45 results on '"Sedláček, Vojtěch"'
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2. Figure 3 from: Novák P, Kalníková V, Szokala D, Aleksanyan A, Batsatsashvili K, Fayvush G, Kolbaia S, Nakhutsrishvili G, Sedláček V, Štěrba T, Zukal D (2023) Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus. Vegetation Classification and Survey 4: 231-240. https://doi.org/10.3897/VCS.105521
3. Figure 1 from: Novák P, Kalníková V, Szokala D, Aleksanyan A, Batsatsashvili K, Fayvush G, Kolbaia S, Nakhutsrishvili G, Sedláček V, Štěrba T, Zukal D (2023) Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus. Vegetation Classification and Survey 4: 231-240. https://doi.org/10.3897/VCS.105521
4. Figure 4 from: Novák P, Kalníková V, Szokala D, Aleksanyan A, Batsatsashvili K, Fayvush G, Kolbaia S, Nakhutsrishvili G, Sedláček V, Štěrba T, Zukal D (2023) Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus. Vegetation Classification and Survey 4: 231-240. https://doi.org/10.3897/VCS.105521
5. Figure 5 from: Novák P, Kalníková V, Szokala D, Aleksanyan A, Batsatsashvili K, Fayvush G, Kolbaia S, Nakhutsrishvili G, Sedláček V, Štěrba T, Zukal D (2023) Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus. Vegetation Classification and Survey 4: 231-240. https://doi.org/10.3897/VCS.105521
6. Figure 6 from: Novák P, Kalníková V, Szokala D, Aleksanyan A, Batsatsashvili K, Fayvush G, Kolbaia S, Nakhutsrishvili G, Sedláček V, Štěrba T, Zukal D (2023) Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus. Vegetation Classification and Survey 4: 231-240. https://doi.org/10.3897/VCS.105521
7. Figure 2 from: Novák P, Kalníková V, Szokala D, Aleksanyan A, Batsatsashvili K, Fayvush G, Kolbaia S, Nakhutsrishvili G, Sedláček V, Štěrba T, Zukal D (2023) Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus. Vegetation Classification and Survey 4: 231-240. https://doi.org/10.3897/VCS.105521
8. Transcaucasian Vegetation Database – a phytosociological database of the Southern Caucasus
9. Structural Insight into Catalysis by the Flavin-Dependent NADH Oxidase (Pden_5119) of Paracoccus denitrificans
10. Proteomic responses to a methyl viologen-induced oxidative stress in the wild type and FerB mutant strains of Paracoccus denitrificans
11. An Enzymatic Method for Methanol Quantification in Methanol/Ethanol Mixtures with a Microtiter Plate Fluorometer
12. The ArsH Protein Product of the Paracoccus denitrificans ars Operon Has an Activity of Organoarsenic Reductase and Is Regulated by a Redox-Responsive Repressor
13. Policy analysis outsourcing
14. The liability of the carrier in international carriage by air and road
15. Alluvial alder forests of the Greater Caucasus, Georgia: ecology, habitats and variability.
16. The flavoprotein FerB of Paracoccus denitrificans binds to membranes, reduces ubiquinone and superoxide, and acts as an in vivo antioxidant
17. Aktuální trendy v řízení vztahů se zákazníky
18. Chromate reductase activity of the Paracoccus denitrificans ferric reductase B (FerB) protein and its physiological relevance
19. The use of sensory rehabilitation gloves in patients with impaired motor skills of the hand
20. Involvement of the cbb3-Type Terminal Oxidase in Growth Competition of Bacteria, Biofilm Formation, and in Switching between Denitrification and Aerobic Respiration
21. Modifications of the Aerobic Respiratory Chain of Paracoccus Denitrificans in Response to Superoxide Oxidative Stress
22. Isolation and biochemical characterization of two soluble iron(III) reductases from Paracoccus denitrificans
23. Topical issues of the regulation of international carriage
24. Functional and mechanistic characterization of an atypical flavin reductase encoded by the pden_5119 gene in Paracoccus denitrificans
25. Arginine‐95 is important for recruiting superoxide to the active site of the FerB flavoenzyme ofParacoccus denitrificans
26. Proteome-wide dataset generated by iTRAQ-3DLCMS/MS technique for studying the role of FerB protein in oxidative stress in Paracoccus denitrificans
27. Arginine‐95 is important for recruiting superoxide to the active site of the FerB flavoenzyme of Paracoccus denitrificans.
28. An Enzymatic Method for Methanol Quantification in Methanol/Ethanol Mixtures with a Microtiter Plate Fluorometer
29. Biochemical properties and crystal structure of the flavin reductase FerA from Paracoccus denitrificans
30. User Experience s využitím technologie Adobe Flex
31. Tvorba interaktivních Flash animací s využitím XML
32. The Google phenomenon
33. Strategic management of the central government level
34. The Structural and Functional Basis of Catalysis Mediated by NAD(P)H:acceptor Oxidoreductase (FerB) of Paracoccus denitrificans
35. Passive defense in somatic embryos of Abies alba from two cell lines tested with Phaeolus schweinitzii
36. Crystallization and initial X-ray diffraction studies of the flavoenzyme NAD(P)H:(acceptor) oxidoreductase (FerB) from the soil bacteriumParacoccus denitrificans
37. Heterologous expression and molecular characterization of the NAD(P)H:acceptor oxidoreductase (FerB) of Paracoccus denitrificans
38. Capillary zone electrophoresis with field enhanced sample stacking as a tool for targeted metabolome analysis of adenine nucleotides and coenzymes in Paracoccus denitrificans
39. Ferric reductase A is essential for effective iron acquisition in Paracoccus denitrificans
40. Characterization of the quinone reductase activity of the ferric reductase B protein from Paracoccus denitrificans
41. The Structural and Functional Basis of Catalysis Mediated by NAD(P)H:acceptor Oxidoreductase (FerB) of Paracoccus denitrificans.
42. The Structural and Functional Basis of Catalysis Mediated by NAD(P)H:acceptor Oxidoreductase (FerB) of Paracoccus denitrificans.
43. Crystallization and initial X-ray diffraction studies of the flavoenzyme NAD(P)H:(acceptor) oxidoreductase (FerB) from the soil bacterium Paracoccus denitrificans.
44. The unemployment in Teplice region
45. Involvement of the cbb 3 -Type Terminal Oxidase in Growth Competition of Bacteria, Biofilm Formation, and in Switching between Denitrification and Aerobic Respiration.
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