Brain Protein Expression Profile Confirms the Protective Effect of the ACTH(4-7)PGP Peptide (Semax) in a Rat Model of Cerebral Ischemia-Reperfusion.
Olga Yu SudarkinaIvan B FilippenkovVasily V StavchanskyAlina E DenisovaVadim V YuzhakovLarisa E Sevan'kaevaLiya V ValievaJulia A RemizovaVeronika G DmitrievaLeonid V GubskyNikolai F MyasoedovSvetlana A LimborskaLyudmila V DergunovaPublished in: International journal of molecular sciences (2021)
The Semax (Met-Glu-His-Phe-Pro-Gly-Pro) peptide is a synthetic melanocortin derivative that is used in the treatment of ischemic stroke. Previously, studies of the molecular mechanisms underlying the actions of Semax using models of cerebral ischemia in rats showed that the peptide enhanced the transcription of neurotrophins and their receptors and modulated the expression of genes involved in the immune response. A genome-wide RNA-Seq analysis revealed that, in the rat transient middle cerebral artery occlusion (tMCAO) model, Semax suppressed the expression of inflammatory genes and activated the expression of neurotransmitter genes. Here, we aimed to evaluate the effect of Semax in this model via the brain expression profiling of key proteins involved in inflammation and cell death processes (MMP-9, c-Fos, and JNK), as well as neuroprotection and recovery (CREB) in stroke. At 24 h after tMCAO, we observed the upregulation of active CREB in subcortical structures, including the focus of the ischemic damage; downregulation of MMP-9 and c-Fos in the adjacent frontoparietal cortex; and downregulation of active JNK in both tissues under the action of Semax. Moreover, a regulatory network was constructed. In conclusion, the suppression of inflammatory and cell death processes and the activation of recovery may contribute to the neuroprotective action of Semax at both the transcriptome and protein levels.
Keyphrases
- cerebral ischemia
- cell death
- genome wide
- subarachnoid hemorrhage
- rna seq
- poor prognosis
- blood brain barrier
- brain injury
- single cell
- oxidative stress
- signaling pathway
- middle cerebral artery
- dna methylation
- immune response
- cell proliferation
- gene expression
- binding protein
- transcription factor
- long non coding rna
- copy number
- atrial fibrillation
- cell cycle arrest
- genome wide identification
- inflammatory response
- functional connectivity
- high resolution
- cell migration
- smoking cessation
- protein protein
- pi k akt
- ischemia reperfusion injury
- combination therapy
- multiple sclerosis