研究纤维素与碳水化合物结合肽的结合 1.

IF 5.4 2区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Biomacromolecules Pub Date : 2024-09-09 Epub Date: 2024-08-05 DOI:10.1021/acs.biomac.4c00575
Annika Lill, Alexandra Herbst, Markus Langhans, Steffen Paech, Kay Hamacher, Markus Biesalski, Tobias Meckel, Katja Schmitz
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引用次数: 0

摘要

碳水化合物结合模块(CBM)已成为多种任务的有用工具,包括用作纯化标签或纤维素纤维改性。为此,CBM 需要连接到目标蛋白质上,从而形成大型构建体。我们研究了来自 CBM 碳水化合物结合位点的短肽是否能以与原生全长 CBM 相似的方式结合到纳米结晶纤维素(NCC)或棉衬纸上。我们设计的纤维素结合肽的疏水性较低,长度也比之前报道的肽短。从 Cel7A-CBM1 的结合位点开始,我们将纤维素结合所需的氨基酸加入肽中。无论其二级结构、序列或疏水性如何,这些肽以及乱序序列或缺少必需氨基酸的对照肽都能以与 CBM 相似的亲和力与纤维素结合。所展示的肽与纤维素结合的这种非特异性模式可用于通过肽共轭物对纤维素基生物材料进行功能化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigating Cellulose Binding of Peptides Derived from Carbohydrate Binding Module 1.

Investigating Cellulose Binding of Peptides Derived from Carbohydrate Binding Module 1.

Carbohydrate-binding modules (CBM) have emerged as useful tools for a wide range of tasks, including the use as purification tags or for cellulose fiber modification. For this purpose, the CBM needs to be attached to a target protein leading to large constructs. We investigated if short peptides from the carbohydrate binding site of CBMs can bind in a similar way as native, full-length CBMs to nanocrystalline cellulose (NCC) or cotton linter paper. We designed our cellulose-binding peptides to be less hydrophobic and shorter than those previously reported. Starting from the binding site of Cel7A-CBM1, we incorporated the essential amino acids involved in cellulose binding into our peptides. These peptides, as well as control peptides with scrambled sequences or a lack of essential amino acids, bound to cellulose with similar affinity as CBM regardless of their secondary structure, sequence, or hydrophobicity. This unspecific mode of cellulose binding displayed by the presented peptides may be exploited to functionalize cellulose-based biomaterials by means of peptide-conjugates.

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来源期刊
Biomacromolecules
Biomacromolecules 化学-高分子科学
CiteScore
10.60
自引率
4.80%
发文量
417
审稿时长
1.6 months
期刊介绍: Biomacromolecules is a leading forum for the dissemination of cutting-edge research at the interface of polymer science and biology. Submissions to Biomacromolecules should contain strong elements of innovation in terms of macromolecular design, synthesis and characterization, or in the application of polymer materials to biology and medicine. Topics covered by Biomacromolecules include, but are not exclusively limited to: sustainable polymers, polymers based on natural and renewable resources, degradable polymers, polymer conjugates, polymeric drugs, polymers in biocatalysis, biomacromolecular assembly, biomimetic polymers, polymer-biomineral hybrids, biomimetic-polymer processing, polymer recycling, bioactive polymer surfaces, original polymer design for biomedical applications such as immunotherapy, drug delivery, gene delivery, antimicrobial applications, diagnostic imaging and biosensing, polymers in tissue engineering and regenerative medicine, polymeric scaffolds and hydrogels for cell culture and delivery.
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