A missense mutation in the MLKL brace region promotes lethal neonatal inflammation and hematopoietic dysfunction
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Published:2020-06-19
Issue:1
Volume:11
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Hildebrand Joanne M.ORCID, Kauppi Maria, Majewski Ian J., Liu ZikouORCID, Cox Allison J., Miyake Sanae, Petrie Emma J., Silk Michael A., Li Zhixiu, Tanzer Maria C., Brumatti Gabriela, Young Samuel N., Hall Cathrine, Garnish Sarah E., Corbin Jason, Stutz Michael D.ORCID, Di Rago Ladina, Gangatirkar Pradnya, Josefsson Emma C.ORCID, Rigbye Kristin, Anderton HollyORCID, Rickard James A., Tripaydonis Anne, Sheridan JulieORCID, Scerri Thomas S.ORCID, Jackson Victoria E., Czabotar Peter E.ORCID, Zhang Jian-Guo, Varghese LeilaORCID, Allison Cody C., Pellegrini Marc, Tannahill Gillian M., Hatchell Esme C., Willson Tracy A., Stockwell Dina, de Graaf Carolyn A.ORCID, Collinge Janelle, Hilton Adrienne, Silke Natasha, Spall Sukhdeep K., Chau Diep, Athanasopoulos Vicki, Metcalf Donald, Laxer Ronald M., Bassuk Alexander G.ORCID, Darbro Benjamin W., Fiatarone Singh Maria A., Vlahovich Nicole, Hughes David, Kozlovskaia Maria, Ascher David B.ORCID, Warnatz Klaus, Venhoff Nils, Thiel Jens, Biben ChristineORCID, Blum Stefan, Reveille John, Hildebrand Michael S., Vinuesa Carola G., McCombe PamelaORCID, Brown Matthew A.ORCID, Kile Benjamin T.ORCID, McLean CatrionaORCID, Bahlo MelanieORCID, Masters Seth L.ORCID, Nakano HiroyasuORCID, Ferguson Polly J., Murphy James M.ORCID, Alexander Warren S., Silke JohnORCID
Abstract
AbstractMLKL is the essential effector of necroptosis, a form of programmed lytic cell death. We have isolated a mouse strain with a single missense mutation, MlklD139V, that alters the two-helix ‘brace’ that connects the killer four-helix bundle and regulatory pseudokinase domains. This confers constitutive, RIPK3 independent killing activity to MLKL. Homozygous mutant mice develop lethal postnatal inflammation of the salivary glands and mediastinum. The normal embryonic development of MlklD139V homozygotes until birth, and the absence of any overt phenotype in heterozygotes provides important in vivo precedent for the capacity of cells to clear activated MLKL. These observations offer an important insight into the potential disease-modulating roles of three common human MLKL polymorphisms that encode amino acid substitutions within or adjacent to the brace region. Compound heterozygosity of these variants is found at up to 12-fold the expected frequency in patients that suffer from a pediatric autoinflammatory disease, chronic recurrent multifocal osteomyelitis (CRMO).
Funder
Victorian Cancer Agency, The Felton Bequest Victorian International Research Scholarship Department of Health | National Health and Medical Research Council The Sylvia & Charles Viertel Senior Medical Research Fellowship
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference82 articles.
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