛋白复合物的化学特异性表面吸附

Chemistry-specific surface adsorption of the barnacle settlement-inducing protein complex.

作者信息

Petrone Luigi, Aldred Nick, Emami Kaveh, Enander Karin, Ederth Thomas, Clare Anthony S

机构信息

Division of Molecular Physics, Department of Physics, Chemistry and Biology (IFM) , Linköping University , 58183 Linköping , Sweden.

School of Marine Science and Technology , Newcastle University , Newcastle NE1 7RU , UK.

出版信息

Interface Focus. 2015 Feb 6;5(1):20140047. doi: 10.1098/rsfs.2014.0047.

Abstract

Gregarious settlement in barnacle larvae (cyprids) is induced by a contact pheromone, the settlement-inducing protein complex (SIPC). The SIPC has been identified both in the cuticle of adult barnacles and in the temporary adhesive secretion (footprint) of cyprids. Besides acting as a settlement inducer, the presence of the SIPC in footprints points to its additional involvement in the adhesion process. SIPC adsorption behaviour was therefore investigated on a series of self-assembled monolayers (SAMs) by surface plasmon resonance at the pH of seawater (8.3). Fibrinogen and α2-macroglobulin (A2M) (blood complement protease inhibitors with which the SIPC shares 29% sequence homology) were used in the adsorption experiments as positive and negative standards, respectively. The mass uptake of the SIPC was comparable to that of fibrinogen, with adsorption observed even on the protein-resistant oligo(ethylene glycol) surface. Notably, on the positively charged SAM the SIPC showed a kinetic overshoot, indicating a metastable configuration causing the amount of adsorbed protein to temporarily exceed its equilibrium value. A2M adsorption was low or negligible on all SAMs tested, except for the positively charged surface, indicating that A2M adsorption is mainly driven by electrostatics. Evaluation of SIPC non-specific adsorption kinetics revealed that it adsorbed irreversibly and non-cooperatively on all surfaces tested.

摘要

藤壶幼虫(腺介幼虫)的群居性附着是由一种接触性信息素——附着诱导蛋白复合体(SIPC)诱导的。SIPC已在成年藤壶的角质层和腺介幼虫的临时黏附分泌物(足迹)中被鉴定出来。除了作为附着诱导剂外,足迹中SIPC的存在表明它还额外参与了黏附过程。因此,通过表面等离子体共振在海水pH值(8.3)下,研究了SIPC在一系列自组装单分子层(SAMs)上的吸附行为。在吸附实验中,分别使用纤维蛋白原和α2-巨球蛋白(A2M)(与SIPC有29%序列同源性的血液补体蛋白酶抑制剂)作为阳性和阴性标准。SIPC的质量吸收与纤维蛋白原相当,甚至在抗蛋白质的聚乙二醇表面也观察到了吸附。值得注意的是,在带正电荷的SAM上,SIPC表现出动力学过冲,表明其亚稳态构型导致吸附的蛋白量暂时超过其平衡值。除带正电荷的表面外,A2M在所有测试的SAM上的吸附都很低或可忽略不计,这表明A2M的吸附主要由静电作用驱动。对SIPC非特异性吸附动力学的评估表明,它在所有测试表面上均不可逆且非协同吸附。

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