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对拟南芥淀粉合酶和分支酶同工型的功能相互作用分析表明,SSI和BEs的协同作用导致葡聚糖具有与支链淀粉相似的多峰链长分布。

Analysis of the functional interaction of Arabidopsis starch synthase and branching enzyme isoforms reveals that the cooperative action of SSI and BEs results in glucans with polymodal chain length distribution similar to amylopectin.

作者信息

Brust Henrike, Lehmann Tanja, D'Hulst Christophe, Fettke Joerg

机构信息

Institute of Biochemistry and Biology, University of Potsdam, Potsdam-Golm, Germany.

Unité de Glycobiologie Structurale et Fonctionnelle, Université Lille1, Villeneuve d'Ascq, France.

出版信息

PLoS One. 2014 Jul 11;9(7):e102364. doi: 10.1371/journal.pone.0102364. eCollection 2014.

Abstract

Starch synthase (SS) and branching enzyme (BE) establish the two glycosidic linkages existing in starch. Both enzymes exist as several isoforms. Enzymes derived from several species were studied extensively both in vivo and in vitro over the last years, however, analyses of a functional interaction of SS and BE isoforms are missing so far. Here, we present data from in vitro studies including both interaction of leaf derived and heterologously expressed SS and BE isoforms. We found that SSI activity in native PAGE without addition of glucans was dependent on at least one of the two BE isoforms active in Arabidopsis leaves. This interaction is most likely not based on a physical association of the enzymes, as demonstrated by immunodetection and native PAGE mobility analysis of SSI, BE2, and BE3. The glucans formed by the action of SSI/BEs were analysed using leaf protein extracts from wild type and be single mutants (Atbe2 and Atbe3 mutant lines) and by different combinations of recombinant proteins. Chain length distribution (CLD) patterns of the formed glucans were irrespective of SSI and BE isoforms origin and still independent of assay conditions. Furthermore, we show that all SS isoforms (SSI-SSIV) were able to interact with BEs and form branched glucans. However, only SSI/BEs generated a polymodal distribution of glucans which was similar to CLD pattern detected in amylopectin of Arabidopsis leaf starch. We discuss the impact of the SSI/BEs interplay for the CLD pattern of amylopectin.

摘要

淀粉合酶(SS)和分支酶(BE)形成了淀粉中存在的两种糖苷键。这两种酶都以几种同工型存在。在过去几年中,对来自多个物种的这些酶在体内和体外都进行了广泛研究,然而,迄今为止尚缺乏对SS和BE同工型功能相互作用的分析。在此,我们展示了体外研究的数据,包括叶片来源的以及异源表达的SS和BE同工型之间的相互作用。我们发现,在不添加葡聚糖的非变性聚丙烯酰胺凝胶电泳中,SSI的活性依赖于拟南芥叶片中具有活性的两种BE同工型中的至少一种。免疫检测以及对SSI、BE2和BE3的非变性聚丙烯酰胺凝胶电泳迁移率分析表明,这种相互作用很可能不是基于酶之间的物理缔合。利用野生型和be单突变体(Atbe2和Atbe3突变系)的叶片蛋白提取物以及重组蛋白的不同组合,对SSI/BEs作用形成的葡聚糖进行了分析。所形成葡聚糖的链长分布(CLD)模式与SSI和BE同工型的来源无关,并且仍然独立于检测条件。此外,我们表明所有的SS同工型(SSI - SSIV)都能够与BEs相互作用并形成分支葡聚糖。然而,只有SSI/BEs产生了葡聚糖的多峰分布,这与在拟南芥叶片淀粉的支链淀粉中检测到的CLD模式相似。我们讨论了SSI/BEs相互作用对支链淀粉CLD模式的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b456/4094495/84d10b4a74b4/pone.0102364.g001.jpg

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