Literature DB >> 29924943

Peptidylarginine deiminase 4: a nuclear button triggering neutrophil extracellular traps in inflammatory diseases and aging.

Siu Ling Wong1,2, Denisa D Wagner1,2,3.   

Abstract

Peptidylarginine deiminase 4 (PAD4) is a nuclear citrullinating enzyme that is critically involved in the release of decondensed chromatin from neutrophils as neutrophil extracellular traps (NETs). NETs, together with fibrin, are implicated in host defense against pathogens; however, the formation of NETs (NETosis) has injurious effects that may outweigh their protective role. For example, PAD4 activity produces citrullinated neoantigens that promote autoimmune diseases, such as rheumatoid arthritis, to which PAD4 is genetically linked and where NETosis is prominent. NETs are also generated in basic sterile inflammatory responses that are induced by many inflammatory stimuli, including cytokines, hypoxia, and activated platelets. Mice that lack PAD4-deficient in NETosis-serve as an excellent tool with which to study the importance of NETs in disease models. In recent years, animal and human studies have demonstrated that NETs contribute to the etiology and propagation of many common noninfectious diseases, the focus of our review. We will discuss the role of NETs in thrombotic and cardiovascular disease, the induction of NETs by cancers and its implications for cancer progression and cancer-associated thrombosis, and elevated NETosis in diabetes and its negative impact on wound healing, and will propose a link between PAD4/NETs and age-related organ fibrosis. We identify unresolved issues and new research directions.-Wong, S. L., Wagner, D. D. Peptidylarginine deiminase 4: a nuclear button triggering neutrophil extracellular traps in inflammatory diseases and aging.

Entities:  

Keywords:  NETs; PAD4; cancer; diabetes; thrombosis

Year:  2018        PMID: 29924943      PMCID: PMC6219837          DOI: 10.1096/fj.201800691R

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  139 in total

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Authors:  Wenzhou Hong; Richard A Juneau; Bing Pang; W Edward Swords
Journal:  J Innate Immun       Date:  2009-02-27       Impact factor: 7.349

2.  Eosinophil extracellular trap cell death-derived DNA traps: Their presence in secretions and functional attributes.

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Journal:  J Allergy Clin Immunol       Date:  2015-06-09       Impact factor: 10.793

3.  Enhanced superoxide release and elevated protein kinase C activity in neutrophils from diabetic patients: association with periodontitis.

Authors:  M Karima; A Kantarci; T Ohira; H Hasturk; V L Jones; B-H Nam; A Malabanan; P C Trackman; J A Badwey; T E Van Dyke
Journal:  J Leukoc Biol       Date:  2005-08-04       Impact factor: 4.962

Review 4.  Extracellular DNA: A Bridge to Cancer.

Authors:  Martha C Hawes; Fushi Wen; Emad Elquza
Journal:  Cancer Res       Date:  2015-09-21       Impact factor: 12.701

Review 5.  Neutrophil Extracellular Traps: The Biology of Chromatin Externalization.

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Journal:  Dev Cell       Date:  2018-03-12       Impact factor: 12.270

6.  Platelets induce neutrophil extracellular traps in transfusion-related acute lung injury.

Authors:  Axelle Caudrillier; Kai Kessenbrock; Brian M Gilliss; John X Nguyen; Marisa B Marques; Marc Monestier; Pearl Toy; Zena Werb; Mark R Looney
Journal:  J Clin Invest       Date:  2012-06-11       Impact factor: 14.808

7.  Neutrophil Extracellular Traps Accumulate in Peripheral Blood Vessels and Compromise Organ Function in Tumor-Bearing Animals.

Authors:  Jessica Cedervall; Yanyu Zhang; Hua Huang; Lei Zhang; Julia Femel; Anna Dimberg; Anna-Karin Olsson
Journal:  Cancer Res       Date:  2015-06-12       Impact factor: 12.701

8.  Circulating nucleosomes and neutrophil activation as risk factors for deep vein thrombosis.

Authors:  Maurits L van Montfoort; Femke Stephan; Mandy N Lauw; Barbara A Hutten; Gerard J Van Mierlo; Shabnam Solati; Saskia Middeldorp; Joost C M Meijers; Sacha Zeerleder
Journal:  Arterioscler Thromb Vasc Biol       Date:  2012-10-25       Impact factor: 8.311

9.  Histological comparison of arterial thrombi in mice and men and the influence of Cl-amidine on thrombus formation.

Authors:  Julia Novotny; Sue Chandraratne; Tobias Weinberger; Vanessa Philippi; Konstantin Stark; Andreas Ehrlich; Joachim Pircher; Ildiko Konrad; Paul Oberdieck; Anna Titova; Qendresa Hoti; Irene Schubert; Kyle R Legate; Nicole Urtz; Michael Lorenz; Jaroslav Pelisek; Steffen Massberg; Marie-Luise von Brühl; Christian Schulz
Journal:  PLoS One       Date:  2018-01-02       Impact factor: 3.240

