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21 results on '"Kudryashova KS"'

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1. Construction of Promoter Elements for Strong, Moderate, and Weak Gene Expression in Drosophila melanogaster .

2. Bioengineered System for High Throughput Screening of Kv1 Ion Channel Blockers.

3. Targeting immune dysfunction in aging.

4. Chimeras of KcsA and Kv1 as a bioengineering tool to study voltage-gated potassium channels and their ligands.

5. N-Terminal Tagging with GFP Enhances Selectivity of Agitoxin 2 to Kv1.3-Channel Binding Site.

6. Aging Biomarkers: From Functional Tests to Multi-Omics Approaches.

7. Voltage-dependent activation in EAG channels follows a ligand-receptor rather than a mechanical-lever mechanism.

8. K V 1.2 channel-specific blocker from Mesobuthus eupeus scorpion venom: Structural basis of selectivity.

9. Complexes of Peptide Blockers with Kv1.6 Pore Domain: Molecular Modeling and Studies with KcsA-Kv1.6 Channel.

10. Stabilization of Nucleosomes by Histone Tails and by FACT Revealed by spFRET Microscopy.

11. Unfolding of core nucleosomes by PARP-1 revealed by spFRET microscopy.

12. Large-scale ATP-independent nucleosome unfolding by a histone chaperone.

13. Peptides from puff adder Bitis arietans venom, novel inhibitors of nicotinic acetylcholine receptors.

14. Fluorescent protein-scorpion toxin chimera is a convenient molecular tool for studies of potassium channels.

15. Variability of Potassium Channel Blockers in Mesobuthus eupeus Scorpion Venom with Focus on Kv1.1: AN INTEGRATED TRANSCRIPTOMIC AND PROTEOMIC STUDY.

16. Preparation of mononucleosomal templates for analysis of transcription with RNA polymerase using spFRET.

17. Vietnamese Heterometrus laoticus scorpion venom: evidence for analgesic and anti-inflammatory activity and isolation of new polypeptide toxin acting on Kv1.3 potassium channel.

18. The effects of confluency on cell mechanical properties.

19. Fluorescent system based on bacterial expression of hybrid KcsA channels designed for Kv1.3 ligand screening and study.

21. N-terminal moiety of Antimicrobial peptide Ltc1-k increases its toxicity for eukaryotic cells.

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