Salerno G L, Pagnussat G C, Pontis H G
Centro de Investigaciones Biológicas, Fundación para Investigaciones Biológicas Aplicadas and PROBIOP-CONICET, Mar del Plata, Argentina.
Cell Mol Biol (Noisy-le-grand). 1998 May;44(3):407-16.
Sucrose-phosphate synthase (SPS, EC 2.4.1.14) biochemical properties and peptide composition have been analyzed in rice leaf seedlings. SPS was purified using DEAE-Sephacel chromatography, gel filtration on Sepharose 6B and anion exchange chromatography on Mono Q. At this stage two enzyme forms (SPS-I and -II) were separated. SPS-II was purified 90-fold; however, SPS-I presented a lower specific activity regarding the previous purification step and an unstable activity. Both enzyme forms had similar apparent Km values for Fru-6P but the SPS-I Km for UDP-Glc was ca. 10-fold higher than the SPS-II one. In addition, they differentiate in the capacity of being modulated by Glc-6-P and Pi: while SPS-II activity was inhibited by Pi and activated by Glc-6-P, SPS-I was not affected by either effectors. A native molecular mass of ca. 420 kDa was found by gel filtration. In SPS expression analysis using leaf rice and wheat germ SPS antibodies, a 116 kDa polypeptide was revealed in rice leaf extracts and no polypeptide was immunoactive in rice roots.
已对水稻叶片幼苗中的蔗糖磷酸合酶(SPS,EC 2.4.1.14)的生化特性和肽组成进行了分析。使用DEAE - 葡聚糖凝胶纤维素色谱法、Sepharose 6B凝胶过滤法和Mono Q阴离子交换色谱法对SPS进行了纯化。在此阶段分离出了两种酶形式(SPS - I和 - II)。SPS - II被纯化了90倍;然而,与之前的纯化步骤相比,SPS - I的比活性较低且活性不稳定。两种酶形式对Fru - 6P的表观Km值相似,但SPS - I对UDP - Glc的Km约比SPS - II高10倍。此外,它们在受Glc - 6 - P和Pi调节的能力上有所不同:SPS - II的活性受Pi抑制并被Glc - 6 - P激活,而SPS - I不受任何一种效应物的影响。通过凝胶过滤发现天然分子量约为420 kDa。在使用水稻叶片和小麦胚SPS抗体进行的SPS表达分析中,在水稻叶片提取物中发现了一条116 kDa的多肽,而在水稻根中没有多肽具有免疫活性。