Defensins, e.g., human neutrophil peptides (HNPs), contribute to innate immunity through diverse actions including microbial killing;high concentrations are present in the lung in response to inflammation. Arginines are critical for HNP activity, which is decreased by their replacement with ornithine. ADP-ribosyltransferases (ARTs) catalyze transfer of ADP-ribose from NAD to an acceptor arginine in a protein substrate, whereas ADP-ribosylarginine hydrolases release ADP-ribose. ART1 on the surface of airway epithelial cells ADP-ribosylated HNP-1 specifically on arginines 14 and 24, with ADP-ribosylation altering biological activity. Di- and mono-ADP-ribosylated HNP-1 were isolated from bronchoalveolar lavage fluid (BALF) of patients with asthma and idiopathic pulmonary fibrosis (IPF), suggesting a role for ADP-ribosylation in disease. In the present study, we observed that ART1-catalyzed ADP-ribosylation of HNP-1 in vitro generated a novel product with ADP-ribose on arginine 24, and ornithine replacing arginine at position 14. We hypothesized that ADP-ribosylarginine is susceptible to a non-enzymatic hydrolytic reaction yielding ornithine. On incubation of di- or mono-ADP-ribosyl-HNP-1 at 37 C, ADP-ribosylarginine was partially replaced by ornithine, whereas ornithine was not detected by amino acid analysis and mass spectrometry of unmodified HNP-1 incubated under the same conditions. Further, ornithine was produced from the model compound, ADP-ribosylarginine. BALF from an IPF patient contained ADP-ribosyl-HNP-ornithine as well as mono- and di-ADP-ribosylated HNP-1, consistent with in vivo conversion of arginine to ornithine. Targeted ADP-ribosylation of specific arginines by transferases, resulting in their replacement with ornithine, is a novel alternative pathway for regulation of protein function through post-translational modification.

Project Start
Project End
Budget Start
Budget End
Support Year
17
Fiscal Year
2009
Total Cost
$1,134,049
Indirect Cost
Name
National Heart, Lung, and Blood Institute
Department
Type
DUNS #
City
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Stevens, Linda A; Moss, Joel (2018) Mono-ADP-Ribosylation Catalyzed by Arginine-Specific ADP-Ribosyltransferases. Methods Mol Biol 1813:149-165
Pourfarjam, Yasin; Ventura, Jessica; Kurinov, Igor et al. (2018) Structure of human ADP-ribosyl-acceptor hydrolase 3 bound to ADP-ribose reveals a conformational switch that enables specific substrate recognition. J Biol Chem 293:12350-12359
Yahiro, Kinnosuke; Nagasawa, Sayaka; Ichimura, Kimitoshi et al. (2018) Mechanism of inhibition of Shiga-toxigenic Escherichia coli SubAB cytotoxicity by steroids and diacylglycerol analogues. Cell Death Discov 4:22
Mashimo, Masato; Moss, Joel (2018) ADP-Ribosyl-Acceptor Hydrolase Activities Catalyzed by the ARH Family of Proteins. Methods Mol Biol 1813:187-204
Bu, Xiangning; Kato, Jiro; Hong, Julie A et al. (2018) CD38 knockout suppresses tumorigenesis in mice and clonogenic growth of human lung cancer cells. Carcinogenesis 39:242-251
Abplanalp, Jeannette; Leutert, Mario; Frugier, Emilie et al. (2017) Proteomic analyses identify ARH3 as a serine mono-ADP-ribosylhydrolase. Nat Commun 8:2055
Sparrer, Konstantin M J; Gableske, Sebastian; Zurenski, Matthew A et al. (2017) TRIM23 mediates virus-induced autophagy via activation of TBK1. Nat Microbiol 2:1543-1557
Yahiro, Kinnosuke; Hirayama, Toshiya; Moss, Joel et al. (2016) New Insights into VacA Intoxication Mediated through Its Cell Surface Receptors. Toxins (Basel) 8:
Mashimo, Masato; Moss, Joel (2016) Functional Role of ADP-Ribosyl-Acceptor Hydrolase 3 in poly(ADP-Ribose) Polymerase-1 Response to Oxidative Stress. Curr Protein Pept Sci 17:633-640
Ida, Chieri; Yamashita, Sachiko; Tsukada, Masaki et al. (2016) An enzyme-linked immunosorbent assay-based system for determining the physiological level of poly(ADP-ribose) in cultured cells. Anal Biochem 494:76-81

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