Huang Yong, Wendt-Pienkowski Evelyn, Shen Ben
Division of Pharmaceutical Sciences, University of Wisconsin, Madison, Wisconsin 53705, USA.
J Biol Chem. 2006 Oct 6;281(40):29660-8. doi: 10.1074/jbc.M604895200. Epub 2006 Aug 8.
Polyketide synthases cannot be functional unless their apo-acyl carrier proteins (apo-ACPs) are post-translationally modified by covalent attachment of the 4'-phosphopantetheine group to the highly conserved serine residue, and this reaction is catalyzed by phosphopantetheinyl transferases (PPTases). Cloning and sequence analysis of the 33-kb fredericamycin (FDM) biosynthetic gene cluster from Streptomyces griseus revealed fdmW, whose deduced gene product showed significant sequence homology to known PPTases. Biochemical characterization of FdmW in vitro confirmed that it is a PPTase. Inactivation of fdmW resulted in approximately 93% reduction of FDM production, and complementation of the fdmW::aac (3)IV mutant by expressing fdmW in trans restored FDM production to a level comparable with that of the wild-type strain. Although FdmW can phosphopantetheinylate various ACPs, it prefers its cognate substrate, the FdmH ACP, with a K(m) of 5.8 microM and a k(cat)/K(m) of 8.1 microM(-1) x min(-1), to heterologous ACPs, such as the TcmM ACP with a K(m) of 1.0 x 10(2) microM and a k(cat) /K(m) of 0.6 microM(-1) x min(-1). These findings suggest that FdmW is specific for FDM biosynthesis. FdmW therefore represents the first holo-ACP synthase-type PPTase identified from an aromatic polyketide biosynthetic gene cluster.
聚酮合酶只有在其脱辅基酰基载体蛋白(脱辅基 ACPs)通过 4'-磷酸泛酰巯基乙胺基团共价连接到高度保守的丝氨酸残基上进行翻译后修饰后才具有功能,而该反应由磷酸泛酰巯基乙胺基转移酶(PPTases)催化。对灰色链霉菌 33 kb 的弗雷德里卡霉素(FDM)生物合成基因簇进行克隆和序列分析,发现了 fdmW,其推导的基因产物与已知的 PPTases 具有显著的序列同源性。FdmW 的体外生化特性证实它是一种 PPTase。fdmW 的失活导致 FDM 产量降低约 93%,通过反式表达 fdmW 对 fdmW::aac(3)IV 突变体进行互补,可将 FDM 产量恢复到与野生型菌株相当的水平。尽管 FdmW 可以对多种 ACPs 进行磷酸泛酰巯基乙胺化修饰,但它更倾向于其同源底物 FdmH ACP,其 K(m)为 5.8 μM,k(cat)/K(m)为 8.1 μM-1 x min-1,而不是异源 ACPs,如 K(m)为 1.0 x 102 μM 且 k(cat)/K(m)为 0.6 μM-1 x min-1 的 TcmM ACP。这些发现表明 FdmW 对 FDM 生物合成具有特异性。因此,FdmW 是从芳香族聚酮生物合成基因簇中鉴定出的首个全 ACP 合酶型 PPTase。