20 results on '"Zinovkin R"'
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2. Mitochondria in cell differentiation and programmed cell death: mitochondria-targeted antioxidant SkQ1 stimulates wound healing: SW03.S14–13
3. Mitochondria-targeted compounds decrease TNF-α-dependent endothelium activation: SW03.S13–117
4. Mitochondria-targeted antioxidants prevent TNFalpha-induced endothelial cell apoptosis: SW03.S13–54
5. Whether DNA alone may activate neutrophils and endothelial cells?: SW03.S13–55
6. Prospects for Drugs Based on the Mitochondria-Targeting Antioxidant SkQ1 in Treatment of Wounds with Impaired Healing
7. Synthetic Analogue of Leu-Enkephalin Prevents Endothelial Dysfunction in vitro
8. Age-associated murine cardiac lesions are attenuated by the mitochondria-targeted antioxidant SkQ1
9. Influence of the hepatitis C virus 3′-untranslated region on IRES-dependent and cap-dependent translation initiation
10. Mitochondrial and Nuclear DNA in Patients with Severe Polytrauma
11. Application of fluorescent protein ATeam for ATP level measurements in living bacteria
12. The effect of mutations γM23K and βL249Q on ADP-inhibition of H+-FOF1-ATP-synthase in Escherichia coli
13. Cell-to-cell movement of potato virus X involves distinct functions of the coat protein
14. The minor coat protein of beet yellows closterovirus encapsidates the 5' terminus of RNA in virions.
15. The beet yellows closterovirus p65 homologue of HSP70 chaperones has ATPase activity associated with its conserved N-terminal domain but does not interact with unfolded protein chains.
16. The effect of mutations γM23K and βL249Q on ADP-inhibition of H+-FOF1-ATP-synthase in Escherichia coli
17. Analysis of genes regulated by DUX4 via oxidative stress reveals potential therapeutic targets for treatment of facioscapulohumeral dystrophy.
18. Mitochondrial permeability transition pore is involved in oxidative burst and NETosis of human neutrophils.
19. The 5' untranslated region of Apaf-1 mRNA directs translation under apoptosis conditions via a 5' end-dependent scanning mechanism.
20. Detection of beet yellows closterovirus methyltransferase-like and helicase-like proteins in vivo using monoclonal antibodies.
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