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Amylase binding to starch granules under hydrolysing and non-hydrolysing conditions

机译:淀粉酶在水解和非水解条件下与淀粉颗粒的结合

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摘要

Although considerable information is available about amylolysis rate, extent and pattern of granular starches, the underlying mechanisms of enzyme action and interactions are not fully understood, partly due to the lack of direct visualisation of enzyme binding and subsequent hydrolysis of starch granules. In the present study, α-amylase (AA) from porcine pancreas was labelled with either fluorescein isothiocyanate (FITC) or tetramethylrhodamine isothiocyanate (TRITC) fluorescent dye with maintenance of significant enzyme activity. The binding of FITC/TRITC-AA conjugate to the surface and interior of granules was studied under both non-hydrolysing (0 °C) and hydrolysing (37 °C) conditions with confocal microscopy. It was observed that enzyme binding to maize starch granules under both conditions was more homogenous compared with potato starch. Enzyme molecules appear to preferentially bind to the granules or part of granules that are more susceptible to enzymic degradation. The specificity is such that fresh enzyme added after a certain time of incubation binds at the same location as previously bound enzyme. By visualising the enzyme location during binding and hydrolysis, detailed information is provided regarding the heterogeneity of granular starch digestion.
机译:尽管可获得有关颗粒淀粉的淀粉分解速率,程度和模式的大量信息,但尚未完全了解酶作用和相互作用的潜在机理,部分原因是缺乏对酶结合和淀粉颗粒随后水解的直接观察。在本研究中,猪胰腺的α-淀粉酶(AA)用异硫氰酸荧光素(FITC)或异硫氰酸四甲基罗丹明(TRITC)荧光染料标记,并具有显着的酶活性。利用共聚焦显微镜研究了在非水解(0°C)和水解(37°C)条件下FITC / TRITC-AA偶联物与颗粒表面和内部的结合。观察到,与马铃薯淀粉相比,在两种条件下酶结合至玉米淀粉颗粒的均质性更高。酶分子似乎优先结合更易发生酶降解的颗粒或部分颗粒。特异性是这样的,使得孵育一定时间后添加的新鲜酶与先前结合的酶在同一位置结合。通过可视化结合和水解过程中酶的位置,可以提供有关颗粒淀粉消化异质性的详细信息。

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