Dauvillée David, Kinderf Isabelle S, Li Zhongyi, Kosar-Hashemi Behjat, Samuel Michael S, Rampling Lynette, Ball Steven, Morell Matthew K
CSIRO UMR8576, Cité Scientifique, Villeneuve d'Ascq, France.
J Bacteriol. 2005 Feb;187(4):1465-73. doi: 10.1128/JB.187.4.1465-1473.2005.
A role for the Escherichia coli glgX gene in bacterial glycogen synthesis and/or degradation has been inferred from the sequence homology between the glgX gene and the genes encoding isoamylase-type debranching enzymes; however, experimental evidence or definition of the role of the gene has been lacking. Construction of E. coli strains with defined deletions in the glgX gene is reported here. The results show that the GlgX gene encodes an isoamylase-type debranching enzyme with high specificity for hydrolysis of chains consisting of three or four glucose residues. This specificity ensures that GlgX does not generate an extensive futile cycle during glycogen synthesis in which chains with more than four glucose residues are transferred by the branching enzyme. Disruption of glgX leads to overproduction of glycogen containing short external chains. These results suggest that the GlgX protein is predominantly involved in glycogen catabolism by selectively debranching the polysaccharide outer chains that were previously recessed by glycogen phosphorylase.
通过大肠杆菌glgX基因与编码异淀粉酶型脱支酶的基因之间的序列同源性,推断出该基因在细菌糖原合成和/或降解中发挥作用;然而,一直缺乏该基因作用的实验证据或明确界定。本文报道了构建glgX基因有特定缺失的大肠杆菌菌株。结果表明,GlgX基因编码一种异淀粉酶型脱支酶,对水解由三个或四个葡萄糖残基组成的链具有高度特异性。这种特异性确保了GlgX在糖原合成过程中不会产生广泛的无效循环,在糖原合成过程中,分支酶会转移含有四个以上葡萄糖残基的链。glgX基因的破坏会导致含有短外链的糖原过量产生。这些结果表明,GlgX蛋白主要通过选择性地去除先前被糖原磷酸化酶凹陷的多糖外链,参与糖原分解代谢。