Curatti Leonardo, Giarrocco Laura E, Cumino Andrea C, Salerno Graciela L
Centro de Investigaciones Biológicas, Fundación para Investigaciones Biológicas, Aplicadas (FIBA), C.C. 1348, 7600, Mar del Plata, Argentina.
Planta. 2008 Sep;228(4):617-25. doi: 10.1007/s00425-008-0764-7. Epub 2008 Jun 17.
Higher plants and cyanobacteria metabolize sucrose (Suc) by a similar set of enzymes. Suc synthase (SuS, UDP-glucose: D: -fructose 2-alpha-D: -glucosyl transferase, EC 2.4.1.13) catalyses the synthesis and cleavage of Suc, and in higher plants, it plays an important role in polysaccharides biosynthesis and carbon allocation. In this work, we have studied the functional relationship between SuS and the metabolism of polysaccharides in filamentous nitrogen-fixing cyanobacteria. We show that the nitrogen and carbon sources and light regulate the expression of the SuS encoding gene (susA), in a similar way that they regulate the accumulation of polysaccharides. Furthermore, glycogen content in an Anabaena sp. mutant strain with an insertion inactivation of susA was lower than in the wild type strain under diazotrophic conditions, while both glycogen and polysaccharides levels were higher in a mutant strain constitutively overexpressing susA. We also show that there are soluble and membrane-bound forms of SuS in Anabaena. Taken together, these results strongly suggest that SuS is involved in the Suc to polysaccharides conversion according to nutritional and environmental signals in filamentous nitrogen-fixing cyanobacteria.
高等植物和蓝细菌通过一组相似的酶来代谢蔗糖(Suc)。蔗糖合酶(SuS,UDP-葡萄糖:D-果糖2-α-D-葡萄糖基转移酶,EC 2.4.1.13)催化蔗糖的合成与分解,在高等植物中,它在多糖生物合成和碳分配中发挥重要作用。在本研究中,我们探究了丝状固氮蓝细菌中蔗糖合酶与多糖代谢之间的功能关系。我们发现,氮源、碳源和光照以与调节多糖积累相似的方式调控蔗糖合酶编码基因(susA)的表达。此外,在固氮条件下,susA插入失活的鱼腥藻突变株中的糖原含量低于野生型菌株,而组成型过表达susA的突变株中糖原和多糖水平均较高。我们还发现鱼腥藻中存在可溶性和膜结合形式的蔗糖合酶。综上所述,这些结果有力地表明,在丝状固氮蓝细菌中,蔗糖合酶根据营养和环境信号参与了蔗糖到多糖的转化过程。