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Published on: August 7, 2018
Nemo-Like Kinase (NLK) Is a Pathological Signaling Effector in the Mouse Heart
Ruijie Liu1, Hadi Khalil1, Suh-Chin J Lin1
1Department of Pediatrics, University of Cincinnati, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, United States of America.
Abstract:
Nemo-like kinase (NLK) is an evolutionary conserved serine/threonine protein kinase implicated in development, proliferation and apoptosis regulation. Here we identified NLK as a gene product induced in the hearts of mice subjected to pressure overload or myocardial infarction injury, suggesting a potential regulatory role with pathological stimulation to this organ. To examine the potential functional consequences of increased NLK levels, cardiac-specific transgenic mice with inducible expression of this gene product were generated, as well as cardiac-specific Nlk gene-deleted mice. NLK transgenic mice demonstrated baseline cardiac hypertrophy, dilation, interstitial fibrosis, apoptosis and progression towards heart failure in response to two surgery-induced cardiac disease models. In contrast, cardiac-specific deletion of Nlk from the heart, achieved by crossing a Nlk-loxP allele containing mouse with either a mouse containing a β-myosin heavy chain promoter driven Cre transgene or a tamoxifen inducible α-myosin heavy chain promoter containing transgene driving a MerCreMer cDNA, protected the mice from cardiac dysfunction following pathological stimuli. Mechanistically, NLK interacted with multiple proteins including the transcription factor Stat1, which was significantly increased in the hearts of NLK transgenic mice. These results indicate that NLK is a pathological effector in the heart.
Insights
Nemo-like kinase (NLK) is induced in the heart during injury and promotes heart failure. Inhibiting NLK in mice protected against cardiac dysfunction, revealing NLK as a pathological effector in the heart.
Area of Science:
- Cardiology
- Molecular Biology
- Biochemistry
Background:
- Nemo-like kinase (NLK) is a conserved serine/threonine protein kinase involved in cellular processes.
- NLK expression is elevated in the heart following pressure overload or myocardial infarction.
- This suggests a potential role for NLK in pathological cardiac conditions.
Purpose of the Study:
- To investigate the functional role of NLK in the heart.
- To determine if NLK acts as a pathological effector in cardiac disease.
Main Methods:
- Generated cardiac-specific inducible NLK transgenic mice and cardiac-specific Nlk gene-deleted mice.
- Utilized surgery-induced cardiac disease models (pressure overload, myocardial infarction).
- Analyzed cardiac function, hypertrophy, dilation, fibrosis, and apoptosis.
- Investigated protein-protein interactions, including NLK and Stat1.
Main Results:
- NLK transgenic mice exhibited cardiac hypertrophy, dilation, fibrosis, apoptosis, and heart failure progression.
- Cardiac-specific deletion of Nlk protected mice from pathological stimuli-induced cardiac dysfunction.
- NLK was found to interact with Stat1, a transcription factor that was upregulated in NLK transgenic hearts.
Conclusions:
- NLK is induced in the heart under pathological conditions.
- NLK acts as a pathological effector, promoting cardiac dysfunction and heart failure.
- Targeting NLK may offer a therapeutic strategy for heart disease.

