Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, UK.
Department of Biomedicine, University of Bergen, 5020 Bergen, Norway.
Sci Adv. 2023 Sep 15;9(37):eadi2687. doi: 10.1126/sciadv.adi2687. Epub 2023 Sep 13.
PARP14 is a mono-ADP-ribosyl transferase involved in the control of immunity, transcription, and DNA replication stress management. However, little is known about the ADP-ribosylation activity of PARP14, including its substrate specificity or how PARP14-dependent ADP-ribosylation is reversed. We show that PARP14 is a dual-function enzyme with both ADP-ribosyl transferase and hydrolase activity acting on both protein and nucleic acid substrates. In particular, we show that the PARP14 macrodomain 1 is an active ADP-ribosyl hydrolase. We also demonstrate hydrolytic activity for the first macrodomain of PARP9. We reveal that expression of a PARP14 mutant with the inactivated macrodomain 1 results in a marked increase in mono(ADP-ribosyl)ation of proteins in human cells, including PARP14 itself and antiviral PARP13, and displays specific cellular phenotypes. Moreover, we demonstrate that the closely related hydrolytically active macrodomain of SARS2 Nsp3, Mac1, efficiently reverses PARP14 ADP-ribosylation in vitro and in cells, supporting the evolution of viral macrodomains to counteract PARP14-mediated antiviral response.
PARP14 是一种单 ADP-核糖基转移酶,参与免疫、转录和 DNA 复制应激管理的调控。然而,人们对 PARP14 的 ADP-核糖基化活性知之甚少,包括其底物特异性或 PARP14 依赖性 ADP-核糖基化如何逆转。我们表明,PARP14 是一种具有双重功能的酶,既具有 ADP-核糖基转移酶活性,又具有针对蛋白质和核酸底物的水解酶活性。特别是,我们表明 PARP14 的宏结构域 1 是一种具有活性的 ADP-核糖基水解酶。我们还证明了 PARP9 的第一个宏结构域具有水解活性。我们揭示了表达具有失活宏结构域 1 的 PARP14 突变体导致人细胞中蛋白质的单(ADP-核糖基)化显著增加,包括 PARP14 本身和抗病毒 PARP13,并表现出特定的细胞表型。此外,我们证明了 SARS2 Nsp3 的密切相关的水解活性宏结构域 Mac1 能够有效地在体外和细胞内逆转 PARP14 的 ADP-核糖基化,支持病毒宏结构域的进化以对抗 PARP14 介导的抗病毒反应。