56 results on '"Adak, Subrata"'
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2. The Role of Hemeproteins in Different Life Cycle Stages of Leishmania
3. The ChaC family of γ-glutamyl cyclotransferases is required for Leishmania to switch to a slow growth state and for long-term survival of the parasite
4. Glyceraldehyde-3-phosphate dehydrogenase present in extracellular vesicles from Leishmania major suppresses host TNF-alpha expression
5. Oxidative and Nitrosative Stress Response in Leishmania
6. Structure-function relationship in leishmanial globin coupled soluble adenylate cyclase
7. Regulation of Leishmania major PAS domain‐containing phosphoglycerate kinase by cofactor Mg 2+ ion at neutral pH
8. PAS domain-containing phosphoglycerate kinase deficiency in Leishmania major results in increased autophagosome formation and cell death
9. Loss of virulence in NAD(P)H cytochrome b5 oxidoreductase deficient Leishmania major
10. Control of catalysis in globin coupled adenylate cyclase by a globin-B domain
11. Endoplasmic reticulum stress responses in Leishmania
12. The ferrous–dioxy complex of Leishmania major globin coupled heme containing adenylate cyclase: The role of proximal histidine on its stability
13. Identification of Proximal and Distal Axial Ligands in Leishmania major Pseudoperoxidase
14. Effect of distal His mutation on the peroxynitrite reactivity of Leishmania major peroxidase
15. Globin-coupled heme containing oxygen sensor soluble adenylate cyclase in Leishmania prevents cell death during hypoxia
16. Ascorbate Peroxidase Acts As a Novel Determiner of Redox Homeostasis inLeishmania
17. Mutation of Val90 to His in the pseudoperoxidase from Leishmania major enhances peroxidase activity
18. Protection against peroxynitrite by pseudoperoxidase from Leishmania major
19. NAD(P)H Cytochrome b5 Oxidoreductase Deficiency in Leishmania major Results in Impaired Linoleate Synthesis Followed by Increased Oxidative Stress and Cell Death
20. Role of K+ binding residues in stabilization of heme spin state of Leishmania major peroxidase
21. Role of proximal methionine residues in Leishmania major peroxidase
22. Endoplasmic Reticulum Stress-induced Apoptosis in Leishmania through Ca2+-dependent and Caspase-independent Mechanism
23. Ascorbate Peroxidase from Leishmania major Controls the Virulence of Infective Stage of Promastigotes by Regulating Oxidative Stress
24. Role of C-terminal acidic cluster in stabilization of heme spin state of ascorbate peroxidase from Leishmania major
25. Overexpression of Mitochondrial Leishmania major Ascorbate Peroxidase Enhances Tolerance to Oxidative Stress-Induced Programmed Cell Death and Protein Damage
26. Leishmania major ascorbate peroxidase overexpression protects cells against reactive oxygen species-mediated cardiolipin oxidation
27. Chenopodium album seed extract-induced sperm cell death: exploration of a plausible pathway
28. Role of tryptophan-208 residue in cytochrome c oxidation by ascorbate peroxidase from Leishmania major-kinetic studies on Trp208Phe mutant and wild type enzyme
29. Effect of thiocyanate on the peroxidase and pseudocatalase activities of Leishmania major ascorbate peroxidase
30. Homology-model-guided site-specific mutagenesis reveals the mechanisms of substrate binding and product-regulation of adenosine kinase from Leishmania donovani
31. Leishmania major encodes an unusual peroxidase that is a close homologue of plant ascorbate peroxidase: a novel role of the transmembrane domain
32. Mutational analysis of the active-site residues crucial for catalytic activity of adenosine kinase from Leishmania donovani
33. Update on Mechanism and Catalytic Regulation in the NO Synthases
34. A Conserved Aspartate (Asp-1393) Regulates NADPH Reduction of Neuronal Nitric-oxide Synthase
35. Distinct Influence of N-terminal Elements on Neuronal Nitric-oxide Synthase Structure and Catalysis
36. Spectroscopic Characterization of Five- and Six-Coordinate Ferrous−NO Heme Complexes. Evidence for Heme Fe−Proximal Cysteinate Bond Cleavage in the Ferrous−NO Adducts of the Trp-409Tyr/Phe Proximal Environment Mutants of Neuronal Nitric Oxide Synthase
37. Structure of a Nitric Oxide Synthase Heme Protein from Bacillus subtilis,
38. Direct Evidence for Nitric Oxide Production by a Nitric-oxide Synthase-like Protein from Bacillus subtilis
39. Cloning, expression, and characterization of a nitric oxide synthase protein from Deinococcus radiodurans
40. Regulation of the Properties of the Heme-NO Complexes in Nitric-oxide Synthase by Hydrogen Bonding to the Proximal Cysteine
41. Chimeras of Nitric-oxide Synthase Types I and III Establish Fundamental Correlates between Heme Reduction, Heme-NO Complex Formation, and Catalytic Activity
42. A proximal tryptophan in NO synthase controls activity by a novel mechanism
43. Neuronal Nitric-oxide Synthase Mutant (Ser-1412 → Asp) Demonstrates Surprising Connections between Heme Reduction, NO Complex Formation, and Catalysis
44. A Kinetic Simulation Model That Describes Catalysis and Regulation in Nitric-oxide Synthase
45. Arginine Conversion to Nitroxide by Tetrahydrobiopterin-free Neuronal Nitric-oxide Synthase
46. Molecular Basis for Hyperactivity in Tryptophan 409 Mutants of Neuronal NO Synthase
47. Tryptophan 409 Controls the Activity of Neuronal Nitric-oxide Synthase by Regulating Nitric Oxide Feedback Inhibition
48. Mutational Analysis of the Tetrahydrobiopterin-binding Site in Inducible Nitric-oxide Synthase
49. Role of Reductase Domain Cluster 1 Acidic Residues in Neuronal Nitric-oxide Synthase
50. Mechanism of Horseradish Peroxidase Catalyzed Epinephrine Oxidation: Obligatory Role of Endogenous O2- and H2O2
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