通过异肽键形成模块化组装的弹性蛋白类多肽纳米颗粒的功能修饰。

IF 2 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biotechnology Letters Pub Date : 2024-11-28 DOI:10.1007/s10529-024-03549-1
Jun Yamaguchi, Kei Nishida, Eiry Kobatake, Masayasu Mie
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引用次数: 0

摘要

温度响应弹性蛋白样多肽(ELPs)表现出低临界溶液温度型相变,为构建纳米颗粒提供了潜在的有用材料。在此,我们开发了一种新的修饰方法,通过与SnoopTag/SnoopCatcher系统形成异肽键来修饰elp基纳米颗粒,该方法不受颗粒形成所需加热过程的影响。ELP与聚(天冬氨酸)(poly(D))的融合蛋白(称为ELP-poly(D))和ELP-poly(D)与SnoopCatcher (ELP-poly(D)-SnC)的融合蛋白的混合物由于ELP的温度响应性形成了蛋白质纳米颗粒,所得纳米颗粒表面显示SnoopCatcher结合域。在本研究中,我们在ELP-poly(D)-SnC和ELP-poly(D)构建的蛋白质纳米颗粒表面展示了与SnoopTag融合的两种模型蛋白。模型蛋白为增强型绿色荧光蛋白(EGFP)和荧光兔(Rluc),分别具有发光能力和较弱的热稳定性。从结合效率和纯化后恢复的纳米颗粒活性计算,发现颗粒表面的EGFP保持48.7%的活性,而Rluc表现出几乎完全的活性。包含SnoopTag/SnoopCatcher系统的elp纳米颗粒通过异肽键形成,为颗粒装饰提供了机会。
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Functional decoration of elastin-like polypeptides-based nanoparticles with a modular assembly via isopeptide bond formation.

Temperature-responsive elastin-like polypeptides (ELPs) exhibit a low critical solution temperature-type phase transition and offer potential as useful materials for the construction of nanoparticles. Herein, we developed a novel decoration method for ELP-based nanoparticles via isopeptide bond formation with the SnoopTag/SnoopCatcher system that is not affected by the heating process required for particle formation. A mixture of a fusion protein of ELP and poly(aspartic acid) (poly(D)), known as ELP-poly(D), and ELP-poly(D) fused with SnoopCatcher (ELP-poly(D)-SnC) formed protein nanoparticles as a result of the temperature responsiveness of ELP, with the resultant nanoparticles displaying the SnoopCatcher binding domain on their surfaces. In the present study, two model proteins fused to SnoopTag were displayed on the surfaces of protein nanoparticles constructed from ELP-poly(D)-SnC and ELP-poly(D). The model proteins are enhanced green fluorescent protein (EGFP) and Renilla luciferace (Rluc), which exhibits luminescent capability and weak thermostability, respectively. EGFP on the particle surface was found to retain 48.7% activity, while Rluc exhibited almost full activity, as calculated from the binding efficiency and nanoparticle activities recovered after purification. ELP-based nanoparticles containing the SnoopTag/SnoopCatcher system offer the opportunity for particle decoration with a wide range of functional proteins via isopeptide bond formation.

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来源期刊
Biotechnology Letters
Biotechnology Letters 工程技术-生物工程与应用微生物
CiteScore
5.90
自引率
3.70%
发文量
108
审稿时长
1.2 months
期刊介绍: Biotechnology Letters is the world’s leading rapid-publication primary journal dedicated to biotechnology as a whole – that is to topics relating to actual or potential applications of biological reactions affected by microbial, plant or animal cells and biocatalysts derived from them. All relevant aspects of molecular biology, genetics and cell biochemistry, of process and reactor design, of pre- and post-treatment steps, and of manufacturing or service operations are therefore included. Contributions from industrial and academic laboratories are equally welcome. We also welcome contributions covering biotechnological aspects of regenerative medicine and biomaterials and also cancer biotechnology. Criteria for the acceptance of papers relate to our aim of publishing useful and informative results that will be of value to other workers in related fields. The emphasis is very much on novelty and immediacy in order to justify rapid publication of authors’ results. It should be noted, however, that we do not normally publish papers (but this is not absolute) that deal with unidentified consortia of microorganisms (e.g. as in activated sludge) as these results may not be easily reproducible in other laboratories. Papers describing the isolation and identification of microorganisms are not regarded as appropriate but such information can be appended as supporting information to a paper. Papers dealing with simple process development are usually considered to lack sufficient novelty or interest to warrant publication.
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