Delvallé David, Dumez Sylvain, Wattebled Fabrice, Roldán Isaac, Planchot Véronique, Berbezy Pierre, Colonna Paul, Vyas Darshna, Chatterjee Manash, Ball Steven, Mérida Angel, D'Hulst Christophe
Unité de Glycobiologie Structurale et Fonctionnelle, UMR8576 CNRS/USTL, IFR 118, Université des Sciences et Technologies de Lille, 59655 Villeneuve d'Ascq Cedex, France.
Plant J. 2005 Aug;43(3):398-412. doi: 10.1111/j.1365-313X.2005.02462.x.
A minimum of four soluble starch synthase families have been documented in all starch-storing green plants. These activities are involved in amylopectin synthesis and are extremely well conserved throughout the plant kingdom. Mutants or transgenic plants defective for SSII and SSIII isoforms have been previously shown to have a large and specific impact on the synthesis of amylopectin while the function of the SSI type of enzymes has remained elusive. We report here that Arabidopsis mutants, lacking a plastidial starch synthase isoform belonging to the SSI family, display a major and novel type of structural alteration within their amylopectin. Comparative analysis of beta-limit dextrins for both wild type and mutant amylopectins suggests a specific and crucial function of SSI during the synthesis of transient starch in Arabidopsis leaves. Considering our own characterization of SSI activity and the previously described kinetic properties of maize SSI, our results suggest that the function of SSI is mainly involved in the synthesis of small outer chains during amylopectin cluster synthesis.
在所有储存淀粉的绿色植物中,至少已记录有四个可溶性淀粉合酶家族。这些活性参与支链淀粉的合成,并且在整个植物界中都极其保守。先前已表明,SSII和SSIII同工型有缺陷的突变体或转基因植物对支链淀粉的合成有重大且特定的影响,而SSI型酶的功能仍然难以捉摸。我们在此报告,拟南芥突变体缺乏属于SSI家族的质体淀粉合酶同工型,其支链淀粉内显示出一种主要的新型结构改变。对野生型和突变型支链淀粉的β-极限糊精进行比较分析表明,SSI在拟南芥叶片中瞬时淀粉合成过程中具有特定且关键的功能。考虑到我们自己对SSI活性的表征以及先前描述的玉米SSI的动力学特性,我们的结果表明,SSI的功能主要参与支链淀粉簇合成过程中小外链的合成。