1Centro Ricerche Novartis Vaccines and Diagnostics, Via Fiorentina 1, 53100 Siena, Italy.
FASEB J. 2013 Dec;27(12):4723-30. doi: 10.1096/fj.13-229955. Epub 2013 Aug 20.
NarE is an arginine-specific mono-ADP-ribosyltransferase identified in Neisseria meningitidis that requires the presence of iron in a structured cluster for its enzymatic activities. In this study, we show that NarE can perform auto-ADP-ribosylation. This automodification occurred in a time- and NAD-concentration-dependent manner; was inhibited by novobiocin, an ADP-ribosyltransferase inhibitor; and did not occur when NarE was heat inactivated. No reduction in incorporation was evidenced in the presence of high concentrations of ATP, GTP, ADP-ribose, or nicotinamide, which inhibits NAD-glycohydrolase, impeding the formation of free ADP-ribose. Based on the electrophoretic profile of NarE on auto-ADP-ribosylation and on the results of mutagenesis and mass spectrometry analysis, the auto-ADP-ribosylation appeared to be restricted to the addition of a single ADP-ribose. Chemical stability experiments showed that the ADP-ribosyl linkage was sensitive to hydroxylamine, which breaks ADP-ribose-arginine bonds. Site-directed mutagenesis suggested that the auto-ADP-ribosylation site occurred preferentially on the R(7) residue, which is located in the region I of the ADP-ribosyltransferase family. After auto-ADP-ribosylation, NarE showed a reduction in ADP-ribosyltransferase activity, while NAD-glycohydrolase activity was increased. Overall, our findings provide evidence for a novel intramolecular mechanism used by NarE to regulate its enzymatic activities.
NarE 是脑膜炎奈瑟氏球菌中鉴定出的一种精氨酸特异性单 ADP-核糖基转移酶,其酶活性需要铁在结构化簇中的存在。在这项研究中,我们表明 NarE 可以进行自身 ADP-核糖基化。这种自动修饰以时间和 NAD 浓度依赖的方式发生;被 ADP-核糖基转移酶抑制剂新生霉素抑制;并且当 NarE 热失活时不会发生。在存在高浓度 ATP、GTP、ADP-核糖或烟酰胺的情况下,没有证据表明掺入减少,这些物质抑制 NAD-糖苷水解酶,阻碍游离 ADP-核糖的形成。基于 NarE 在自身 ADP-核糖基化中的电泳图谱以及突变和质谱分析的结果,自身 ADP-核糖基化似乎仅限于添加单个 ADP-核糖。化学稳定性实验表明,ADP-核糖基键对羟胺敏感,羟胺会破坏 ADP-核糖-精氨酸键。定点突变表明,自身 ADP-核糖基化位点优先发生在 R(7)残基上,该残基位于 ADP-核糖基转移酶家族的 I 区。自身 ADP-核糖基化后,NarE 的 ADP-核糖基转移酶活性降低,而 NAD-糖苷水解酶活性增加。总体而言,我们的发现为 NarE 用于调节其酶活性的新的分子内机制提供了证据。