LNK/SH2B3 loss of function increases susceptibility to murine and human atrial fibrillation

Author:

Murphy Matthew B12ORCID,Yang Zhenjiang12,Subati Tuerdi12,Farber-Eger Eric1,Kim Kyungsoo12,Blackwell Daniel J12,Fleming Matthew R1,Stark Joshua M12,Van Amburg Joseph C12,Woodall Kaylen K12,Van Beusecum Justin P12,Agrawal Vineet1,Smart Charles D12ORCID,Pitzer Ashley12,Atkinson James B3,Fogo Agnes B3,Bastarache Julie A1,Kirabo Annet12ORCID,Wells Quinn S124,Madhur Meena S12,Barnett Joey V12,Murray Katherine T12ORCID

Affiliation:

1. Department of Medicine, Division of Clinical Pharmacology, Vanderbilt University School of Medicine , 2220 Pierce Avenue, 559 PRB, Nashville, TN 37232 , USA

2. Department of Pharmacology, Vanderbilt University School of Medicine , 2220 Pierce Avenue, Nashville, TN 37232 , USA

3. Department of Pathology, Microbiology, and Immunology, Vanderbilt University School of Medicine , 1161 21 Avenue South, Nashville, TN 37232 , USA

4. Department of Biomedical Informatics, Vanderbilt University School of Medicine , 2525 West End Avenue, Nashville, TN 37203 , USA

Abstract

Abstract Aims The lymphocyte adaptor protein (LNK) is a negative regulator of cytokine and growth factor signalling. The rs3184504 variant in SH2B3 reduces LNK function and is linked to cardiovascular, inflammatory, and haematologic disorders, including stroke. In mice, deletion of Lnk causes inflammation and oxidative stress. We hypothesized that Lnk−/− mice are susceptible to atrial fibrillation (AF) and that rs3184504 is associated with AF and AF-related stroke in humans. During inflammation, reactive lipid dicarbonyls are the major components of oxidative injury, and we further hypothesized that these mediators are critical drivers of the AF substrate in Lnk−/− mice. Methods and results Lnk−/− or wild-type (WT) mice were treated with vehicle or 2-hydroxybenzylamine (2-HOBA), a dicarbonyl scavenger, for 3 months. Compared with WT, Lnk−/− mice displayed increased AF duration that was prevented by 2-HOBA. In the Lnk−/− atria, action potentials were prolonged with reduced transient outward K+ current, increased late Na+ current, and reduced peak Na+ current, pro-arrhythmic effects that were inhibited by 2-HOBA. Mitochondrial dysfunction, especially for Complex I, was evident in Lnk−/− atria, while scavenging lipid dicarbonyls prevented this abnormality. Tumour necrosis factor-α (TNF-α) and interleukin-1 beta (IL-1β) were elevated in Lnk−/− plasma and atrial tissue, respectively, both of which caused electrical and bioenergetic remodelling in vitro. Inhibition of soluble TNF-α prevented electrical remodelling and AF susceptibility, while IL-1β inhibition improved mitochondrial respiration but had no effect on AF susceptibility. In a large database of genotyped patients, rs3184504 was associated with AF, as well as AF-related stroke. Conclusion These findings identify a novel role for LNK in the pathophysiology of AF in both experimental mice and humans. Moreover, reactive lipid dicarbonyls are critical to the inflammatory AF substrate in Lnk−/− mice and mediate the pro-arrhythmic effects of pro-inflammatory cytokines, primarily through electrical remodelling.

Funder

National Institutes of Health

American Heart Association

National Center for Advancing Translational Sciences of the National Institute of Health

Vanderbilt Cell Imaging Shared Resource

Vanderbilt Translational Pathology Shared Resource

Publisher

Oxford University Press (OUP)

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