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首页> 外文期刊>Journal of nanoscience and nanotechnology >Generation and characterization of inorganic and organic nanotubes on bioengineered flagella of mesophilic bacteria
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Generation and characterization of inorganic and organic nanotubes on bioengineered flagella of mesophilic bacteria

机译:嗜温细菌生物工程鞭毛上无机和有机纳米管的生成和表征

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摘要

Three types of rationally designed peptide loops were genetically engineered for display on the surface of the FliTrx E. coli flagella scaffold, a type of bacterial bionanotube adapted for the multivalent display of peptide loops. The resulting three types of loop flagella fibers were used to demonstrate the feasibility of templating synthesis of inorganic nanotubes and nanoparticles and organic nanotubes. Purified flagella fibers displaying a cationic arginine-lysine loop peptide with three guanidine and three amine functional groups were used to form silica bionanotubes, using two types of silicate ion precursors. Purified flagella fibers displaying a tyrosine-serine-glycine loop peptide with six phenolic and three aliphatic hydroxyl groups were used to initiate formation of titania bionanotubes. Purified flagella fibers displaying an anionic aspartate-glutamate loop peptide with 18 carboxylate groups were used to initiate formation of polyaniline nanotubes and hydroxyapatite nanoparticles, a key component of bones. The resulting nanomaterials were! mainly characterized by transmission electron microscopy and additionally by scanning electron microscopy, in the case of polyaniline nanotubes. The studies demonstrate the versatility of employing bioengineered flagella for the generation of a variety of nanoparticle arrays and nanotubes.
机译:对三种经过合理设计的肽环进行了基因工程改造,以展示在FliTrx大肠杆菌鞭毛支架的表面上,FliTrx大肠杆菌鞭毛支架是一种适合于肽环多价展示的细菌双离管。所得的三种类型的环鞭毛纤维被用来证明模板合成无机纳米管以及纳米颗粒和有机纳米管的可行性。展示具有三个胍和三个胺官能团的阳离子精氨酸-赖氨酸环肽的纯化鞭毛纤维,使用两种类型的硅酸盐离子前体用于形成二氧化硅双离合管。展示具有六个酚基和三个脂肪族羟基的酪氨酸-丝氨酸-甘氨酸环肽的纯化鞭毛纤维用于引发二氧化钛仿生纳米管的形成。展示具有18个羧酸根的阴离子型天门冬氨酸-谷氨酸环肽的纯化鞭毛纤维可用于形成聚苯胺纳米管和羟基磷灰石纳米颗粒(骨骼的关键成分)。得到的纳米材料是!对于聚苯胺纳米管,其主要特征在于透射电子显微镜,另外还具有扫描电子显微镜。研究表明,采用生物工程鞭毛可产生多种纳米颗粒阵列和纳米管的多功能性。

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