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Updated: Sep 23, 2026

Remote Limb Ischemic Preconditioning: A Neuroprotective Technique in Rodents
Published on: June 2, 2015
Translocation of protein kinase C isoforms to subcellular targets in ischemic and anesthetic preconditioning
Marina Uecker1, Rafaela Da Silva, Thomas Grampp
1Institute of Pharmacology and Toxicology, University of Zurich, Switzerland.
Background:
Translocation of protein kinase C (PKC) to subcellular targets is a pivotal signaling step in ischemic preconditioning (IPC). However, to date, it is unknown whether PKC isoforms translocate in anesthetic preconditioning (APC).
Methods:
The PKC blockers chelerythrine and rottlerin and the adenosine triphosphate-dependent potassium (K(ATP)) channel blockers HMR-1098 and 5-hydroxydecanoate were used to assess the role of PKC and K(ATP) channels in isolated perfused rat hearts subjected to IPC or APC (1.5 minimum alveolar concentration isoflurane) followed by 40 min of ischemia and 30 min of reperfusion. Immunohistochemical techniques were used to visualize PKC translocation after preconditioning. In addition, the phosphorylation status of PKC isoforms was assessed.
Results:
Chelerythrine, rottlerin, and 5-hydroxydecanoate blocked IPC and APC with respect to functional recovery, albeit IPC at higher concentrations. HMR-1098 did not affect IPC or APC. PKCdelta and PKCepsilon translocated to nuclei in both IPC and APC, which was inhibited by chelerythrine and rottlerin. PKCdelta translocated to mitochondria but not to the sarcolemma, and PKCepsilon translocated to the sarcolemma and intercalated disks but not to mitochondria. Interestingly, PKCepsilon was accumulated at the intercalated disks in control and preconditioned hearts. Phosphorylation of PKCdelta on serine643 was increased in IPC and APC and blocked by chelerythrine and rottlerin, whereas phosphorylation of PKCdelta on threonine505 was increased only in IPC and not blocked by chelerythrine or rottlerin. PKCepsilon on serine729 did not change its phosphorylation status.
Conclusions:
This study indicates that translocation of PKCdelta plays a pivotal role in IPC and APC and suggests that phosphorylation of PKCdelta on serine643 may be of particular relevance in transferring the APC stimulus to mitochondrial K(ATP) channels.
Insights
Anesthetic preconditioning (APC) and ischemic preconditioning (IPC) both involve protein kinase C (PKC) translocation. PKCdelta translocation is crucial for APC, potentially linking to mitochondrial K(ATP) channels.
Area of Science:
- Cardiology
- Cellular Signaling
- Anesthesiology
Background:
- Protein kinase C (PKC) translocation is key in ischemic preconditioning (IPC).
- The role of PKC isoform translocation in anesthetic preconditioning (APC) remains uninvestigated.
Purpose of the Study:
- To investigate PKC isoform translocation in both IPC and APC.
- To determine the role of PKC and K(ATP) channels in APC and IPC.
Main Methods:
- Isolated perfused rat hearts underwent IPC or APC (1.5 MAC isoflurane).
- PKC blockers (chelerythrine, rottlerin) and K(ATP) channel blockers (HMR-1098, 5-hydroxydecanoate) were used.
- Immunohistochemistry and Western blotting assessed PKC translocation and phosphorylation.
Main Results:
- PKC blockers and 5-hydroxydecanoate impaired functional recovery in both IPC and APC.
- PKCdelta and PKCepsilon translocated to nuclei in both IPC and APC.
- PKCdelta translocated to mitochondria, while PKCepsilon localized to sarcolemma and intercalated disks.
Conclusions:
- PKCdelta translocation is pivotal in both IPC and APC.
- Phosphorylation of PKCdelta on serine643 may mediate APC signaling to mitochondrial K(ATP) channels.
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