Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing Airport Industrial Zone B-6, Shunyi, Beijing, China.
J Bacteriol. 2010 Sep;192(17):4311-6. doi: 10.1128/JB.00402-10. Epub 2010 Jun 25.
Thermoanaerobacter tengcongensis could utilize galactose as a carbon source via the enzymes encoded by a novel gal operon, whose regulation mechanism has yet to be elucidated. We propose here that the gal operon in T. tengcongensis is regulated through a HisK:GalR two-component system. By using radioactive isotope assay and genetic analysis, we found that the kinase of this system, HisK, is phosphorylated by ATP, and the regulator, GalR, accepts a phosphoryl group during phosphorelay, in which the phosphoryl group at HisK-His-259 is transferred to GalR-Asp-56. Two-dimensional electrophoresis, followed by Western blotting, revealed that phosphorylation status of GalR is uniquely dependent on the galactose stimulus in vivo. Furthermore, DNA pulldown assays demonstrated that the phosphorylated GalR prefers binding to the operator DNA O(2), whereas the unphosphorylated GalR to O(1). A model of HisK:GalR is proposed to explain how galactose mediates the expression of the gal operon in T. tengcongensis.
耐热栖热菌可以利用半乳糖作为碳源,这是通过一个新型半乳糖操纵子所编码的酶来实现的,但其调控机制尚不清楚。我们提出,耐热栖热菌中的半乳糖操纵子是通过 HisK:GalR 双组分系统进行调控的。通过放射性同位素测定和遗传分析,我们发现该系统的激酶 HisK 可被 ATP 磷酸化,而调控蛋白 GalR 在磷酸传递过程中接受一个磷酸基团,其中 HisK-His-259 上的磷酸基团被传递到 GalR-Asp-56。二维电泳和 Western blot 分析表明,GalR 的磷酸化状态在体内完全依赖于半乳糖的刺激。此外,DNA Pull-down 实验表明,磷酸化的 GalR 优先与操纵子 DNA O(2)结合,而非磷酸化的 GalR 则与 O(1)结合。提出了 HisK:GalR 的模型来解释半乳糖如何在耐热栖热菌中调节半乳糖操纵子的表达。