Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP), Robert-Rössle-Straße 10, 13125 Berlin, Germany.
Institut für Chemie, Humboldt-Universität zu Berlin, Brook-Taylor-Str. 2, 12489 Berlin, Germany.
J Am Chem Soc. 2024 May 29;146(21):14807-14815. doi: 10.1021/jacs.4c03069. Epub 2024 May 11.
While the function of protein phosphorylation in eukaryotic cell signaling is well established, the role of a closely related modification, protein pyrophosphorylation, is just starting to surface. A recent study has identified several targets of endogenous protein pyrophosphorylation in mammalian cell lines, including -acetylglucosamine kinase (NAGK). Here, a detailed functional analysis of NAGK phosphorylation and pyrophosphorylation on serine 76 (S76) has been conducted. This analysis was enabled by using amber codon suppression to obtain phosphorylated pS76-NAGK, which was subsequently converted to site-specifically pyrophosphorylated NAGK (ppS76-NAGK) with a phosphorimidazolide reagent. A significant reduction in GlcNAc kinase activity was observed upon phosphorylation and near-complete inactivation upon pyrophosphorylation. The formation of ppS76-NAGK proceeded via an ATP-dependent autocatalytic process, and once formed, ppS76-NAGK displayed notable stability toward dephosphorylation in mammalian cell lysates. Proteomic examination unveiled a distinct set of protein-protein interactions for ppS76-NAGK, suggesting an alternative function, independent of its kinase activity. Overall, a significant regulatory role of pyrophosphorylation on NAGK activity was uncovered, providing a strong incentive to investigate the influence of this unusual phosphorylation mode on other kinases.
虽然蛋白质磷酸化在真核细胞信号转导中的作用已得到充分证实,但与之密切相关的修饰——蛋白质焦磷酸化的作用才刚刚开始显现。最近的一项研究在哺乳动物细胞系中鉴定出了几种内源性蛋白质焦磷酸化的靶标,包括 N-乙酰葡萄糖胺激酶(NAGK)。在此,对 NAGK 丝氨酸 76 位(S76)的磷酸化和焦磷酸化进行了详细的功能分析。该分析通过使用琥珀终止密码子抑制获得磷酸化的 pS76-NAGK,随后使用磷酰亚咪唑酯试剂将其转化为特异性的焦磷酸化 NAGK(ppS76-NAGK)。磷酸化后观察到 GlcNAc 激酶活性显著降低,焦磷酸化后几乎完全失活。ppS76-NAGK 的形成是通过 ATP 依赖性自催化过程进行的,一旦形成,ppS76-NAGK 在哺乳动物细胞裂解物中对去磷酸化表现出显著的稳定性。蛋白质组学研究揭示了 ppS76-NAGK 独特的蛋白质-蛋白质相互作用,表明其具有独立于激酶活性的替代功能。总的来说,发现了焦磷酸化对 NAGK 活性的显著调节作用,这强烈促使我们研究这种不寻常的磷酸化模式对其他激酶的影响。