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1. Computational analysis of long-range allosteric communications in CFTR

2. Initiation of fibronectin fibrillogenesis is an enzyme-dependent process

3. Listeria monocytogenes TcyKLMN Cystine/Cysteine Transporter Facilitates Glutathione Synthesis and Virulence Gene Expression

4. L-glutamine Induces Expression of Listeria monocytogenes Virulence Genes.

5. A relay network of extracellular heme-binding proteins drives C. albicans iron acquisition from hemoglobin.

7. Initiation of fibronectin fibrillogenesis is an enzyme-dependent process

8. Identification of conserved slow codons that are important for protein expression and function

9. Substrate recognition and ATPase activity of the E. coli cysteine/cystine ABC transporter YecSC-FliY

10. The copper-linked Escherichia coli AZY operon: Structure, metal binding, and a possible physiological role in copper delivery

11. Structural and functional diversity calls for a new classification of ABC transporters

13. Titratable transmembrane residues and a hydrophobic plug are essential for manganese import via the Bacillus anthracis ABC transporter MntBC-A

14. Mechanism of Action of ABC Importers: Conservation, Divergence, and Physiological Adaptations

15. