AI Article Synopsis

  • CaMKII activation is crucial for multiple biological processes, especially in cardiac hypertrophy, and occurs in caveolar microdomains, which serve as signaling platforms for various targets such as the L-type Ca channel complex.
  • Researchers aimed to create tools to specifically analyze CaMKII activation in caveolae to understand its functional role in cardiac hypertrophy better.
  • They developed a fusion protein and a specific inhibitory peptide that allows for detection of caveolae-specific CaMKII activation, showcasing that β-subunit phosphorylation occurs in caveolae and contributes to cardiac hypertrophy upon stimulation.

Article Abstract

Activation of CaMKII induces a myriad of biological processes and plays dominant roles in cardiac hypertrophy. Caveolar microdomain contains many calcium/calmodulin-dependent kinase II (CaMKII) targets, including L-type Ca channel (LTCC) complex, and serves as a signaling platform. The location of CaMKII activation is thought to be critical; however, the roles of CaMKII in caveolae are still elusive due to lack of methodology for the assessment of caveolae-specific activation. Our aim was to develop a novel tool for the specific analysis of CaMKII activation in caveolae and to determine the functional role of caveolar CaMKII in cardiac hypertrophy. To assess the caveolae-specific activation of CaMKII, we generated a fusion protein composed of phospholamban and caveolin-3 (cPLN-Cav3) and GFP fusion protein with caveolin-binding domain fused to CaMKII inhibitory peptide (CBD-GFP-AIP), which inhibits CaMKII activation specifically in caveolae. Caveolae-specific activation of CaMKII was detected using phosphospecific antibody for PLN (Thr). Furthermore, adenoviral overexpression of LTCC β-subunit (β) in NRCMs showed its constitutive phosphorylation by CaMKII, which induces hypertrophy, and that both phosphorylation and hypertrophy are abolished by CBD-GFP-AIP expression, indicating that β phosphorylation occurs specifically in caveolae. Finally, β phosphorylation was observed after phenylephrine stimulation in β-overexpressing mice, and attenuation of cardiac hypertrophy after chronic phenylephrine stimulation was observed in nonphosphorylated mutant of β-overexpressing mice. We developed novel tools for the evaluation and inhibition of caveolae-specific activation of CaMKII. We demonstrated that phosphorylated β dominantly localizes to caveolae and induces cardiac hypertrophy after α-adrenergic stimulation in mice. While signaling in caveolae is thought to be important in cardiac hypertrophy, direct evidence is missing due to lack of tools to assess caveolae-specific signaling. This is the first study to demonstrate caveolae-specific activation of CaMKII signaling in cardiac hypertrophy induced by α-adrenergic stimulation using an originally developed tool.

Download full-text PDF

Source
http://dx.doi.org/10.1152/ajpheart.00601.2016DOI Listing

Publication Analysis

Top Keywords

cardiac hypertrophy
28
caveolae-specific activation
24
activation camkii
20
camkii
14
α-adrenergic stimulation
12
camkii activation
12
hypertrophy
9
activation
9
l-type channel
8
hypertrophy α-adrenergic
8

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!