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硅酸蛋白-α相互作用蛋白silintaphin-1在仿生生物矿化中的作用。

The role of the silicatein-alpha interactor silintaphin-1 in biomimetic biomineralization.

作者信息

Wiens Matthias, Bausen Melanie, Natalio Filipe, Link Thorben, Schlossmacher Ute, Müller Werner E G

机构信息

Institute for Physiological Chemistry and Pathobiochemistry, Johannes Gutenberg University, Medical School, Duesbergweg 6, Mainz, Germany.

出版信息

Biomaterials. 2009 Mar;30(8):1648-56. doi: 10.1016/j.biomaterials.2008.12.021. Epub 2009 Jan 1.

Abstract

Biosilicification in sponges is initiated by formation of proteinaceous filaments, predominantly consisting of silicateins. Silicateins enzymatically catalyze condensation of silica nanospheres, resulting in symmetric skeletal elements (spicules). In order to create tailored biosilica structures in biomimetic approaches it is mandatory to elucidate proteins that are fundamental for the assembly of filaments. Silintaphin-1 is a core component of modularized filaments and also part of a spicule-enfolding layer. It bears no resemblance to other proteins, except for the presence of an interaction domain that is fundamental for its function as scaffold/template. In the presence of silicatein silintaphin-1 facilitates the formation of in vitro filaments. Also, it directs the assembly of gamma-Fe(2)O(3) nanoparticles and surface-immobilized silicatein to rod-like biocomposites, synthetic spicules. Thus, silintaphin-1 will contribute to biomimetic approaches that pursue a controlled formation of patterned biosilica-based materials. Its combination with gamma-Fe(2)O(3) nanoparticles and immobilized silicatein will furthermore inspire future biomedical applications and clinical diagnostics.

摘要

海绵中的生物矿化作用由蛋白质细丝的形成引发,这些细丝主要由硅蛋白组成。硅蛋白通过酶催化作用使二氧化硅纳米球缩合,从而形成对称的骨骼元素(骨针)。为了在仿生方法中创建定制的生物二氧化硅结构,必须阐明对细丝组装至关重要的蛋白质。Silintaphin-1是模块化细丝的核心成分,也是骨针包裹层的一部分。除了存在对其作为支架/模板的功能至关重要的相互作用结构域外,它与其他蛋白质没有相似之处。在硅蛋白存在的情况下,Silintaphin-1促进体外细丝的形成。此外,它还能引导γ-Fe(2)O(3)纳米颗粒和表面固定的硅蛋白组装成棒状生物复合材料,即合成骨针。因此,Silintaphin-1将有助于追求可控形成基于生物二氧化硅的图案化材料的仿生方法。它与γ-Fe(2)O(3)纳米颗粒和固定化硅蛋白的结合还将为未来的生物医学应用和临床诊断带来启发。

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