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Elife|June 3, 2017
Diverse stimuli engage different neutrophil extracellular trap pathwaysElaine F Kenny, Alf Herzig, Renate Krüger, et al.Biochemistry|June 28, 2019
Calcium Regulates the Nuclear Localization of Protein Arginine Deiminase 2Li Zheng, Mitesh Nagar, Aaron J Maurais, et al.Biochemistry|May 18, 2010
Substrate specificity and kinetic studies of PADs 1, 3, and 4 identify potent and selective inhibitors of protein arginine deiminase 3Bryan Knuckley, Corey P Causey, Justin E Jones, et al.Biochemistry|August 3, 2005
Kinetic characterization of protein arginine deiminase 4: a transcriptional corepressor implicated in the onset and progression of rheumatoid arthritisPatricia L Kearney, Monica Bhatia, Nelroy G Jones, et al.Biochemistry|September 10, 2021
Pan-3C Protease Inhibitor Rupintrivir Binds SARS-CoV-2 Main Protease in a Unique Binding ModeGordon J Lockbaum, Mina Henes, Jeong Min Lee, et al.Plant Molecular Biology|May 1, 2009
The tomato brassinosteroid receptor BRI1 increases binding of systemin to tobacco plasma membranes, but is not involved in systemin signalingRobert Malinowski, Rebecca Higgins, Yuan Luo, et al.ACS Chemical Biology|January 18, 2018
The Development of Benzimidazole-Based Clickable Probes for the Efficient Labeling of Cellular Protein Arginine Deiminases (PADs)Venkatesh V Nemmara, Venkataraman Subramanian, Aaron Muth, et al.Cell Chemical Biology|April 10, 2018
The Rheumatoid Arthritis-Associated CitrullinomeRonak Tilvawala, Son Hong Nguyen, Aaron J Maurais, et al.Inflammation|April 3, 2020
Inhibition of PAD2 Improves Survival in a Mouse Model of Lethal LPS-Induced Endotoxic ShockZhenyu Wu, Qiufang Deng, Baihong Pan, et al.Archives of Biochemistry and Biophysics|May 10, 2021
Structures of human peptidylarginine deiminase type III provide insights into substrate recognition and inhibitor designKazumasa Funabashi, Mizuki Sawata, Anna Nagai, et al.Pageof 20