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Analysis of Tubular Membrane Networks in Cardiac Myocytes from Atria and Ventricles
Published on: October 15, 2014
Microtubules Sequester Acetylated YAP in the Cytoplasm and Inhibit Heart Regeneration
Shijie Liu1,2, Vaibhav Deshmukh3,4, Fansen Meng3
1Cardiomyocyte Renewal Laboratory, Texas Heart Institute, Houston, (S.L., Y.M., R.G.L., J.W., J.F.M.).
Background:
The Hippo pathway effector YAP (Yes-associated protein) plays an essential role in cardiomyocyte proliferation and heart regeneration. In response to physiological changes, YAP moves in and out of the nucleus. The pathophysiological mechanisms regulating YAP subcellular localization after myocardial infarction remain poorly defined.
Methods:
We identified YAP acetylation at site K265 by in vitro acetylation followed by mass spectrometry analysis. We used adeno-associated virus to express YAP-containing mutations that either abolished acetylation (YAP-K265R) or mimicked acetylation (YAP-K265Q) and studied how acetylation regulates YAP subcellular localization in mouse hearts. We generated a cell line with YAP-K265R mutation and investigated the protein-protein interactors by YAP immunoprecipitation followed by mass spectrometry, then validated the YAP interaction in neonatal rat ventricular myocytes. We examined colocalization of YAP and TUBA4A (tubulin α 4A) by superresolution imaging. Furthermore, we developed YAP-K265R and αMHC-MerCreMer (MCM); Yap-loxP/K265R mutant mice to examine the pathophysiological role of YAP acetylation in cardiomyocytes during cardiac regeneration.
Results:
We found that YAP is acetylated at K265 by CBP (CREB-binding protein)/P300 (E1A-binding protein P300) and is deacetylated by nicotinamide phosphoribosyltransferase/nicotinamide adenine dinucleotide/sirtuins axis in cardiomyocytes. After myocardial infarction, YAP acetylation is increased, which promotes YAP cytoplasmic localization. Compared with controls, mice that were genetically engineered to express a K265R mutation that prevents YAP K265 acetylation showed improved cardiac regenerative ability and increased YAP nuclear localization. Mechanistically, YAP acetylation facilitates its interaction with TUBA4A, a component of the microtubule network that sequesters acetylated YAP in the cytoplasm. After myocardial infarction, the microtubule network increased in cardiomyocytes, resulting in the accumulation of YAP in the cytoplasm.
Conclusions:
After myocardial infarction, decreased sirtuin activity enriches YAP acetylation at K265. The growing TUBA4A network sequesters acetylated YAP within the cytoplasm, which is detrimental to cardiac regeneration.
Insights
YAP acetylation at K265, regulated by CBP/P300 and sirtuins, increases after heart attack. This acetylation promotes YAP cytoplasmic localization, hindering heart regeneration by interacting with TUBA4A.
Area of Science:
- Cardiovascular Biology
- Molecular Mechanisms of Disease
- Epigenetics and Post-Translational Modifications
Background:
- Yes-associated protein (YAP) is crucial for cardiomyocyte proliferation and heart regeneration.
- YAP's nuclear-cytoplasmic shuttling is vital for its function, but mechanisms after myocardial infarction are unclear.
Purpose of the Study:
- To elucidate the role of YAP acetylation in regulating its subcellular localization post-myocardial infarction.
- To investigate the impact of YAP acetylation on cardiac regeneration.
Main Methods:
- Identified YAP acetylation at K265 using mass spectrometry.
- Utilized adeno-associated virus to express YAP mutants (K265R, K265Q) in mouse hearts.
- Generated YAP-K265R mutant cell lines and mice for functional studies.
- Investigated YAP-TUBA4A interactions and microtubule network dynamics.
Main Results:
- YAP is acetylated by CBP/P300 and deacetylated by the NAMPT/NAD+/SIRTuins axis in cardiomyocytes.
- Myocardial infarction increases YAP acetylation, promoting its cytoplasmic localization.
- YAP K265R mutation enhances cardiac regeneration and YAP nuclear localization.
- Acetylated YAP interacts with TUBA4A, leading to cytoplasmic sequestration.
Conclusions:
- Decreased sirtuin activity post-myocardial infarction enhances YAP acetylation at K265.
- Increased TUBA4A network sequesters acetylated YAP in the cytoplasm, impairing cardiac regeneration.
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