Liu Cong, Li Dan, Liang Yu-He, Li Lan-Fen, Su Xiao-Dong
National Laboratory of Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, Beijing 100871, China.
J Mol Biol. 2008 May 23;379(1):73-81. doi: 10.1016/j.jmb.2008.03.031. Epub 2008 Mar 26.
Glucosamine 6-phosphate deaminase (NagB) catalyzes the conversion of d-glucosamine 6-phosphate (GlcN6P) to d-fructose 6-phosphate and ammonia. This reaction is the final step of N-acetylglucosamine utilization and decides its metabolic fate. The enzyme from Streptococcus mutans belongs to the monomeric subfamily of NagB. The crystal structure of the native SmuNagB (NagB from S. mutans) presented here, compared with the structures of its homologs BsuNagB (NagB from Bacillus subtilis) and EcoNagB (NagB from E. coli), implies a conformational change of the 'lid' motif in the activation of the monomeric NagB enzyme. We have also captured the enzyme-substrate intermediate complex of the NagB family at low pH, where a remarkable loss of the catalytic activity of SmuNagB was detected. The enzyme-substrate intermediate presents the initial step of the GlcN6P deaminase reaction. The structural evidence (1) supports the alpha-anomer of GlcN6P as the specific natural substrate of NagB; (2) displays the substrate-binding pocket at the active site; and (3) together with the site-directed mutagenesis studies, demonstrates the ring-opening mechanism of an Asn-His-Glu triad that performs the proton transfer from O1 to O5 to open the sugar ring.
6-磷酸葡萄糖胺脱氨酶(NagB)催化6-磷酸-D-葡萄糖胺(GlcN6P)转化为6-磷酸-D-果糖和氨。该反应是N-乙酰葡糖胺利用的最后一步,并决定其代谢命运。变形链球菌的这种酶属于NagB的单体亚家族。本文展示的天然变形链球菌NagB(SmuNagB)的晶体结构,与其同源物枯草芽孢杆菌NagB(BsuNagB)和大肠杆菌NagB(EcoNagB)的结构相比,意味着单体NagB酶激活过程中“盖子”基序的构象变化。我们还在低pH值下捕获了NagB家族的酶-底物中间体复合物,在该复合物中检测到SmuNagB催化活性显著丧失。酶-底物中间体呈现了GlcN6P脱氨酶反应的起始步骤。结构证据(1)支持GlcN6P的α-异头物作为NagB的特异性天然底物;(2)展示了活性位点处的底物结合口袋;(3)与定点诱变研究一起,证明了Asn-His-Glu三联体的开环机制,该三联体执行从O1到O5的质子转移以打开糖环。