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1. New Data from Wenzhou Vocational College of Science and Technology Illuminate Research in Nonheme Iron Proteins (Physiological, Biochemical, and Ultrastructural Changes in Naturally Aged Sweet Corn Seeds)

2. Study Findings from Philadelphia College of Osteopathic Medicine Provide New Insights into Ferredoxins (Temperature-dependent iron motion in extremophile rubredoxins - no need for 'corresponding states')

3. Research from Qassim University Provides New Data on Nonheme Iron Proteins [In-vitro antioxidant, lipoxygenase inhibitory, and in-vivo muscle relaxant potential of the extract and constituent isolated from Diospyros kaki (Japanese Persimmon)]

4. Recent Findings from Konkuk University Has Provided New Information about Nonheme Iron Proteins (Biotransformation of C20-and C22-polyunsaturated Fatty Acids and Fish Oil Hydrolyzates To r,r-dihydroxy Fatty Acids As

5. New Findings from Fujian Agricultural and Forestry University Describe Advances in Plant Proteins (Rice Ferredoxin Osfd4 Contributes To Oxidative Stress Tolerance but Compromises Defense Against Blight Bacteria)

7. New Findings Reported from Autonomous University Barcelona Describe Advances in Nonheme Iron Proteins (Theoretical Study of the Arachidonic Acid Conversion Into Leukotriene A4 Catalyzed By Human 5-lipoxygenase: Hydroperoxidation an

8. Reports Summarize Nonheme Iron Proteins Study Results from Islamic Azad University [Phylogenetic Analysis and Lipoxygenase (LOX) Gene Family Variation in The Pistachio]

10. New Nonheme Iron Proteins Study Results Reported from Shandong University of Traditional Chinese Medicine (Genome-Wide Identification, Characterization and Expression Analysis of * * Lipoxygenase* * Gene Family in * * Artemisia annua* * L)

11. Researchers at Konkuk University Have Reported New Data on Nonheme Iron Proteins (Biotransformation of Polyunsaturated Fatty Acids To Trioxilins By Lipoxygenase From Pleurotus Sajor-caju)

12. Reports from University of Wisconsin Add New Data to Findings in Nonheme Iron Proteins (A Toxoplasma Gondii Lipoxygenase-like Enzyme Is Necessary for Virulence and Changes Localization Associated With the Host Immune Response)

13. New Findings from Charite - University Medicine Berlin Describe Advances in Nonheme Iron Proteins (Bony Fish Arachidonic Acid 15-Lipoxygenases Exhibit Different Catalytic Properties than Their Mammalian Orthologs, Suggesting Functional Enzyme ...)

14. Data on Nonheme Iron Proteins Described by Researchers at Nanjing University of Finance and Economics (Effect On Lipoxygenase Pathway and Flavor Stabilization of Postharvest Strawberries By Intense Pulsed Light Treatment)

16. Reports Outline Nonheme Iron Proteins Study Findings from University of Lille (Acsl4 and the Lipoxygenases 15/15b Are Pivotal for Ferroptosis Induced By Iron and Pufa Dyshomeostasis In Dopaminergic Neurons)

17. Researchers from California State University Long Beach Detail Findings in Nonheme Iron Proteins (Inositol in Disease and Development: Roles of Catabolism via * * myo* * -Inositol Oxygenase in * * Drosophila melanogaster* *)

18. Study Results from Qingdao Municipal Hospital Broaden Understanding of Nonheme Iron Proteins (Polyunsaturated Fatty Acid Diet and Upregulation of Lipoxin A4 Reduce the Inflammatory Response of Preeclampsia)

19. Research from Kobe University Graduate School of Medicine Yields New Findings on Nonheme Iron Proteins (The PDK1-FoxO1 signaling in adipocytes controls systemic insulin sensitivity through the 5-lipoxygenase-leukotriene B4 axis)

20. Bursa Uludag University Reports Findings in Nonheme Iron Proteins (Modulation of arachidonic acid-evoked cardiorespiratory effects by the central lipoxygenase pathway)

21. Findings in the Area of Structural Biology Reported from University of Wisconsin Madison (2mISCU interacts with NFU1, and ISCU[4Fe-4S] transfers its Fe-S cluster to NFU1 leading to the production of holo-NFU1)

