Literature DB >> 27048811

Matters of life and death. How neutrophils die or survive along NET release and is "NETosis" = necroptosis?

Jyaysi Desai1, Shrikant R Mulay1, Daigo Nakazawa1, Hans-Joachim Anders2.   

Abstract

Neutrophil extracellular trap (NET) formation is a hallmark of many disorders that involve neutrophil recruitment, tissue damage, and inflammation. As NET formation is often associated with neutrophil death, the term "NETosis" has become popular. Upon discovery that neutrophils may survive NET release, apparent misnomers, such as "vital NETosis," have been proposed. Meanwhile, it has become obvious that certain stimuli can trigger neutrophil necroptosis, a process associated with NET-like chromatin release. Here, we discuss the relationship between NET release and neutrophil death in view highlighting that many assays used in the field do not properly distinguish between the two. An updated nomenclature is needed replacing the term "NETosis" to meet the growing variety of settings leading to chromatin release with and without neutrophil death. Dissecting which triggers of NET release involve which signaling pathway will help to define drugable molecular targets that inhibit NET release and/or neutrophil necrosis in specific disorders.

Entities:  

Keywords:  Gout; Histones; Host defense; Infection; Regulated necrosis; Sterile inflammation

Mesh:

Substances:

Year:  2016        PMID: 27048811     DOI: 10.1007/s00018-016-2195-0

Source DB:  PubMed          Journal:  Cell Mol Life Sci        ISSN: 1420-682X            Impact factor:   9.261


  50 in total

1.  Neutrophil extracellular traps kill bacteria.

Authors:  Volker Brinkmann; Ulrike Reichard; Christian Goosmann; Beatrix Fauler; Yvonne Uhlemann; David S Weiss; Yvette Weinrauch; Arturo Zychlinsky
Journal:  Science       Date:  2004-03-05       Impact factor: 47.728

2.  Induction of necrosis in human neutrophils by Shigella flexneri requires type III secretion, IpaB and IpaC invasins, and actin polymerization.

Authors:  M François; V Le Cabec; M A Dupont; P J Sansonetti; I Maridonneau-Parini
Journal:  Infect Immun       Date:  2000-03       Impact factor: 3.441

3.  Regulation of transendothelial neutrophil migration by endogenous interleukin-8.

Authors:  A R Huber; S L Kunkel; R F Todd; S J Weiss
Journal:  Science       Date:  1991-10-04       Impact factor: 47.728

Review 4.  Molecular definitions of cell death subroutines: recommendations of the Nomenclature Committee on Cell Death 2012.

Authors:  L Galluzzi; I Vitale; J M Abrams; E S Alnemri; E H Baehrecke; M V Blagosklonny; T M Dawson; V L Dawson; W S El-Deiry; S Fulda; E Gottlieb; D R Green; M O Hengartner; O Kepp; R A Knight; S Kumar; S A Lipton; X Lu; F Madeo; W Malorni; P Mehlen; G Nuñez; M E Peter; M Piacentini; D C Rubinsztein; Y Shi; H-U Simon; P Vandenabeele; E White; J Yuan; B Zhivotovsky; G Melino; G Kroemer
Journal:  Cell Death Differ       Date:  2011-07-15       Impact factor: 15.828

5.  Viable neutrophils release mitochondrial DNA to form neutrophil extracellular traps.

Authors:  S Yousefi; C Mihalache; E Kozlowski; I Schmid; H U Simon
Journal:  Cell Death Differ       Date:  2009-07-17       Impact factor: 15.828

6.  Netting neutrophils in autoimmune small-vessel vasculitis.

Authors:  Kai Kessenbrock; Markus Krumbholz; Ulf Schönermarck; Walter Back; Wolfgang L Gross; Zena Werb; Hermann-Josef Gröne; Volker Brinkmann; Dieter E Jenne
Journal:  Nat Med       Date:  2009-06       Impact factor: 53.440

Review 7.  Necroptosis.

Authors:  Andreas Linkermann; Douglas R Green
Journal:  N Engl J Med       Date:  2014-01-30       Impact factor: 91.245

8.  Aggregated neutrophil extracellular traps limit inflammation by degrading cytokines and chemokines.

Authors:  Christine Schauer; Christina Janko; Luis E Munoz; Yi Zhao; Deborah Kienhöfer; Benjamin Frey; Michael Lell; Bernhard Manger; Jürgen Rech; Elisabeth Naschberger; Rikard Holmdahl; Veit Krenn; Thomas Harrer; Ivica Jeremic; Rostyslav Bilyy; Georg Schett; Markus Hoffmann; Martin Herrmann
Journal:  Nat Med       Date:  2014-04-28       Impact factor: 53.440

9.  PAD4 mediated histone hypercitrullination induces heterochromatin decondensation and chromatin unfolding to form neutrophil extracellular trap-like structures.

