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33 results on '"Edgar Deu"'

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1. Activity-based protein profiling of human and

2. Activity-based protein profiling of human and plasmodium serine hydrolases and interrogation of potential antimalarial targets

3. The Aspartyl Protease Ddi1 Is Essential for Erythrocyte Invasion by the Malaria Parasite

4. High Content and High Throughout Phenotypic Assay for the Hourly Resolution of the Malaria Parasite Erythrocytic Cycle

5. Application of a highly selective Cathepsin S two-step activity-based probe in multicolor bio-orthogonal correlative light-electron microscopy

6. Novel broad-spectrum activity-based probes to profile malarial cysteine proteases

7. Identification of Plasmodium dipeptidyl aminopeptidase allosteric inhibitors by high throughput screening

8. Proteases as antimalarial targets: strategies for genetic, chemical, and therapeutic validation

9. Characterization of P. falciparum dipeptidyl aminopeptidase 3 specificity identifies differences in amino acid preferences between peptide-based substrates and covalent inhibitors

10. Correction: Novel broad-spectrum activity-based probes to profile malarial cysteine proteases

11. Plasmodium falciparum dipeptidyl aminopeptidase 3 activity is important for efficient erythrocyte invasion by the malaria parasite

12. Ferrous iron-dependent drug delivery enables controlled and selective release of therapeutic agents in vivo

13. A Coupled Protein and Probe Engineering Approach for Selective Inhibition and Activity-Based Probe Labeling of the Caspases

14. Coupling Protein Engineering with Probe Design To Inhibit and Image Matrix Metalloproteinases with Controlled Specificity

15. Development and Application of a Simple Plaque Assay for the Human Malaria Parasite Plasmodium falciparum

16. Engineering homooligomeric proteins to detect weak intersite allosteric communication: Aminotransferases, a case study

17. Functional Characterization of a SUMO Deconjugating Protease of Plasmodium falciparum Using Newly Identified Small Molecule Inhibitors

18. A Fragmenting Hybrid Approach for Targeted Delivery of Multiple Therapeutic Agents to the Malaria Parasite

19. Functional Studies of Plasmodium falciparum Dipeptidyl Aminopeptidase I Using Small Molecule Inhibitors and Active Site Probes

20. Cofactor-Directed Reversible Denaturation Pathways: The Cofactor-Stabilized Escherichia coli Aspartate Aminotransferase Homodimer Unfolds through a Pathway That Differs from That of the Apoenzyme

21. The role of the conserved Lys68*:Glu265 intersubunit salt bridge in aspartate aminotransferase kinetics: Multiple forced covariant amino acid substitutions in natural variants

22. Plasmodium dipeptidyl aminopeptidases as malaria transmission-blocking drug targets

23. Validation of the proteasome as a therapeutic target in Plasmodium using an epoxyketone inhibitor with parasite-specific toxicity

24. New approaches for dissecting protease functions to improve probe development and drug discovery

25. Chemical genetic screen identifies Toxoplasma DJ-1 as a regulator of parasite secretion, attachment, and invasion

26. Molecular mechanisms of bortezomib resistant adenocarcinoma cells

27. Biochemical characterization of Plasmodium falciparum dipeptidyl aminopeptidase 1

28. Use of activity-based probes to develop high throughput screening assays that can be performed in complex cell extracts

29. The partially folded homodimeric intermediate of Escherichia coli aspartate aminotransferase contains a 'molten interface' structure

30. The unfolding pathway for Apo Escherichia coli aspartate aminotransferase is dependent on the choice of denaturant

31. Inside Cover: A Fragmenting Hybrid Approach for Targeted Delivery of Multiple Therapeutic Agents to the Malaria Parasite (ChemMedChem 3/2011)

32. Rational Design of Inhibitors and Activity-Based Probes Targeting Clostridium difficile Virulence Factor TcdB

33. Development of Small Molecule Inhibitors and Probes of Human SUMO Deconjugating Proteases

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