Search

Your search keyword '"Colin H. Lipper"' showing total 19 results

Search Constraints

Start Over You searched for: Author "Colin H. Lipper" Remove constraint Author: "Colin H. Lipper"
19 results on '"Colin H. Lipper"'

Search Results

1. DNA binding analysis of rare variants in homeodomains reveals homeodomain specificity-determining residues

2. Tethered agonist activated ADGRF1 structure and signalling analysis reveal basis for G protein coupling

3. Structural Basis for Selective Proteolysis of ADAM10 Substrates at Membrane-Proximal Sites

4. Tethered agonist activated ADGRF1 structure reveals molecular preference for Gαq signalling

5. Cancer-Related NEET Proteins Transfer 2Fe-2S Clusters to Anamorsin, a Protein Required for Cytosolic Iron-Sulfur Cluster Biogenesis.

6. Design of High-Affinity Metal-Controlled Protein Dimers

8. IER5, a DNA damage response gene, is required for Notch-mediated induction of squamous cell differentiation

9. Redox-dependent gating of VDAC by mitoNEET

10. The Fe-S cluster-containing NEET proteins mitoNEET and NAF-1 as chemotherapeutic targets in breast cancer

11. Structure of the human monomeric NEET protein MiNT and its role in regulating iron and reactive oxygen species in cancer cells

12. Molecular Dynamics Simulations of the [2Fe-2S] Cluster-Binding Domain of NEET Proteins Reveal Key Molecular Determinants That Induce Their Cluster Transfer/Release

13. Integrated strategy reveals the protein interface between cancer targets Bcl-2 and NAF-1

14. The NEET Proteins Mediate Iron-Sulfur Cluster Transport from the Mitochondria to Cytosolic Proteins

15. Structure-function analysis of NEET proteins uncovers their role as key regulators of iron and ROS homeostasis in health and disease

16. A point mutation in the [2Fe-2S] cluster binding region of the NAF-1 protein (H114C) dramatically hinders the cluster donor properties

17. Nutrient-deprivation autophagy factor-1 (NAF-1): biochemical properties of a novel cellular target for anti-diabetic drugs

18. IER5, a DNA damage response gene, is required for Notch-mediated induction of squamous cell differentiation

19. Nutrient-deprivation autophagy factor-1 (NAF-1): biochemical properties of a novel cellular target for anti-diabetic drugs.

Catalog

Books, media, physical & digital resources