The Interferon-inducible NAMPT acts as a protein phosphoribosylase to restrict viral infection
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T. Chou | Shu Zhang | Ali Can Savas | Chao Qin | Ting-Yu Wang | Yongzhen Liu | Charles Brenner | Pinghui Feng | Na Xie | Shutong Li | Youliang Rao | Alexandra Shambayate | Canhua Huang
[1] W. Kraus,et al. The expanding universe of PARP1-mediated molecular and therapeutic mechanisms. , 2022, Molecular cell.
[2] M. Simon,et al. Moonlighting functions of metabolic enzymes and metabolites in cancer. , 2021, Molecular cell.
[3] Yan Peng,et al. Ribosome ADP-ribosylation inhibits translation and maintains proteostasis in cancers , 2021, Cell.
[4] I. Ahel,et al. ADP-ribosylation of DNA and RNA , 2021, DNA repair.
[5] B. Lüscher,et al. ADP-ribosylation of RNA and DNA: from in vitro characterization to in vivo function , 2021, Nucleic acids research.
[6] T. Jardetzky,et al. The structural basis of herpesvirus entry , 2020, Nature reviews. Microbiology.
[7] Wenjie Zhu,et al. Deamidation Shunts RelA from Mediating Inflammation to Aerobic Glycolysis. , 2020, Cell metabolism.
[8] J. Auwerx,et al. NAD+ homeostasis in health and disease , 2020, Nature Metabolism.
[9] Qinqin Cheng,et al. Reprogramming Exosomes for Immunotherapy. , 2019, Methods in molecular biology.
[10] Jun Zhao,et al. Antiviral activity of a purine synthesis enzyme reveals a key role of deamidation in regulating protein nuclear import , 2019, Science Advances.
[11] M. Mattson,et al. NAD+ in Brain Aging and Neurodegenerative Disorders. , 2019, Cell metabolism.
[12] S. Imai,et al. Extracellular Vesicle-Contained eNAMPT Delays Aging and Extends Lifespan in Mice. , 2019, Cell metabolism.
[13] E. Sergienko,et al. Boosting NAD+ with a small molecule that activates NAMPT , 2019, Nature Communications.
[14] Michael S. Cohen,et al. Reversible ADP-ribosylation of RNA , 2019, Nucleic acids research.
[15] S. Gabelli,et al. Structural analyses of NudT16–ADP-ribose complexes direct rational design of mutants with improved processing of poly(ADP-ribosyl)ated proteins , 2019, Scientific Reports.
[16] J. Masson,et al. Emerging roles of eraser enzymes in the dynamic control of protein ADP-ribosylation , 2019, Nature Communications.
[17] J. Arnold,et al. A naturally occurring antiviral ribonucleotide encoded by the human genome , 2018, Nature.
[18] K. Rajapakshe,et al. Metabolic enzyme PFKFB4 activates transcriptional coactivator SRC-3 to drive breast cancer , 2018, Nature.
[19] J. Baur,et al. NAD+ Intermediates: The Biology and Therapeutic Potential of NMN and NR. , 2017, Cell metabolism.
[20] Xianlin Han,et al. Deletion of Nampt in Projection Neurons of Adult Mice Leads to Motor Dysfunction, Neurodegeneration, and Death , 2017, Cell reports.
[21] Gerald J. Wyckoff,et al. Metabolic and molecular insights into an essential role of nicotinamide phosphoribosyltransferase , 2017, Cell Death & Disease.
[22] I. Matic,et al. Phosphoribosylation of Ubiquitin Promotes Serine Ubiquitination and Impairs Conventional Ubiquitination , 2016, Cell.
[23] Mark S. Schmidt,et al. Nicotinamide riboside is uniquely and orally bioavailable in mice and humans , 2016, Nature Communications.
[24] O. Nureki,et al. ENPP1 processes protein ADP‐ribosylation in vitro , 2016, The FEBS journal.
[25] W. Kiess,et al. Physiological and pathophysiological roles of NAMPT and NAD metabolism , 2015, Nature Reviews Endocrinology.
[26] Charles M. Rice,et al. Corrigendum: A diverse range of gene products are effectors of the type I interferon antiviral response , 2015, Nature.
[27] K. Tobe,et al. SIRT1-Mediated eNAMPT Secretion from Adipose Tissue Regulates Hypothalamic NAD+ and Function in Mice. , 2015, Cell metabolism.
[28] E. Zandi,et al. Viral pseudo-enzymes activate RIG-I via deamidation to evade cytokine production. , 2015, Molecular cell.
[29] Jun S. Song,et al. Genome-wide CRISPR Screen in a Mouse Model of Tumor Growth and Metastasis , 2015, Cell.
[30] Clemens F. Kaminski,et al. Structural analysis of herpes simplex virus by optical super-resolution imaging , 2015, Nature Communications.
[31] Z. Zhou,et al. Purification of Herpesvirus Virions and Capsids. , 2014, Bio-protocol.
[32] Yonghao Yu,et al. Site-specific characterization of the Asp- and Glu-ADP-ribosylated proteome , 2013, Nature Methods.
[33] G. Cheng,et al. Interferon-inducible cholesterol-25-hydroxylase broadly inhibits viral entry by production of 25-hydroxycholesterol. , 2013, Immunity.
[34] Ivan Matic,et al. Reanalysis of phosphoproteomics data uncovers ADP-ribosylation sites , 2012, Nature Methods.
[35] T. Oh,et al. Construction and Manipulation of a New Kaposi's Sarcoma-Associated Herpesvirus Bacterial Artificial Chromosome Clone , 2012, Journal of Virology.
[36] B. Trus,et al. The UL36 Tegument Protein of Herpes Simplex Virus 1 Has a Composite Binding Site at the Capsid Vertices , 2012, Journal of Virology.
[37] Baek Kim,et al. SAMHD1 restricts the replication of human immunodeficiency virus type 1 by depleting the intracellular pool of deoxynucleoside triphosphates , 2012, Nature Immunology.
[38] C. Miao,et al. A fluorometric assay for high-throughput screening targeting nicotinamide phosphoribosyltransferase. , 2011, Analytical biochemistry.
[39] P. De Baetselier,et al. Transcriptome analysis of monocyte-HIV interactions , 2010, Retrovirology.
[40] J. Sodroski,et al. Biochemical Characterization of a Recombinant TRIM5α Protein That Restricts Human Immunodeficiency Virus Type 1 Replication , 2008, Journal of Virology.
[41] C. Wolberger,et al. Structure of Nampt/PBEF/visfatin, a mammalian NAD+ biosynthetic enzyme , 2006, Nature Structural &Molecular Biology.
[42] S. Imai,et al. The NAD Biosynthesis Pathway Mediated by Nicotinamide Phosphoribosyltransferase Regulates Sir2 Activity in Mammalian Cells* , 2004, Journal of Biological Chemistry.
[43] C. M. Owens,et al. The cytoplasmic body component TRIM5α restricts HIV-1 infection in Old World monkeys , 2004, Nature.
[44] A. Davison,et al. A cosmid-based system for constructing mutants of herpes simplex virus type 1. , 1993, Virology.
[45] S. Ong,et al. ADP-Ribosylated Peptide Enrichment and Site Identification: The Phosphodiesterase-Based Method. , 2017, Methods in molecular biology.
[46] Gregory A. Smith. Assembly and Egress of an Alphaherpesvirus Clockwork. , 2017, Advances in anatomy, embryology, and cell biology.
[47] G. Whittaker,et al. Viral entry. , 2005, Current topics in microbiology and immunology.