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13 results on '"Li, Xiao-Ping"'

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1. Fragment Screening to Identify Inhibitors Targeting Ribosome Binding of Shiga Toxin 2.

2. Cryo-EM structure of Shiga toxin 2 in complex with the native ribosomal P-stalk reveals residues involved in the binding interaction.

3. Synthesis and Structural Characterization of Ricin Inhibitors Targeting Ribosome Binding Using Fragment-Based Methods and Structure-Based Design.

4. Leucine 232 and hydrophobic residues at the ribosomal P stalk binding site are critical for biological activity of ricin.

5. Peptide Mimics of the Ribosomal P Stalk Inhibit the Activity of Ricin A Chain by Preventing Ribosome Binding.

6. Differences in Ribosome Binding and Sarcin/Ricin Loop Depurination by Shiga and Ricin Holotoxins.

7. Ricin uses arginine 235 as an anchor residue to bind to P-proteins of the ribosomal stalk.

8. Conserved Arginines at the P-Protein Stalk Binding Site and the Active Site Are Critical for Ribosome Interactions of Shiga Toxins but Do Not Contribute to Differences in the Affinity of the A1 Subunits for the Ribosome.

9. Toxicity of ricin A chain is reduced in mammalian cells by inhibiting its interaction with the ribosome.

10. The A1 Subunit of Shiga Toxin 2 Has Higher Affinity for Ribosomes and Higher Catalytic Activity than the A1 Subunit of Shiga Toxin 1.

11. Wild Type RTA and Less Toxic Variants Have Distinct Requirements for Png1 for Their Depurination Activity and Toxicity in Saccharomyces cerevisiae.

12. Functional Assays for Measuring the Catalytic Activity of Ribosome Inactivating Proteins.

13. Intracellular Neutralization of Ricin Toxin by Single-domain Antibodies Targeting the Active Site.

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