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具有不同二级结构的自组装肽上的羟基磷灰石形成及其对蛋白质的选择性吸附。

Hydroxyapatite Formation on Self-Assembling Peptides with Differing Secondary Structures and Their Selective Adsorption for Proteins.

机构信息

National Institute of Advanced Industrial Science and Technology, 2266-98, Anagahora, Shimo-Shidami, Moriyama-ku, Nagoya, Aichi 463-8560, Japan.

出版信息

Int J Mol Sci. 2019 Sep 19;20(18):4650. doi: 10.3390/ijms20184650.

Abstract

Self-assembling peptides have been employed as biotemplates for biomineralization, as the morphologies and sizes of the inorganic materials can be easily controlled. We synthesized two types of highly ordered self-assembling peptides with different secondary structures and investigated the effects of secondary structures on hydroxyapatite (HAp) biomineralization of peptide templates. All as-synthesized HAp-peptides have a selective protein adsorption capacity for basic protein (e.g., cytochrome c and lysozyme). Moreover, the selectivity was improved as peptide amounts increased. In particular, peptide-HAp templated on β-sheet peptides adsorbed more cytochrome c than peptide-HAp with α-helix structures, due to the greater than 2-times carboxyl group density at their surfaces. It can be expected that self-assembled peptide-templated HAp may be used as carriers for protein immobilization in biosensing and bioseparation applications and as enzyme-stabilizing agents.

摘要

自组装肽已被用作生物矿化的生物模板,因为可以轻松控制无机材料的形态和尺寸。我们合成了两种具有不同二级结构的高度有序的自组装肽,并研究了二级结构对肽模板羟基磷灰石(HAp)生物矿化的影响。所有合成的 HAp-肽都对碱性蛋白(例如细胞色素 c 和溶菌酶)具有选择性的蛋白吸附能力。此外,随着肽量的增加,选择性得到提高。特别是,β-折叠肽模板化的肽-HAp 比具有 α-螺旋结构的肽-HAp 吸附更多的细胞色素 c,这是由于其表面的羧基密度增加了两倍以上。可以预期,自组装肽模板化的 HAp 可用作生物传感和生物分离应用中蛋白质固定化的载体,以及酶稳定剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b263/6770391/230e231f6ed3/ijms-20-04650-sch001.jpg

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