Authors:  Marc Leshner; Shu Wang; Carrie Lewis; Han Zheng; Xiangyun Amy Chen; Lorraine Santy; Yanming Wang
Journal:  Front Immunol       Date:  2012-10-04       Impact factor: 7.561

10.  Cytotoxicity of crystals involves RIPK3-MLKL-mediated necroptosis.

Authors:  Shrikant R Mulay; Jyaysi Desai; Santhosh V Kumar; Jonathan N Eberhard; Dana Thomasova; Simone Romoli; Melissa Grigorescu; Onkar P Kulkarni; Bastian Popper; Volker Vielhauer; Gabriele Zuchtriegel; Christoph Reichel; Jan Hinrich Bräsen; Paola Romagnani; Rostyslav Bilyy; Luis E Munoz; Martin Herrmann; Helen Liapis; Stefan Krautwald; Andreas Linkermann; Hans-Joachim Anders
Journal:  Nat Commun       Date:  2016-01-28       Impact factor: 14.919

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  40 in total

Review 1.  To the edge of cell death and back.

Authors:  Yi-Nan Gong; Jeremy Chase Crawford; Bradlee L Heckmann; Douglas R Green
Journal:  FEBS J       Date:  2018-12-19       Impact factor: 5.542

Review 2.  Cell death in chronic inflammation: breaking the cycle to treat rheumatic disease.

Authors:  Holly Anderton; Ian P Wicks; John Silke
Journal:  Nat Rev Rheumatol       Date:  2020-07-08       Impact factor: 20.543

Review 3.  To NET or not to NET:current opinions and state of the science regarding the formation of neutrophil extracellular traps.

Authors:  Sebastian Boeltz; Poorya Amini; Hans-Joachim Anders; Felipe Andrade; Rostyslav Bilyy; Simon Chatfield; Iwona Cichon; Danielle M Clancy; Jyaysi Desai; Tetiana Dumych; Nishant Dwivedi; Rachael Ann Gordon; Jonas Hahn; Andrés Hidalgo; Markus H Hoffmann; Mariana J Kaplan; Jason S Knight; Elzbieta Kolaczkowska; Paul Kubes; Moritz Leppkes; Angelo A Manfredi; Seamus J Martin; Christian Maueröder; Norma Maugeri; Ioannis Mitroulis; Luis E Munoz; Daigo Nakazawa; Indira Neeli; Victor Nizet; Elmar Pieterse; Marko Z Radic; Christiane Reinwald; Konstantinos Ritis; Patrizia Rovere-Querini; Michal Santocki; Christine Schauer; Georg Schett; Mark Jay Shlomchik; Hans-Uwe Simon; Panagiotis Skendros; Darko Stojkov; Peter Vandenabeele; Tom Vanden Berghe; Johan van der Vlag; Ljubomir Vitkov; Maren von Köckritz-Blickwede; Shida Yousefi; Alexander Zarbock; Martin Herrmann
Journal:  Cell Death Differ       Date:  2019-01-08       Impact factor: 15.828

Review 4.  An interplay of structure and intrinsic disorder in the functionality of peptidylarginine deiminases, a family of key autoimmunity-related enzymes.

Authors:  Mohammed Alghamdi; Khaled A Al Ghamdi; Rizwan H Khan; Vladimir N Uversky; Elrashdy M Redwan
Journal:  Cell Mol Life Sci       Date:  2019-07-24       Impact factor: 9.261

Review 5.  The emerging role of neutrophilic extracellular traps in intestinal disease.

Authors:  Feng Chen; Yongqiang Liu; Yajing Shi; Jianmin Zhang; Xin Liu; Zhenzhen Liu; Jipeng Lv; Yufang Leng
Journal:  Gut Pathog       Date:  2022-06-22       Impact factor: 5.324

6.  Pioneer neutrophils release chromatin within in vivo swarms.

Authors:  Graham J Lieschke; Stephen A Renshaw; Philip M Elks; Hannah M Isles; Catherine A Loynes; Sultan Alasmari; Fu Chuen Kon; Katherine M Henry; Anastasia Kadochnikova; Jack Hales; Clare F Muir; Maria-Cristina Keightley; Visakan Kadirkamanathan; Noémie Hamilton
Journal:  Elife       Date:  2021-07-21       Impact factor: 8.140

Review 7.  Neutrophils and neutrophil extracellular traps in the liver and gastrointestinal system.

Authors:  Masaki Honda; Paul Kubes
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2018-01-31       Impact factor: 46.802

8.  Neutrophil Extracellular Traps in Atherosclerosis and Thrombosis.

Authors:  Thomas M Hofbauer; Anna S Ondracek; Irene M Lang
Journal:  Handb Exp Pharmacol       Date:  2022

Review 9.  Recent progress in the mechanistic understanding of NET formation in neutrophils.

