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Starch‐binding domains in the CBM45 family – low‐affinity domains from glucan, water dikinase and α‐amylase involved in plastidial starch metabolism

机译:CBm45家族中的淀粉结合结构域 - 来自葡聚糖,水二激酶和α-淀粉酶的低亲和力结构域参与质体淀粉代谢

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摘要

Starch‐binding domains are noncatalytic carbohydrate‐binding modules that mediate binding to granular starch. The starch‐binding domains from the carbohydrate‐binding module family 45 (CBM45, ) are found as N‐terminal tandem repeats in a small number of enzymes, primarily from photosynthesizing organisms. Isolated domains from representatives of each of the two classes of enzyme carrying CBM45‐type domains, the Solanum tuberosumα‐glucan, water dikinase and the Arabidopsis thaliana plastidial α‐amylase 3, were expressed as recombinant proteins and characterized. Differential scanning calorimetry was used to verify the conformational integrity of an isolated CBM45 domain, revealing a surprisingly high thermal stability (Tm of 84.8 °C). The functionality of CBM45 was demonstrated in planta by yellow/green fluorescent protein fusions and transient expression in tobacco leaves. Affinities for starch and soluble cyclodextrin starch mimics were measured by adsorption assays, surface plasmon resonance and isothermal titration calorimetry analyses. The data indicate that CBM45 binds with an affinity of about two orders of magnitude lower than the classical starch‐binding domains from extracellular microbial amylolytic enzymes. This suggests that low‐affinity starch‐binding domains are a recurring feature in plastidial starch metabolism, and supports the hypothesis that reversible binding, effectuated through low‐affinity interaction with starch granules, facilitates dynamic regulation of enzyme activities and, hence, of starch metabolism.
机译:淀粉结合域是介导与颗粒淀粉结合的非催化性碳水化合物结合模块。来自碳水化合物结合模块家族45(CBM45,)的淀粉结合结构域被发现为少量酶的N端串联重复序列,主要来自光合作用生物。从带有CBM45型结构域的两类酶的代表中分离出的结构域,即马铃薯茄α-葡聚糖,水二激酶和拟南芥质体α-淀粉酶3,被表达为重组蛋白并进行了表征。差示扫描量热法用于验证分离的CBM45域的构象完整性,显示出令人惊讶的高热稳定性(Tm为84.8°C)。 CBM45的功能在植物中通过黄色/绿色荧光蛋白融合和在烟叶中的瞬时表达得到了证明。通过吸附测定,表面等离振子共振和等温滴定量热分析测量淀粉和可溶性环糊精淀粉模拟物的亲和力。数据表明,CBM45的亲和力比细胞外微生物淀粉分解酶的经典淀粉结合域低约两个数量级。这表明低亲和力的淀粉结合域是质体淀粉代谢中的一个重复特征,并支持以下假设:可逆结合是通过与淀粉颗粒的低亲和力相互作用而实现的,有利于酶活性的动态调节,从而促进淀粉代谢的动态调节。 。

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