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Aggregate structure of hydroxyproline-rich glycoprotein (HRGP) and HRGP assisted dispersion of carbon nanotubes

机译:富含羟脯氨酸的糖蛋白(HRGP)和HRGP辅助碳纳米管分散的聚集结构

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摘要

Hydroxyproline-rich glycoproteins (HRGP) comprise a super-family of extracellular structural glycoproteins whose precise roles in plant cell wall assembly and functioning remain to be elucidated. However, their extended structure and repetitive block co-polymer character of HRGPs may mediate their self-assembly as wall scaffolds by like-with-like alignment of their hydrophobic peptide and hydrophilic glycopeptide modules. Intermolecular crosslinking further stabilizes the scaffold. Thus the design of HRGP-based scaffolds may have practical applications in bionanotechnology and medicine. As a first step, we have used single-molecule or single-aggregate atomic force microscopy (AFM) to visualize the structure of YK20, an amphiphilic HRGP comprised entirely of 20 tandem repeats of: Ser-Hyp4-Ser-Hyp-Ser-Hyp4-Tyr-Tyr-Tyr-Lys. YK20 formed tightly aggregated coils at low ionic strength, but networks of entangled chains with a porosity of ~0.5–3 μm at higher ionic strength. As a second step we have begun to design HRGP-carbon nanotube composites. Single-walled carbon nanotubes (SWNTs) can be considered as seamless cylinders rolled up from graphene sheets. These unique all-carbon structures have extraordinary aromatic and hydrophobic properties and form aggregated bundles due to strong inter-tube van der Waals interactions. Sonicating aggregated SWNT bundles with aqueous YK20 solubilized them presumably by interaction with the repetitive, hydrophobic, Tyr-rich peptide modules of YK20 with retention of the extended polyproline-II character. This may allow YK20 to form extended structures that could potentially be used as scaffolds for site-directed assembly of nanomaterials.
机译:富含羟脯氨酸的糖蛋白(HRGP)包含细胞外结构糖蛋白的超家族,其在植物细胞壁组装和功能中的确切作用尚待阐明。但是,HRGP的扩展结构和重复嵌段共聚物的特性可能通过其疏水性肽和亲水性糖肽模块的类似排列来介导其作为壁支架的自组装。分子间交联进一步稳定了支架。因此,基于HRGP的支架的设计可能在生物纳米技术和医学中具有实际应用。第一步,我们使用了单分子或单聚合原子力显微镜(AFM)来可视化YK20的结构,这是一种两亲性HRGP,完全由以下20个串联重复序列组成:Ser-Hyp4-Ser-Hyp-Ser-Hyp4 -Tyr-Tyr-Tyr-Lys。 YK20在低离子强度下形成紧密聚集的线圈,但在较高离子强度下缠结链的孔隙度约为0.5–3μm。第二步,我们开始设计HRGP-碳纳米管复合材料。单壁碳纳米管(SWNT)可以看作是由石墨烯片卷起来的无缝圆柱体。这些独特的全碳结构具有非凡的芳香性和疏水性,并且由于强烈的管间范德华相互作用而形成聚集的束。用含水YK20超声处理聚集的SWNT束,大概是通过与YK20的重复性,疏水性,富Tyr富肽模块相互作用而使其溶解,并保留了扩展的脯氨酸II特性。这可以允许YK20形成可能用作纳米材料定点组装支架的扩展结构。

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