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1. Age Selectivity among Labour Migrants (Majoni Joni) From South-Eastern Zimbabwe to South Africa during a Prolonged Crisis

2. Dimensional Effects on Densities of States and Interactions in Nanostructures

3. A Model System for Dimensional Competition in Nanostructures: A Quantum Wire on a Surface

4. First-in-Human Evaluation of Safety, Pharmacokinetics and Muscle Glycogen Lowering of a Novel Glycogen Synthase 1 Inhibitor for the Treatment of Pompe Disease.

5. The conserved HIV-1 spacer peptide 2 triggers matrix lattice maturation.

6. Distinct stabilization of the human T cell leukemia virus type 1 immature Gag lattice.

7. Discovery of Hepatitis B Virus Surface Antigen Suppressor GS-8873.

8. Small-molecule inhibition of glycogen synthase 1 for the treatment of Pompe disease and other glycogen storage disorders.

9. Unconventional stabilization of the human T-cell leukemia virus type 1 immature Gag lattice.

10. Structural insights into HIV-1 polyanion-dependent capsid lattice formation revealed by single particle cryo-EM.

11. Two structural switches in HIV-1 capsid regulate capsid curvature and host factor binding.

12. Exploring high-resolution cryo-ET and subtomogram averaging capabilities of contemporary DEDs.

13. Inositol Phosphates and Retroviral Assembly: A Cellular Perspective.

14. A Structural Perspective of the Role of IP6 in Immature and Mature Retroviral Assembly.

15. Structure of the mature Rous sarcoma virus lattice reveals a role for IP6 in the formation of the capsid hexamer.

16. Permeability of the HIV-1 capsid to metabolites modulates viral DNA synthesis.

17. Mechanisms of PI(4,5)P2 Enrichment in HIV-1 Viral Membranes.

18. Primate lentiviruses require Inositol hexakisphosphate (IP6) or inositol pentakisphosphate (IP5) for the production of viral particles.

19. Biochemical Reconstitution of HIV-1 Assembly and Maturation.

20. Structures of immature EIAV Gag lattices reveal a conserved role for IP6 in lentivirus assembly.

21. Examination and Reconstruction of Three Ancient Endogenous Parvovirus Capsid Protein Gene Remnants Found in Rodent Genomes.

22. IP6 Regulation of HIV Capsid Assembly, Stability, and Uncoating.

23. Author Correction: Inositol phosphates are assembly co-factors for HIV-1.

24. Inositol phosphates are assembly co-factors for HIV-1.

25. Refinement of In Vitro Methods for Identification of Aldehyde Oxidase Substrates Reveals Metabolites of Kinase Inhibitors.

26. Cholesterol Promotes Protein Binding by Affecting Membrane Electrostatics and Solvation Properties.

27. Effects of Membrane Charge and Order on Membrane Binding of the Retroviral Structural Protein Gag.

28. Subnanometer Structure of an Asymmetric Model Membrane: Interleaflet Coupling Influences Domain Properties.

29. Membrane Binding of the Rous Sarcoma Virus Gag Protein Is Cooperative and Dependent on the Spacer Peptide Assembly Domain.

30. Hydrodynamic and Membrane Binding Properties of Purified Rous Sarcoma Virus Gag Protein.

31. The Structure of Immature Virus-Like Rous Sarcoma Virus Gag Particles Reveals a Structural Role for the p10 Domain in Assembly.

32. Membrane interaction of retroviral Gag proteins.

33. Effect of multimerization on membrane association of Rous sarcoma virus and HIV-1 matrix domain proteins.

34. HIV-1 Gag protein can sense the cholesterol and acyl chain environment in model membranes.

35. Rous sarcoma virus gag has no specific requirement for phosphatidylinositol-(4,5)-bisphosphate for plasma membrane association in vivo or for liposome interaction in vitro.

36. Enzymes and inhibitors in neonicotinoid insecticide metabolism.

37. Retrotransposon target site selection by imitation of a cellular protein.

38. Nitroso-imidacloprid irreversibly inhibits rabbit aldehyde oxidase.

39. Substrate specificity of rabbit aldehyde oxidase for nitroguanidine and nitromethylene neonicotinoid insecticides.

40. Neonicotinoid nitroguanidine insecticide metabolites: synthesis and nicotinic receptor potency of guanidines, aminoguanidines, and their derivatives.

41. Identification of aldehyde oxidase as the neonicotinoid nitroreductase.

42. The catalytic and kinetic mechanisms of NADPH-dependent alkenal/one oxidoreductase.

43. NADPH alkenal/one oxidoreductase activity determines sensitivity of cancer cells to the chemotherapeutic alkylating agent irofulven.

44. Chemoprotective potential of phase 2 enzyme inducers.

45. Antioxidative function and substrate specificity of NAD(P)H-dependent alkenal/one oxidoreductase. A new role for leukotriene B4 12-hydroxydehydrogenase/15-oxoprostaglandin 13-reductase.

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