Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/121715
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Type: Journal article
Title: Denisovan, modern human and mouse TNFAIP3 alleles tune A20 phosphorylation and immunity
Author: Zammit, N.W.
Siggs, O.M.
Gray, P.E.
Horikawa, K.
Langley, D.B.
Walters, S.N.
Daley, S.R.
Loetsch, C.
Warren, J.
Yap, J.Y.
Cultrone, D.
Russell, A.
Malle, E.K.
Villanueva, J.E.
Cowley, M.J.
Gayevskiy, V.
Dinger, M.E.
Brink, R.
Zahra, D.
Chaudhri, G.
et al.
Citation: Nature Immunology, 2019; 20(10):1299-1310
Publisher: Springer Nature
Issue Date: 2019
ISSN: 1529-2908
1529-2916
Statement of
Responsibility: 
Nathan W. Zammit, Owen M. Siggs, Paul E. Gray, Keisuke Horikawa, David B. Langley ... Shane T. Grey ... et al.
Abstract: Resisting and tolerating microbes are alternative strategies to survive infection, but little is known about the evolutionary mechanisms controlling this balance. Here genomic analyses of anatomically modern humans, extinct Denisovan hominins and mice revealed a TNFAIP3 allelic series with alterations in the encoded immune response inhibitor A20. Each TNFAIP3 allele encoded substitutions at non-catalytic residues of the ubiquitin protease OTU domain that diminished IκB kinase-dependent phosphorylation and activation of A20. Two TNFAIP3 alleles encoding A20 proteins with partial phosphorylation deficits seemed to be beneficial by increasing immunity without causing spontaneous inflammatory disease: A20 T108A;I207L, originating in Denisovans and introgressed in modern humans throughout Oceania, and A20 I325N, from an N-ethyl-N-nitrosourea (ENU)-mutagenized mouse strain. By contrast, a rare human TNFAIP3 allele encoding an A20 protein with 95% loss of phosphorylation, C243Y, caused spontaneous inflammatory disease in humans and mice. Analysis of the partial-phosphorylation A20 I325N allele in mice revealed diminished tolerance of bacterial lipopolysaccharide and poxvirus inoculation as tradeoffs for enhanced immunity.
Keywords: Animals
Mice, Inbred C57BL
Mice, Transgenic
Humans
Mice
Poxviridae
Poxviridae Infections
Inflammation
Immunity
Phosphorylation
Mutation, Missense
Alleles
Extinction, Biological
Tumor Necrosis Factor alpha-Induced Protein 3
Protein Domains
Rights: © 2019, Springer Nature
DOI: 10.1038/s41590-019-0492-0
Grant ID: http://purl.org/au-research/grants/nhmrc/1140691
http://purl.org/au-research/grants/nhmrc/1130222
http://purl.org/au-research/grants/nhmrc/585490
Published version: http://dx.doi.org/10.1038/s41590-019-0492-0
Appears in Collections:Aurora harvest 4
Medicine publications

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