Crotonylation of NAE1 Modulates Cardiac Hypertrophy via Gelsolin Neddylation
Jie Ju1,2,3, Kai Wang1, Fang Liu4
1Department of Cardiovascular Surgery, Institute for Translational Medicine, The Affiliated Hospital of Qingdao University, China (J.J., Kai Wang, C.-Y.L., S.-C.W., L.-Y.Z., X.-M.L., Y.-Q.W., X.-Z.C., R.-F.L., S.-M.Y., Kun Wang).
Background:
Cardiac hypertrophy and its associated remodeling are among the leading causes of heart failure. Lysine crotonylation is a recently discovered posttranslational modification whose role in cardiac hypertrophy remains largely unknown. NAE1 (NEDD8 [neural precursor cell expressed developmentally downregulated protein 8]-activating enzyme E1 regulatory subunit) is mainly involved in the neddylation modification of protein targets. However, the function of crotonylated NAE1 has not been defined. This study aims to elucidate the effects and mechanisms of NAE1 crotonylation on cardiac hypertrophy.
Methods:
Crotonylation levels were detected in both human and mouse subjects with cardiac hypertrophy through immunoprecipitation and Western blot assays. Tandem mass tag (TMT)-labeled quantitative lysine crotonylome analysis was performed to identify the crotonylated proteins in a mouse cardiac hypertrophic model induced by transverse aortic constriction. We generated NAE1 knock-in mice carrying a crotonylation-defective K238R (lysine to arginine mutation at site 238) mutation (NAE1 K238R) and NAE1 knock-in mice expressing a crotonylation-mimicking K238Q (lysine to glutamine mutation at site 238) mutation (NAE1 K238Q) to assess the functional role of crotonylation of NAE1 at K238 in pathological cardiac hypertrophy. Furthermore, we combined coimmunoprecipitation, mass spectrometry, and dot blot analysis that was followed by multiple molecular biological methodologies to identify the target GSN (gelsolin) and corresponding molecular events contributing to the function of NAE1 K238 (lysine residue at site 238) crotonylation.
Results:
The crotonylation level of NAE1 was increased in mice and patients with cardiac hypertrophy. Quantitative crotonylomics analysis revealed that K238 was the main crotonylation site of NAE1. Loss of K238 crotonylation in NAE1 K238R knock-in mice attenuated cardiac hypertrophy and restored the heart function, while hypercrotonylation mimic in NAE1 K238Q knock-in mice significantly enhanced transverse aortic constriction-induced pathological hypertrophic response, leading to impaired cardiac structure and function. The recombinant adenoviral vector carrying NAE1 K238R mutant attenuated, while the K238Q mutant aggravated Ang II (angiotensin II)-induced hypertrophy. Mechanistically, we identified GSN as a direct target of NAE1. K238 crotonylation of NAE1 promoted GSN neddylation and, thus, enhanced its protein stability and expression. NAE1 crotonylation-dependent increase of GSN promoted actin-severing activity, which resulted in adverse cytoskeletal remodeling and progression of pathological hypertrophy.
Conclusions:
Our findings provide new insights into the previously unrecognized role of crotonylation on nonhistone proteins during cardiac hypertrophy. We found that K238 crotonylation of NAE1 plays an essential role in mediating cardiac hypertrophy through GSN neddylation, which provides potential novel therapeutic targets for pathological hypertrophy and cardiac remodeling.
Insights
Lysine crotonylation of NAE1 (NEDD8-activating enzyme E1 regulatory subunit) at K238 promotes cardiac hypertrophy by enhancing GSN (gelsolin) neddylation and stability. Inhibiting this modification offers a potential therapeutic strategy for heart failure.
Area of Science:
- Cardiovascular Biology
- Epigenetics
- Molecular Mechanisms of Disease
Background:
- Cardiac hypertrophy and remodeling are primary drivers of heart failure.
- Lysine crotonylation, a novel posttranslational modification, has an undefined role in cardiac hypertrophy.
- The function of crotonylated NAE1 (NEDD8-activating enzyme E1 regulatory subunit) is unknown.
Purpose of the Study:
- To investigate the role and mechanism of NAE1 crotonylation in cardiac hypertrophy.
- To identify the specific site and functional consequences of NAE1 crotonylation.
Main Methods:
- Detected increased NAE1 crotonylation in human and mouse cardiac hypertrophy models.
- Utilized quantitative crotonylomics to identify K238 as the primary crotonylation site on NAE1.
- Generated NAE1 K238R (defective) and NAE1 K238Q (mimicking) knock-in mice to assess functional impacts.
- Identified GSN (gelsolin) as a direct target of NAE1 through mass spectrometry and molecular assays.
Main Results:
- NAE1 K238 crotonylation was elevated in cardiac hypertrophy.
- Loss of NAE1 K238 crotonylation attenuated hypertrophy, while mimicking it exacerbated it.
- NAE1 crotonylation at K238 promoted GSN neddylation, increasing GSN stability and expression.
- Increased GSN activity led to cytoskeletal remodeling and pathological hypertrophy progression.
Conclusions:
- NAE1 K238 crotonylation is a key mediator of cardiac hypertrophy via GSN neddylation.
- This pathway represents a novel therapeutic target for pathological cardiac hypertrophy and remodeling.
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