García Noel A Tejera, Iribarne Carmen, López Miguel, Herrera-Cervera José A, Lluch Carmen
Departamento de Fisiología Vegetal, Facultad de Ciencias, Universidad de Granada, Campus de Fuentenueva s/n, 18071 Granada, Spain.
Plant Physiol Biochem. 2005 Apr;43(4):355-61. doi: 10.1016/j.plaphy.2005.02.013. Epub 2005 Mar 18.
The purification and characterization of trehalase from common bean nodules as well as the role of this enzyme on growth, nodulation nitrogen fixation by examining the effects of the trehalase inhibitor validamycin A, was studied. Validamycin A did not affect plant and nodule mass, neither root trehalase and nitrogenase activity; however this treatment applied at the time of sowing increased nodule number about 16% and decreased nodule trehalase activity (16-fold) and the size of nodules. These results suggest that nodule trehalase activity of Phaseolus vulgaris could be involved in nodule formation and development. In addition, acid trehalase (EC 3.2.1.28) was purified from root nodules by fractionating ammonium sulfate, column chromatography on DEAE-sepharose and sephacryl S-300, and finally on native polyacrylamide gel electrophoresis. The purified homogeneous preparation of native acid trehalase exhibited a molecular mass of 42 and 45 kDa on SDS-PAGE. The enzyme has the optimum pH 3.9, Km of 0.109 mM, Vmax of 3630 nkat mg-1 protein and is relatively heat stable. Besides trehalose, it shows maximal activity with sucrose and maltose and, to a lesser degree melibiose, cellobiose and raffinose, and it does not hydrolyze on lactose and turanose. Acid trehalase was activated by Na+, Mn2+, Mg2+, Li+, Co2+, K+ and inhibited by Fe3+, Hg+ and EDTA.
对菜豆根瘤中海藻糖酶进行了纯化和特性分析,并通过研究海藻糖酶抑制剂井冈霉素A的作用,探讨了该酶在生长、结瘤和固氮中的作用。井冈霉素A不影响植株和根瘤质量,也不影响根中海藻糖酶和固氮酶活性;然而,在播种时施用该处理可使根瘤数量增加约16%,并降低根瘤海藻糖酶活性(16倍)和根瘤大小。这些结果表明,菜豆根瘤海藻糖酶活性可能参与根瘤的形成和发育。此外,通过硫酸铵分级分离、DEAE-琼脂糖柱层析和Sephacryl S-300柱层析,最后通过天然聚丙烯酰胺凝胶电泳,从根瘤中纯化了酸性海藻糖酶(EC 3.2.1.28)。纯化后的天然酸性海藻糖酶在SDS-PAGE上显示分子量为42 kDa和45 kDa。该酶的最适pH为3.9,Km为0.109 mM,Vmax为3630 nkat mg-1蛋白,且相对耐热。除海藻糖外,它对蔗糖和麦芽糖活性最高,对蜜二糖、纤维二糖和棉子糖活性较低,对乳糖和松二糖不水解。酸性海藻糖酶被Na+、Mn2+、Mg2+、Li+、Co2+、K+激活,被Fe3+、Hg+和EDTA抑制。