22. Research Study Findings from Sao Paulo State University (UNESP) Update Understanding of Nonheme Iron Proteins [Genome-Wide Analysis of Lipoxygenase (LOX) Genes in Angiosperms]

23. Study Data from National Academy of Sciences Update Understanding of Tuberculosis (Structural insights into 3Fe-4S ferredoxins diversity in M. tuberculosis highlighted by a first redox complex with P450)

24. Research from Anhui Medical University Broadens Understanding of Nonheme Iron Proteins (The rational design of iron-sulfur cluster binding site for prolonged stability in magnetoreceptor MagR)

25. Study Results from Konkuk University in the Area of Nonheme Iron Proteins Reported (Characterization of Arachidonate 5s-lipoxygenase From Danio Rerio With High Activity for the Production of 5s- and 7s-hydroxy Polyunsaturated Fatty Acids)

26. Universita Cattolica del Sacro Cuore Researchers Publish Findings in Nonheme Iron Proteins (Functional Study of Lipoxygenase-Mediated Resistance against * * Fusarium verticillioides* * and * * Aspergillus flavus* * Infection in Maize)

27. Studies from Osaka University Yield New Data on Plant Proteins (Toward Elucidation of the Photosynthetic Electron Transfer Mechanism)

28. Recent Research from Orta Dogu Tekn University Highlight Findings in Nonheme Iron Proteins (Structural and Functional Evaluation Mammalian and Plant Lipoxygenases Upon Association With Nanodics As Membrane Mimetics)

29. Investigators at University of the Punjab Report New Data on Iron-Binding Proteins (Analysis of changes in hepatic gene expression and tissue architecture of heart and kidney in association with diet-induced obesity in Rattus norvegicus)

30. Shandong Agricultural University Researchers Update Knowledge of Nonheme Iron Proteins (The Apple Lipoxygenase * * MdLOX3* * Regulates Salt Tolerance and ABA Sensitivity)

32. Findings from School of Chemistry and Chemical Engineering Has Provided New Data on Nonheme Iron Proteins [Models for Lipoxygenase With Two Alkoxide-fe(Iii) Centers: Synthesis, Structures, and Properties]

33. Study Data from Fujian Agriculture and Forestry University Update Understanding of Nonheme Iron Proteins [Genome-wide identification and characterization of the abiotic-stress-responsive lipoxygenase gene family in diploid woodland strawberry ...]

34. Reports from Department of Pharmacognosy Provide New Insights into Nonheme Iron Proteins (Targeting Lipoxygenase Enzyme By Flavonoids From Tadehagi Triquetrum: a Combined In Silico and In Vitro Approach)

35. Iron supply determines apical/basolateral membrane distribution of intestinal iron transporters DMT1 and ferroportin 1

36. Roles of agrobacterium tumefaciens RirA in iron regulation, oxidative stress response, and virulence

37. Immune evasion by Staphylococcus aureus conferred by iron-regulated surface determinant protein IsdH

38. RstA-promoted expression of the ferrous iron transporter FeoB under iron-replete conditions enhances fur activity in Salmonella enterica

39. Defective trafficking and localization of mutated transferrin receptor 2: implications for type 3 hereditary hemochromatosis

40. Iron-dependent RNA-binding activity of Mycobacterium tuberculosis aconitase

41. Separation and determination of iron-containing proteins via liquid chromatography--particle beam/hollow cathode--optical emission spectroscopy

42. A novel protein, TtpC, is a required component of the TonB2 complex for specific iron transport in the pathogens Vibrio anguillarum and Vibrio cholerae

43. Reports from Temple University Highlight Recent Findings in Nonheme Iron Proteins (The direct role of 5-lipoxygenase on tau pathology, synaptic integrity and cognition in a mouse model of tauopathy)

45. Modulation of iron transport proteins in human colorectal carcinogenesis

46. Distinct requirements for Hfe in basal and induced hepcidin levels in iron overload and inflammation

47. Monomeric yeast frataxin is an iron-binding protein

48. New Nonheme Iron Proteins Study Results from S. Torii et al Described (Lipoxygenase-mediated generation of lipid peroxides enhances ferroptosis induced by erastin and RSL3)

49. Resolution and reconstitution of a bound Fe-S protein from the photosynthetic reaction center of Heliobacterium modesticaldum

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