Kersti Ehrlich
University of Tartu
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Featured researches published by Kersti Ehrlich.
Free Radical Research | 2007
Kersti Ehrlich; Säde Viirlaid; Riina Mahlapuu; Külliki Saar; Tiiu Kullisaar; Mihkel Zilmer; Ülo Langel; Ursel Soomets
Glutathione (GSH) is the major low-molecular weight antioxidant in mammalian cells. Thus, its analogues carrying similar and/or additional positive properties might have clinical perspectives. Here, we report the design and synthesis of a library of tetrapeptidic GSH analogues called UPF peptides. Compared to cellular GSH our designed peptidic analogues showed remarkably higher hydroxyl radical scavenging ability (EC50 of GSH: 1231.0 ± 311.8 μM; EC50 of UPF peptides: from 0.03 to 35 μM) and improved antiradical efficiency towards a stable α,α-diphenyl-β-picrylhydrazyl (DPPH) radical. The best of UPF peptides was 370-fold effective hydroxyl radical scavengers than melatonin (EC50: 11.4 ± 1.0 μM). We also found that UPF peptides do not influence the viability and membrane integrity of K562 human erythroleukemia cells even at 200 μM concentration. Dimerization of GSH and UPF peptides was compared in water and in 0.9% saline solutions. The results, together with an earlier finding that UPF1 showed protective effects in global cerebral ischemia model in rats, suggest that UPF peptides might serve both as potent antioxidants as well as leads for design of powerful non-peptidic antioxidants that correct oxidative stress-driven events.
Current Alzheimer Research | 2014
Ceslava Kairane; Riina Mahlapuu; Kersti Ehrlich; Mihkel Zilmer; Ursel Soomets
Among the markers and targets of the early phase of Alzheimers disease (AD) pathogenesis MnSOD (mitochondrial dysfunction) and Na-pump (disturbances in function/regulation) are often highlighted. This paper focused on comparison of the effects of three antioxidants on the activity of cerebrocortical MnSOD and Na,K-ATPase from post mortem Alzheimers disease and age-matched normal brains. Antioxidant compounds with different origins: natural glutathione, synthetic UPF peptides (glutathione analogues) and phytoestrogen genistein were investigated. Firstly, MnSOD and Na,K-ATPase activities were found to be decreased in the post mortem AD brains compared with age-matched controls. Secondly, GSH had no effect on MnSOD activity, but decreased Na,K-ATPase activity both in the control and AD brains. Thirdly, UPF1 and UPF17 increased MnSOD activity, and UPF17 suppressed Na,K-ATPase activity. Further studies are needed to clarify, if the inhibitory effect of UPF17 on Na,K-ATPase could abolish the beneficial effect gained from MnSOD activation. Both the antioxidative potential of genistein and its potency to up-regulate Na,K-ATPase activity make it an attractive candidate substance to suppress the early phase of the pathogenesis of AD.
Free Radical Research | 2009
Kersti Ehrlich; Katrin Ida; Riina Mahlapuu; Ceslava Kairane; Ingrid Oit; Mihkel Zilmer; Ursel Soomets
Previously the authors have designed and synthesized a library of antioxidative glutathione analogues called UPF peptides which are superior to glutathione in hydroxyl radical elimination. This paper is a follow-up study which investigated the effects of the most promising members of the library (UPF1 and UPF17) on oxidative stress-related enzymes. At concentrations used in vivo experiments neither UPF peptide influenced the activity of glutathione peroxidase (GPx) when purified enzyme or erythrocyte lysate was used. At higher concentrations they inhibited GPx activity. UPF peptides had no effect on glutathione reductase (GR) activity. Also they, as well as glutathione itself, slightly increased MnSOD activity in human brain mitochondria and inhibited oxidative burst caused by neutrophil NAD(P)H oxidase. RT-PCR measurements showed that UPF1 and UPF17 have no effect on GPx and MnSOD expression level in human blood mononuclear cells. The results of this study confirm that investigated UPF peptides do not interfere with the enzymatic mechanisms of antioxidative defence and can be used as themselves or as a lead for the protector molecule design against excessive oxidative stress.
International Journal of Peptides | 2012
Ceslava Kairane; Riina Mahlapuu; Kersti Ehrlich; Kalle Kilk; Mihkel Zilmer; Ursel Soomets
The main goal of the present paper was to examine the influence of the replacement of γ-Glu moiety to α-Glu in glutathione and in its antioxidative tetrapeptidic analogue UPF1 (Tyr(Me)-γ-Glu-Cys-Gly), resulting in α-GSH and UPF17 (Tyr(Me)-Glu-Cys-Gly), on the antioxidative defense system in K562 cells. UPF1 and GSH increased while UPF17 and α-GSH decreased the activity of CuZnSOD in K562 cells, at peptide concentration of 10 μM by 42% and 38% or 35% and 24%, respectively. After three-hour incubation, UPF1 increased and UPF17 decreased the intracellular level of total GSH. Additionally, it was shown that UPF1 is not degraded by γ-glutamyltranspeptidase, which performs glutathione breakdown. These results indicate that effective antioxidative character of peptides does not depend only on the reactivity of the thiol group, but also of the other functional groups, and on the spatial structure of peptides.
Journal of Physiology and Biochemistry | 2011
Anton Terasmaa; Ursel Soomets; Julia Oflijan; Marite Punapart; Mats Hansen; Vallo Matto; Kersti Ehrlich; Anne Must; Sulev Kõks; Eero Vasar
Electrophoresis | 2006
Merike Vaher; Säde Viirlaid; Kersti Ehrlich; Riina Mahlapuu; Jüri Jarvet; Ursel Soomets; Mihkel Kaljurand
Journal of Peptide Science | 2006
Riina Mahlapuu; Merike Vaher; Kersti Ehrlich; Mihkel Kaljurand; Ursel Soomets
Archive | 2012
Tiiu Kullisaar; Mihkel Zilmer; Ene Tammsaar; Andre Veskioja; Epp Songisepp; Kersti Zilmer; Lauri Bobrovski; Kersti Ehrlich; Merle Rätsep; Margus Punab; Maire Vasar; Marika Mikelsaar
Archive | 2014
Tiiu Kullisaar; Mihkel Zilmer; Ene Tammsaar; Andre Veskioja; Epp Songisepp; Kersti Zilmer; Lauri Bobrovski; Kersti Ehrlich; Merle Rätsep; Margus Punab; Maire Vasar; Marika Mikelsaar
Archive | 2012
Tiiu Kullisaar; Mihkel Zilmer; Ene Tammsaar; Andre Veskioja; Epp Songisepp; Kersti Zilmer; Lauri Bobrovski; Kersti Ehrlich; Merle Rätsep; Margus Punab; Maire Vasar; Marika Mikelsaar