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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >ELECTRON MICROSCOPIC INVESTIGATION OF THE DIFFUSION OF BACILLUS LICHENIFORMIS ALPHA-AMYLASE INTO CORN STARCH GRANULES
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ELECTRON MICROSCOPIC INVESTIGATION OF THE DIFFUSION OF BACILLUS LICHENIFORMIS ALPHA-AMYLASE INTO CORN STARCH GRANULES

机译:地衣芽孢杆菌α-淀粉酶向玉米淀粉颗粒中扩散的电子显微镜研究

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摘要

A method for the direct electron microscopic observation of amylases in interaction with starch granules is presented. The technique involves immune-gold labeling of the enzymes and cross-sectioning of hydrated starch granules. This approach allows the analysis of the internal degradation of starch with a concomitant visualization of enzymes at the sites of hydrolysis. The visualization of enzymes at the surface, inside the channel and inside the core of the degraded granules shows that the cc-amylase molecules first proceed from the surface toward the center (centripetal hydrolysis). Then the core is completely degraded from within by erosion of its periphery (centrifugal hydrolysis), In the first case (centripetal hydrolysis), the enzymes act by progressing along the polysaccharide chains. By contrast, the centrifugal hydrolysis leads to even erosion, indicative of a more diffusive motion of the enzymes. [References: 10]
机译:提出了一种直接电子显微镜观察淀粉酶与淀粉颗粒相互作用的方法。该技术涉及酶的免疫金标记和水合淀粉颗粒的横截面。这种方法可以分析淀粉的内部降解,同时在水解位点观察酶。降解颗粒表面,通道内部和核心内部酶的可视化显示,α-淀粉酶分子首先从表面向中心移动(向心水解)。然后,核心通过其外围的侵蚀(离心水解)从内部完全降解。在第一种情况下(向心水解),酶通过沿着多糖链前进而起作用。相反,离心水解导致均匀侵蚀,表明酶的扩散运动更多。 [参考:10]

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