535 results on '"Nechushtai, Rachel"'
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2. Redox-dependent gating of VDAC by mitoNEET
3. An anti-diabetic drug targets NEET (CISD) proteins through destabilization of their [2Fe-2S] clusters
4. Structure of the human monomeric NEET protein MiNT and its role in regulating iron and reactive oxygen species in cancer cells
5. CISD3/MiNT is required for complex I function, mitochondrial integrity, and skeletal muscle maintenance
6. The two redox states of the human NEET proteins’ [2Fe–2S] clusters
7. Cryo-EM photosystem I structure reveals adaptation mechanisms to extreme high light in Chlorella ohadii
8. Spatially Localized Entropy-Driven Evolution of Nucleic Acid-Based Constitutional Dynamic Networks for Intracellular Imaging and Spatiotemporal Programmable Gene Therapy.
9. Integration of photocatalytic and dark-operating catalytic biomimetic transformations through DNA-based constitutional dynamic networks
10. The Fe-S cluster-containing NEET proteins mitoNEET and NAF-1 as chemotherapeutic targets in breast cancer
11. NEET proteins as novel drug targets for mitochondrial dysfunction
12. Contributors
13. The cisd gene family regulates physiological germline apoptosis through ced-13 and the canonical cell death pathway in Caenorhabditis elegans
14. Predictions of the Poses and Affinity of a Ligand over the Entire Surface of a NEET Protein: The Case of Human MitoNEET
15. CISD3 is required for Complex I function, mitochondrial integrity, and skeletal muscle maintenance
16. Stiffness‐Switchable, Biocatalytic pH‐Responsive DNA‐Functionalized Polyacrylamide Cryogels and their Mechanical Applications.
17. CISD3 is required for Complex I function, mitochondrial integrity, and skeletal muscle maintenance
18. The unique fold and lability of the [2Fe-2S] clusters of NEET proteins mediate their key functions in health and disease
19. The Precursor of PsaD Assembles into the Photosystem I Complex in Two Steps
20. Breast cancer tumorigenicity is dependent on high expression levels of NAF-1 and the lability of its Fe-S clusters
21. Metadynamics simulations of ligands binding to protein surfaces: a novel tool for rational drug design
22. Aptamer-Functionalized Ce4+-Ion-Modified C-Dots: Peroxidase Mimicking Aptananozymes for the Oxidation of Dopamine and Cytotoxic Effects toward Cancer Cells
23. Structure-Based Screening Reveals a Ligand That Stabilizes the [2Fe-2S] Clusters of Human mitoNEET and Reduces Ovarian Cancer Cell Proliferation
24. DNA‐Tetrahedra Corona‐Modified Hydrogel Microcapsules: “Smart” ATP‐ or microRNA‐Responsive Drug Carriers
25. Aptamer-Modified Au Nanoparticles: Functional Nanozyme Bioreactors for Cascaded Catalysis and Catalysts for Chemodynamic Treatment of Cancer Cells
26. Predictions of the poses and affinity of a ligand over the entire surface of a NEET protein: the case of human mitoNEET
27. Integrated strategy reveals the protein interface between cancer targets Bcl-2 and NAF-1
28. Visualization of Molecular Permeation into a Multi-compartment Phospholipid Vesicle.
29. The Assembly of Photosystem I Reducing Site
30. The Cluster Transfer Function of AtNEET Supports the Ferredoxin–Thioredoxin Network of Plant Cells
31. NAF-1 and mitoNEET are central to human breast cancer proliferation by maintaining mitochondrial homeostasis and promoting tumor growth
32. Allosteric control in a metalloprotein dramatically alters function
33. Characterization of Arabidopsis NEET Reveals an Ancient Role for NEET Proteins in Iron Metabolism
34. Peptide Permeation across a Phosphocholine Membrane: An Atomically Detailed Mechanism Determined through Simulations and Supported by Experimentation
35. Single-Stranded DNA-Encoded Gold Nanoparticle Clusters as Programmable Enzyme Equivalents
36. Facile transfer of [2Fe-2S] clusters from the diabetes drug target mitoNEET to an apo-acceptor protein
37. Allostery in the ferredoxin protein motif does not involve a conformational switch
38. Structure-Based Screening Reveals a Ligand That Stabilizes the [2Fe-2S] Clusters of Human mitoNEET and Reduces Ovarian Cancer Cell Proliferation
39. Introduction to Photosystem I: Reaction Center Function, Composition and Structure
40. A VDAC1-mediated NEET protein chain transfers [2Fe-2S] clusters between the mitochondria and the cytosol and impacts mitochondrial dynamics
41. The [2Fe‐2S] protein CISD2 plays a key role in preventing iron accumulation in cardiomyocytes
42. miRNA-Guided Imaging and Photodynamic Therapy Treatment of Cancer Cells Using Zn(II)-Protoporphyrin IX-Loaded Metal–Organic Framework Nanoparticles
43. Topologically switchable and gated transcription machinery
44. Biocatalytic cascades and intercommunicated biocatalytic cascades in microcapsule systems
45. A peptide-derived strategy for specifically targeting the mitochondria and ER of cancer cells: a new approach in fighting cancer
46. Photosynthetic reaction center-functionalized electrodes for photo-bioelectrochemical cells
47. Aptamer-Functionalized Ce4+-Ion-Modified C‑Dots: Peroxidase Mimicking Aptananozymes for the Oxidation of Dopamine and Cytotoxic Effects toward Cancer Cells.
48. Photosystem I Reaction Center of Mastigocladus Laminosus: Structural and Functional Aspects
49. The Biogenesis and Assemly of the Major Antenna Complex of Photosystem II (LHCIIb) in Barley
50. Disrupting CISD2 function in cancer cells primarily impacts mitochondrial labile iron levels and triggers TXNIP expression
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