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1. Molecular mechanism of the wake-promoting agent TAK-925

3. A central role for PBP2 in the activation of peptidoglycan polymerization by the bacterial cell elongation machinery.

4. Nitroxide Labeling of Proteins and the Determination of Paramagnetic Relaxation Derived Distance Restraints for NMR Studies

5. Correction: Energetics underlying hemin extraction from human hemoglobin by

6. Structural coordination of polymerization and crosslinking by a SEDS-bPBP peptidoglycan synthase complex

7. Correction: Energetics underlying hemin extraction from human hemoglobin by Staphylococcus aureus

8. A central role for PBP2 in the activation of peptidoglycan polymerization by the bacterial cell elongation machinery

9. An activation pathway governs cell wall polymerization by a bacterial morphogenic machine

10. FtsW is a peptidoglycan polymerase that is functional only in complex with its cognate penicillin-binding protein

11. Energetics underlying hemin extraction from human hemoglobin by Staphylococcus aureus

12. Structure of the peptidoglycan polymerase RodA resolved by evolutionary coupling analysis

13. Structure and function of the SEDS:bPBP bacterial cell wall synthesis machinery

14. Identification of agents effective against multiple toxins and viruses by host-oriented cell targeting

15. Novel mechanism of hemin capture by Hbp2, the hemoglobin-binding hemophore from Listeria monocytogenes

16. The PRE-Derived NMR Model of the 38.8-kDa Tri-Domain IsdH Protein from Staphylococcus aureus Suggests That It Adaptively Recognizes Human Hemoglobin

17. Staphylococcus aureus Uses a Novel Multidomain Receptor to Break Apart Human Hemoglobin and Steal Its Heme*

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