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Your search keyword '"Thomson, Andrew"' showing total 17 results

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17 results on '"Thomson, Andrew"'

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1. The Acute Box cis-Element in Human Heavy Ferritin mRNA 5′-Untranslated Region Is a Unique Translation Enhancer That Binds Poly(C)-binding Proteins.

2. The Ubiquitin C-Terminal Hydrolase L1 (UCH-L1) C Terminus Plays a Key Role in Protein Stability, but Its Farnesylation Is Not Required for Membrane Association in Primary Neurons.

3. Redox-dependent Open and Closed Forms of the Active Site of the Bacterial Respiratory Nitric-oxide Reductase Revealed by Cyanide Binding Studies.

4. Mechanism of Oxygen Sensing by the Bacterial Transcription Factor Fumarate-Nitrate Reduction (FNR).

5. Differentiated, Promoter-specific Response of [4Fe-4S] NsrR DNA Binding to Reaction with Nitric Oxide.

6. Three Pseudomonas putida FNR Family Proteins with Different Sensitivities to O2.

7. NsrR from Streptomyces coelicolor Is a Nitric Oxide-sensing [4Fe-4S] Cluster Protein with a Specialized Regulatory Function.

8. Mechanism of [4Fe-4S](Cys)4 Cluster Nitrosylation Is Conserved among NO-responsive Regulators.

9. Subunit Organization in the TatA Complex of the Twin Arginine Protein Translocase.

10. Detection of Sulfide Release from the Oxygen-sensing [4Fe-4S] Cluster of FNR.

11. Evidence That the Streptomyces Developmental Protein WhiD, a Member of the WhiB Family, Binds a [4Fe-4S] Cluster.

12. Characterization of the Shewanella oneidensis MR-1 Decaheme Cytochrome MtrA.

13. The 3'-Untranslated Region of p21 [Sup wap1] mRNa Is a Composite cis-Acting Sequence Bound By RNA-binding Proteins from Breast Cancer Cells, including HuR and Poly(C)-binding Protein.

14. Three Pseudomonas putida FNR Family Proteins with Different Sensitivities to O2.

15. Mechanism of [4Fe-4S](Cys)4 cluster nitrosylation is conserved among NO-responsive regulators.

16. Novel binding of HuR and poly(C)-binding protein to a conserved UC-rich motif within the 3'-untranslated region of the androgen receptor messenger RNA.

17. Spectral properties of bacterial nitric-oxide reductase: resolution of pH-dependent forms of the active site heme b3.

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