May Juergen J, Finking Robert, Wiegeshoff Frank, Weber Thomas T, Bandur Nina, Koert Ulrich, Marahiel Mohamed A
Philipps-Universität Marburg, Fachbereich Chemie/Biochemie, Marburg, Germany.
FEBS J. 2005 Jun;272(12):2993-3003. doi: 10.1111/j.1742-4658.2005.04700.x.
The surface charge as well as the electrochemical properties and ligand binding abilities of the Gram-positive cell wall is controlled by the D-alanylation of the lipoteichoic acid. The incorporation of D-Ala into lipoteichoic acid requires the D-alanine:D-alanyl carrier protein ligase (DltA) and the carrier protein (DltC). We have heterologously expressed, purified, and assayed the substrate selectivity of the recombinant proteins DltA with its substrate DltC. We found that apo-DltC is recognized by both endogenous 4'-phosphopantetheinyl transferases AcpS and Sfp. After the biochemical characterization of DltA and DltC, we designed an inhibitor (D-alanylacyl-sulfamoyl-adenosine), which is able to block the D-Ala adenylation by DltA at a K(i) value of 232 nM vitro. We also performed in vivo studies and determined a significant inhibition of growth for different Bacillus subtilis strains when the inhibitor is used in combination with vancomycin.
革兰氏阳性菌细胞壁的表面电荷、电化学性质及配体结合能力均受脂磷壁酸的D-丙氨酰化作用控制。将D-丙氨酸掺入脂磷壁酸需要D-丙氨酸:D-丙氨酰载体蛋白连接酶(DltA)和载体蛋白(DltC)。我们已对重组蛋白DltA及其底物DltC进行了异源表达、纯化及底物选择性分析。我们发现,脱辅基DltC可被内源性4'-磷酸泛酰巯基乙胺基转移酶AcpS和Sfp识别。在对DltA和DltC进行生化特性分析后,我们设计了一种抑制剂(D-丙氨酰基-磺酰氨腺苷),它能够在体外以232 nM的抑制常数(Ki)阻断DltA对D-丙氨酸的腺苷化作用。我们还进行了体内研究,结果表明,当该抑制剂与万古霉素联合使用时,不同枯草芽孢杆菌菌株的生长均受到显著抑制。