Morán-Zorzano María T, Alonso-Casajús Nora, Muñoz Francisco J, Viale Alejandro M, Baroja-Fernández Edurne, Eydallin Gustavo, Pozueta-Romero Javier
Instituto de Agrobiotecnología, (CSIC, UPNA, Gobierno de Navarra), Mutiloako etorbidea zenbaki gabe, 31192 Mutiloabeti, Nafarroa, Spain.
FEBS Lett. 2007 Sep 18;581(23):4423-9. doi: 10.1016/j.febslet.2007.08.017. Epub 2007 Aug 15.
To explore the possible occurrence of sources, other than GlgC, of ADPglucose linked to bacterial glycogen biosynthesis we characterized Escherichia coli and Salmonella DeltaglgCAP deletion mutants lacking the whole glycogen biosynthetic machinery. These mutants displayed the expected glycogen-less phenotype but accumulated ADPglucose. Importantly, DeltaglgCAP cells expressing the glycogen synthase encoding glgA gene accumulated glycogen. Protein chromatographic separation of crude extracts of DeltaglgCAP mutants and subsequent activity measurement analyses revealed that these cells possess various proteins catalyzing the conversion of glucose-1-phosphate into ADPglucose. Collectively these findings show that enterobacteria possess more than one important source of ADPglucose linked to glycogen biosynthesis.
为了探索除GlgC之外,与细菌糖原生物合成相关的ADP葡萄糖的可能来源,我们对缺乏整个糖原生物合成机制的大肠杆菌和沙门氏菌DeltaglgCAP缺失突变体进行了表征。这些突变体表现出预期的无糖原表型,但积累了ADP葡萄糖。重要的是,表达编码糖原合酶的glgA基因的DeltaglgCAP细胞积累了糖原。对DeltaglgCAP突变体粗提物进行蛋白质色谱分离并随后进行活性测量分析,结果表明这些细胞拥有多种催化1-磷酸葡萄糖转化为ADP葡萄糖的蛋白质。这些发现共同表明,肠道细菌拥有不止一种与糖原生物合成相关的重要ADP葡萄糖来源。