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拟南芥淀粉合酶III催化结构域的功能与结构表征

Functional and structural characterization of the catalytic domain of the starch synthase III from Arabidopsis thaliana.

作者信息

Busi Maria V, Palopoli Nicolas, Valdez Hugo A, Fornasari Maria S, Wayllace Nahuel Z, Gomez-Casati Diego F, Parisi Gustavo, Ugalde Rodolfo A

机构信息

IIB-INTECH, CONICET-UNSAM, Camino Circunvalación km 6, 7130, Chascomús, Buenos Aires, Argentina.

出版信息

Proteins. 2008 Jan 1;70(1):31-40. doi: 10.1002/prot.21469.

Abstract

Glycogen and starch are the major energy storage compounds in most living organisms. The metabolic pathways leading to their synthesis involve the action of several enzymes, among which glycogen synthase (GS) or starch synthase (SS) catalyze the elongation of the alpha-1,4-glucan backbone. At least five SS isoforms were described in Arabidopsis thaliana; it has been reported that the isoform III (SSIII) has a regulatory function on the synthesis of transient plant starch. The catalytic C-terminal domain of A. thaliana SSIII (SSIII-CD) was cloned and expressed. SSIII-CD fully complements the production of glycogen by an Agrobacterium tumefaciens glycogen synthase null mutant, suggesting that this truncated isoform restores in vivo the novo synthesis of bacterial glycogen. In vitro studies revealed that recombinant SSIII-CD uses with more efficiency rabbit muscle glycogen than amylopectin as primer and display a high apparent affinity for ADP-Glc. Fold class assignment methods followed by homology modeling predict a high global similarity to A. tumefaciens GS showing a fully conservation of the ADP-binding residues. On the other hand, this comparison revealed important divergences of the polysaccharide binding domain between AtGS and SSIII-CD.

摘要

糖原和淀粉是大多数生物体中的主要能量储存化合物。导致它们合成的代谢途径涉及多种酶的作用,其中糖原合酶(GS)或淀粉合酶(SS)催化α-1,4-葡聚糖主链的延长。拟南芥中至少描述了五种SS亚型;据报道,亚型III(SSIII)对瞬时植物淀粉的合成具有调节功能。克隆并表达了拟南芥SSIII的催化C末端结构域(SSIII-CD)。SSIII-CD完全补充了根癌农杆菌糖原合酶缺失突变体产生糖原的能力,这表明这种截短的亚型在体内恢复了细菌糖原的从头合成。体外研究表明,重组SSIII-CD以兔肌肉糖原而非支链淀粉作为引物时使用效率更高,并且对ADP-葡萄糖表现出高表观亲和力。通过折叠类分配方法随后进行同源建模预测,与根癌农杆菌GS具有高度的整体相似性,显示出ADP结合残基的完全保守性。另一方面,这种比较揭示了AtGS和SSIII-CD之间多糖结合结构域的重要差异。

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