Institute of Biochemistry and Biotechnology, Martin Luther University Halle-Wittenberg, 06099 Halle, Germany.
J Biol Chem. 2013 Jan 25;288(4):2441-51. doi: 10.1074/jbc.M112.426700. Epub 2012 Dec 5.
Turnover of mRNA releases, in addition to the four regular nucleoside monophosphates, the methylated cap nucleotide in the form of 7-methylguanosine monophosphate (m(7)GMP) or diphosphate (m(7)GDP). The existence of pathways to eliminate the modified nucleotide seems likely, as its incorporation into nucleic acids is undesirable. Here we describe a novel 5' nucleotidase from Drosophila that cleaves m(7)GMP to 7-methylguanosine and inorganic phosphate. The enzyme, encoded by the predicted gene CG3362, also efficiently dephosphorylates CMP, although with lower apparent affinity; UMP and the purine nucleotides are poor substrates. The enzyme is inhibited by elevated concentrations of AMP and also cleaves m(7)GDP to the nucleoside and two inorganic phosphates, albeit less efficiently. CG3362 has equivalent sequence similarity to two human enzymes, cytosolic nucleotidase III (cNIII) and the previously uncharacterized cytosolic nucleotidase III-like (cNIII-like). We show that cNIII-like also displays 5' nucleotidase activity with a high affinity for m(7)GMP. CMP is a slightly better substrate but again with a higher K(m). The activity of cNIII-like is stimulated by phosphate. In contrast to cNIII-like, cNIII and human cytosolic nucleotidase II do not accept m(7)GMP as a substrate. We suggest that the m(7)G-specific nucleotidases protect cells against undesired salvage of m(7)GMP and its incorporation into nucleic acids.
mRNA 释放物除了四种常规核苷单磷酸外,还以 7-甲基鸟苷一磷酸(m(7)GMP)或二磷酸(m(7)GDP)的形式释放出甲基化帽核苷酸。似乎存在消除修饰核苷酸的途径,因为将其掺入核酸中是不可取的。在这里,我们描述了一种来自果蝇的新型 5'核苷酸酶,它能将 m(7)GMP 切割成 7-甲基鸟苷和无机磷酸。该酶由预测基因 CG3362 编码,尽管对其亲和力较低,但也能有效地去磷酸化 CMP;UMP 和嘌呤核苷酸是较差的底物。该酶被 AMP 的高浓度抑制,也能将 m(7)GDP 切割成核苷和两个无机磷酸,但效率较低。CG3362 与两种人类酶——胞质核苷酸酶 III(cNIII)和以前未被表征的胞质核苷酸酶 III 样(cNIII-like)具有同等的序列相似性。我们表明,cNIII-like 也具有 5'核苷酸酶活性,对 m(7)GMP 的亲和力很高。CMP 是一个稍好的底物,但 K(m) 更高。cNIII-like 的活性受磷酸盐刺激。与 cNIII-like 不同,cNIII 和人胞质核苷酸酶 II 不能接受 m(7)GMP 作为底物。我们认为,m(7)G 特异性核苷酸酶可防止细胞对 m(7)GMP 的不适当回收及其掺入核酸。