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25 results on '"Pactamycin chemistry"'

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1. Chemical Modification of Pactamycin Leads to New Compounds with Retained Antimicrobial Activity and Reduced Toxicity.

2. Strategies for the Syntheses of Pactamycin and Jogyamycin.

3. Stereocontrolled Synthesis of the Aminocyclopentitol Core of Jogyamycin via an Ichikawa Rearrangement Reaction.

4. Total Synthesis of Pactalactam, an Imidazolidinone-Type Pactamycin Analogue.

5. Asymmetric Synthesis and Biological Activities of Pactamycin-Inspired Aminocyclopentitols.

6. NAD + -Dependent Dehydrogenase PctP and Pyridoxal 5'-Phosphate Dependent Aminotransferase PctC Catalyze the First Postglycosylation Modification of the Sugar Intermediate in Pactamycin Biosynthesis.

7. Analysis of ribosomal inter-subunit sites as targets for complementary oligonucleotides.

8. A Highly Promiscuous ß-Ketoacyl-ACP Synthase (KAS) III-like Protein Is Involved in Pactamycin Biosynthesis.

9. Interrogating the Tailoring Steps of Pactamycin Biosynthesis and Accessing New Pactamycin Analogues.

10. Diastereoselective Synthesis of the Aminocyclitol Core of Jogyamycin via an Allene Aziridination Strategy.

11. Mechanism-Based Trapping of the Quinonoid Intermediate by Using the K276R Mutant of PLP-Dependent 3-Aminobenzoate Synthase PctV in the Biosynthesis of Pactamycin.

12. Cryo-EM structure of the Plasmodium falciparum 80S ribosome bound to the anti-protozoan drug emetine.

13. Crystal structure of a bioactive pactamycin analog bound to the 30S ribosomal subunit.

14. A single PLP-dependent enzyme PctV catalyzes the transformation of 3-dehydroshikimate into 3-aminobenzoate in the biosynthesis of pactamycin.

15. Diastereoselective synthesis of vicinal tertiary diols.

16. Enantioselective synthesis of pactamycin, a complex antitumor antibiotic.

17. Mutasynthesis of fluorinated pactamycin analogues and their antimalarial activity.

18. Total synthesis of pactamycin and pactamycate: a detailed account.

19. Access to the pactamycin core via an epoxide opening cascade.

20. Diastereocontrolled construction of pactamycin's complex ureido triol functional array.

21. Total synthesis of pactamycin.

22. Promising lead compounds for novel antiprotozoals.

23. Cloning of the pactamycin biosynthetic gene cluster and characterization of a crucial glycosyltransferase prior to a unique cyclopentane ring formation.

24. Synthesis of the oxygenated pactamycin core.

25. Directed biosynthesis of 5"-fluoropactamycin in Streptomyces pactum.

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