10.  A proposed role for neutrophil extracellular traps in cancer immunoediting.

Authors:  Sivan Berger-Achituv; Volker Brinkmann; Ulrike Abu Abed; Lars I Kühn; Jonathan Ben-Ezra; Ronit Elhasid; Arturo Zychlinsky
Journal:  Front Immunol       Date:  2013-03-06       Impact factor: 7.561

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  35 in total

1.  Neutrophil extracellular traps in COVID-19.

Authors:  Yu Zuo; Srilakshmi Yalavarthi; Hui Shi; Kelsey Gockman; Melanie Zuo; Jacqueline A Madison; Christopher Blair; Andrew Weber; Betsy J Barnes; Mikala Egeblad; Robert J Woods; Yogendra Kanthi; Jason S Knight
Journal:  JCI Insight       Date:  2020-06-04

2.  The role of neutrophil extracellular traps and TLR signaling in skeletal muscle ischemia reperfusion injury.

Authors:  Nicole J Edwards; Charles Hwang; Simone Marini; Chase A Pagani; Philip J Spreadborough; Cassie J Rowe; Pauline Yu; Annie Mei; Noelle Visser; Shuli Li; Geoffrey E Hespe; Amanda K Huber; Amy L Strong; Miriam A Shelef; Jason S Knight; Thomas A Davis; Benjamin Levi
Journal:  FASEB J       Date:  2020-10-22       Impact factor: 5.191

3.  Genome-Wide Meta-Analysis Identifies Three Novel Susceptibility Loci and Reveals Ethnic Heterogeneity of Genetic Susceptibility for IgA Nephropathy.

Authors:  Ming Li; Ling Wang; Dian-Chun Shi; Jia-Nee Foo; Zhong Zhong; Chiea-Chuen Khor; Chiara Lanzani; Lorena Citterio; Erika Salvi; Pei-Ran Yin; Jin-Xin Bei; Li Wang; Yun-Hua Liao; Jian Chen; Qin-Kai Chen; Gang Xu; Geng-Ru Jiang; Jian-Xin Wan; Meng-Hua Chen; Nan Chen; Hong Zhang; Yi-Xin Zeng; Zhi-Hong Liu; Jian-Jun Liu; Xue-Qing Yu
Journal:  J Am Soc Nephrol       Date:  2020-09-10       Impact factor: 10.121

Review 4.  Extracellular DNA NET-Works With Dire Consequences for Health.

Authors:  Nicoletta Sorvillo; Deya Cherpokova; Kimberly Martinod; Denisa D Wagner
Journal:  Circ Res       Date:  2019-08-01       Impact factor: 17.367

5.  Plasma Peptidylarginine Deiminase IV Promotes VWF-Platelet String Formation and Accelerates Thrombosis After Vessel Injury.

Authors:  Nicoletta Sorvillo; Daniella M Mizurini; Carmen Coxon; Kimberly Martinod; Ronak Tilvawala; Deya Cherpokova; Ari J Salinger; Robert J Seward; Caleb Staudinger; Eranthie Weerapana; Nathan I Shapiro; Catherine E Costello; Paul R Thompson; Denisa D Wagner
Journal:  Circ Res       Date:  2019-06-28       Impact factor: 17.367

Review 6.  Thromboinflammation: From Atherosclerosis to COVID-19.

Authors:  Denisa D Wagner; Lukas A Heger
Journal:  Arterioscler Thromb Vasc Biol       Date:  2022-07-08       Impact factor: 10.514

7.  Acute Hypoxia Alters Extracellular Vesicle Signatures and the Brain Citrullinome of Naked Mole-Rats (Heterocephalus glaber).

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Journal:  Int J Mol Sci       Date:  2022-04-23       Impact factor: 6.208

Review 8.  Neutrophils in Tumorigenesis: Missing Targets for Successful Next Generation Cancer Therapies?

Authors:  Fabrice Tolle; Viktor Umansky; Jochen Utikal; Stephanie Kreis; Sabrina Bréchard
Journal:  Int J Mol Sci       Date:  2021-06-23       Impact factor: 5.923

9.  Mechanisms of Environment-Induced Autoimmunity.

Authors:  K Michael Pollard; David M Cauvi; Jessica M Mayeux; Christopher B Toomey; Amy K Peiss; Per Hultman; Dwight H Kono
Journal:  Annu Rev Pharmacol Toxicol       Date:  2020-08-28       Impact factor: 13.820

Review 10.  The potential roles of Von Willebrand factor and neutrophil extracellular traps in the natural history of hypertrophic and hypertensive cardiomyopathy.

Authors:  Richard C Becker; A Phillip Owens; Sakthivel Sadayappan
Journal:  Thromb Res       Date:  2020-05-07       Impact factor: 3.944

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