Department of Biochemistry and Molecular Biology, Universidade Federal do Paraná, CP19046, Curitiba, PR 81531-980, Brazil.
Arch Microbiol. 2012 Aug;194(8):643-52. doi: 10.1007/s00203-012-0799-9. Epub 2012 Mar 1.
PII are signal-transducing proteins that integrate metabolic signals and transmit this information to a large number of proteins. In proteobacteria, PII are modified by GlnD (uridylyltransferase/uridylyl-removing enzyme) in response to the nitrogen status. The uridylylation/deuridylylation cycle of PII is also regulated by carbon and energy signals such as ATP, ADP and 2-oxoglutarate (2-OG). These molecules bind to PII proteins and alter their tridimensional structure/conformation and activity. In this work, we determined the effects of ATP, ADP and 2-OG levels on the in vitro uridylylation of Herbaspirillum seropedicae PII proteins, GlnB and GlnK. Both proteins were uridylylated by GlnD in the presence of ATP or ADP, although the uridylylation levels were higher in the presence of ATP and under high 2-OG levels. Under excess of 2-OG, the GlnB uridylylation level was higher in the presence of ATP than with ADP, while GlnK uridylylation was similar with ATP or ADP. Moreover, in the presence of ADP/ATP molar ratios varying from 10/1 to 1/10, GlnB uridylylation level decreased as ADP concentration increased, whereas GlnK uridylylation remained constant. The results suggest that uridylylation of both GlnB and GlnK responds to 2-OG levels, but only GlnB responds effectively to variation on ADP/ATP ratio.
PII 是信号转导蛋白,可整合代谢信号,并将此信息传递给大量蛋白质。在变形菌中,PII 会被 GlnD(尿苷酰转移酶/尿苷酸酶)修饰,以响应氮状态。PII 的尿苷酰化/去尿苷酰化循环也受到碳和能量信号的调节,如 ATP、ADP 和 2-氧戊二酸(2-OG)。这些分子结合到 PII 蛋白上并改变它们的三维结构/构象和活性。在这项工作中,我们确定了 ATP、ADP 和 2-OG 水平对 Herbaspirillum seropedicae PII 蛋白、GlnB 和 GlnK 的体外尿苷酰化的影响。在存在 ATP 或 ADP 的情况下,GlnD 均可使这两种蛋白质发生尿苷酰化,尽管在存在 ATP 时尿苷酰化水平更高,并且在 2-OG 水平较高时也更高。在 2-OG 过量的情况下,在存在 ATP 时 GlnB 的尿苷酰化水平高于 ADP,而 GlnK 的尿苷酰化水平与 ATP 或 ADP 相似。此外,在存在 ADP/ATP 摩尔比从 10/1 到 1/10 的情况下,随着 ADP 浓度的增加,GlnB 的尿苷酰化水平降低,而 GlnK 的尿苷酰化水平保持不变。结果表明,GlnB 和 GlnK 的尿苷酰化均对 2-OG 水平有反应,但只有 GlnB 对 ADP/ATP 比值的变化有有效反应。