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酶在原位工作的三维成像。

3D imaging of enzymes working in situ.

机构信息

Synchrotron SOLEIL , 91190 Saint-Aubin, Gif sur Yvette Cedex, France.

出版信息

Anal Chem. 2014 Jun 3;86(11):5265-70. doi: 10.1021/ac403699h. Epub 2014 May 14.

Abstract

Today, development of slowly digestible food with positive health impact and production of biofuels is a matter of intense research. The latter is achieved via enzymatic hydrolysis of starch or biomass such as lignocellulose. Free label imaging, using UV autofluorescence, provides a great tool to follow one single enzyme when acting on a non-UV-fluorescent substrate. In this article, we report synchrotron DUV fluorescence in 3-dimensional imaging to visualize in situ the diffusion of enzymes on solid substrate. The degradation pathway of single starch granules by two amylases optimized for biofuel production and industrial starch hydrolysis was followed by tryptophan autofluorescence (excitation at 280 nm, emission filter at 350 nm). The new setup has been specially designed and developed for a 3D representation of the enzyme-substrate interaction during hydrolysis. Thus, this tool is particularly effective for improving knowledge and understanding of enzymatic hydrolysis of solid substrates such as starch and lignocellulosic biomass. It could open up the way to new routes in the field of green chemistry and sustainable development, that is, in biotechnology, biorefining, or biofuels.

摘要

如今,开发具有积极健康影响的易消化食品和生产生物燃料是一项备受关注的研究课题。后者是通过淀粉或木质纤维素等生物质的酶解来实现的。使用紫外自发荧光的自由标记成像为跟踪作用于非紫外荧光底物的单一酶提供了一种很好的工具。在本文中,我们报告了同步辐射 DUV 荧光的 3 维成像,以可视化原位酶在固体底物上的扩散。通过色氨酸自发荧光(激发波长 280nm,发射滤光片 350nm)跟踪两种为生物燃料生产和工业淀粉水解优化的淀粉酶对单个淀粉颗粒的降解途径。新的设置是专门为水解过程中酶-底物相互作用的 3D 表示而设计和开发的。因此,该工具对于提高对淀粉和木质纤维素生物质等固体底物的酶解知识和理解特别有效。它可能为绿色化学和可持续发展领域(即生物技术、生物精炼或生物燃料)开辟新途径。

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