Kostrewa D, D'Arcy A, Takacs B, Kamber M
Pharmaceutical Research Chemical Technologies, F. Hoffmann-La Roche Ltd., Basle, 4070, Switzerland.
J Mol Biol. 2001 Jan 12;305(2):279-89. doi: 10.1006/jmbi.2000.4296.
N-Acetylglucosamine-1-phosphate uridyltransferase (GlmU) is an essential bacterial enzyme with both an acetyltransferase and a uridyltransferase activity which have been mapped to the C-terminal and N-terminal domains, respectively. GlmU performs the last two steps in the synthesis of UDP-N-acetylglucosamine (UDP-GlcNAc), which is an essential precursor in both the peptidoglycan and the lipopolysaccharide metabolic pathways. GlmU is therefore an attractive target for potential antibiotics. Knowledge of its three-dimensional structure would provide a basis for rational drug design. We have determined the crystal structures of Streptococcus pneumoniae GlmU (SpGlmU) in apo form at 2.33 A resolution, and in complex with UDP-N-acetyl glucosamine and the essential co-factor Mg(2+) at 1.96 A resolution. The protein structure consists of an N-terminal domain with an alpha/beta-fold, containing the uridyltransferase active site, and a C-terminal domain with a long left-handed beta-sheet helix (LbetaH) domain. An insertion loop containing the highly conserved sequence motif Asn-Tyr-Asp-Gly protrudes from the left-handed beta-sheet helix domain. In the crystal, S. pneumoniae GlmU forms exact trimers, mainly through contacts between left-handed beta-sheet helix domains. UDP-N-acetylglucosamine and Mg(2+) are bound at the uridyltransferase active site, which is in a closed form. We propose a uridyltransferase mechanism in which the activation energy of the double negatively charged phosphorane transition state is lowered by charge compensation of Mg(2+) and the side-chain of Lys22.
N-乙酰葡糖胺-1-磷酸尿苷转移酶(GlmU)是一种必需的细菌酶,具有乙酰转移酶和尿苷转移酶活性,分别定位于C末端和N末端结构域。GlmU催化尿苷二磷酸-N-乙酰葡糖胺(UDP-GlcNAc)合成的最后两步,UDP-GlcNAc是肽聚糖和脂多糖代谢途径中的必需前体。因此,GlmU是潜在抗生素的一个有吸引力的靶点。了解其三维结构将为合理的药物设计提供基础。我们已经确定了肺炎链球菌GlmU(SpGlmU)的晶体结构,无配体形式的分辨率为2.33 Å,与UDP-N-乙酰葡糖胺和必需辅因子Mg(2+)复合物的分辨率为1.96 Å。蛋白质结构由一个具有α/β折叠的N末端结构域和一个具有长左手β-折叠螺旋(LβH)结构域的C末端结构域组成。一个包含高度保守序列基序Asn-Tyr-Asp-Gly的插入环从左手β-折叠螺旋结构域突出。在晶体中,肺炎链球菌GlmU形成精确的三聚体,主要通过左手β-折叠螺旋结构域之间的接触。UDP-N-乙酰葡糖胺和Mg(2+)结合在处于封闭形式的尿苷转移酶活性位点。我们提出了一种尿苷转移酶机制,其中Mg(2+)和Lys22侧链的电荷补偿降低了双负电荷磷烷过渡态的活化能。