Authors:  Ming-Lin Liu; Xing Lyu; Victoria P Werth
Journal:  FEBS J       Date:  2021-06-11       Impact factor: 5.622

Review 10.  Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018.

Authors:  Lorenzo Galluzzi; Ilio Vitale; Stuart A Aaronson; John M Abrams; Dieter Adam; Patrizia Agostinis; Emad S Alnemri; Lucia Altucci; Ivano Amelio; David W Andrews; Margherita Annicchiarico-Petruzzelli; Alexey V Antonov; Eli Arama; Eric H Baehrecke; Nickolai A Barlev; Nicolas G Bazan; Francesca Bernassola; Mathieu J M Bertrand; Katiuscia Bianchi; Mikhail V Blagosklonny; Klas Blomgren; Christoph Borner; Patricia Boya; Catherine Brenner; Michelangelo Campanella; Eleonora Candi; Didac Carmona-Gutierrez; Francesco Cecconi; Francis K-M Chan; Navdeep S Chandel; Emily H Cheng; Jerry E Chipuk; John A Cidlowski; Aaron Ciechanover; Gerald M Cohen; Marcus Conrad; Juan R Cubillos-Ruiz; Peter E Czabotar; Vincenzo D'Angiolella; Ted M Dawson; Valina L Dawson; Vincenzo De Laurenzi; Ruggero De Maria; Klaus-Michael Debatin; Ralph J DeBerardinis; Mohanish Deshmukh; Nicola Di Daniele; Francesco Di Virgilio; Vishva M Dixit; Scott J Dixon; Colin S Duckett; Brian D Dynlacht; Wafik S El-Deiry; John W Elrod; Gian Maria Fimia; Simone Fulda; Ana J García-Sáez; Abhishek D Garg; Carmen Garrido; Evripidis Gavathiotis; Pierre Golstein; Eyal Gottlieb; Douglas R Green; Lloyd A Greene; Hinrich Gronemeyer; Atan Gross; Gyorgy Hajnoczky; J Marie Hardwick; Isaac S Harris; Michael O Hengartner; Claudio Hetz; Hidenori Ichijo; Marja Jäättelä; Bertrand Joseph; Philipp J Jost; Philippe P Juin; William J Kaiser; Michael Karin; Thomas Kaufmann; Oliver Kepp; Adi Kimchi; Richard N Kitsis; Daniel J Klionsky; Richard A Knight; Sharad Kumar; Sam W Lee; John J Lemasters; Beth Levine; Andreas Linkermann; Stuart A Lipton; Richard A Lockshin; Carlos López-Otín; Scott W Lowe; Tom Luedde; Enrico Lugli; Marion MacFarlane; Frank Madeo; Michal Malewicz; Walter Malorni; Gwenola Manic; Jean-Christophe Marine; Seamus J Martin; Jean-Claude Martinou; Jan Paul Medema; Patrick Mehlen; Pascal Meier; Sonia Melino; Edward A Miao; Jeffery D Molkentin; Ute M Moll; Cristina Muñoz-Pinedo; Shigekazu Nagata; Gabriel Nuñez; Andrew Oberst; Moshe Oren; Michael Overholtzer; Michele Pagano; Theocharis Panaretakis; Manolis Pasparakis; Josef M Penninger; David M Pereira; Shazib Pervaiz; Marcus E Peter; Mauro Piacentini; Paolo Pinton; Jochen H M Prehn; Hamsa Puthalakath; Gabriel A Rabinovich; Markus Rehm; Rosario Rizzuto; Cecilia M P Rodrigues; David C Rubinsztein; Thomas Rudel; Kevin M Ryan; Emre Sayan; Luca Scorrano; Feng Shao; Yufang Shi; John Silke; Hans-Uwe Simon; Antonella Sistigu; Brent R Stockwell; Andreas Strasser; Gyorgy Szabadkai; Stephen W G Tait; Daolin Tang; Nektarios Tavernarakis; Andrew Thorburn; Yoshihide Tsujimoto; Boris Turk; Tom Vanden Berghe; Peter Vandenabeele; Matthew G Vander Heiden; Andreas Villunger; Herbert W Virgin; Karen H Vousden; Domagoj Vucic; Erwin F Wagner; Henning Walczak; David Wallach; Ying Wang; James A Wells; Will Wood; Junying Yuan; Zahra Zakeri; Boris Zhivotovsky; Laurence Zitvogel; Gerry Melino; Guido Kroemer
Journal:  Cell Death Differ       Date:  2018-01-23       Impact factor: 12.067

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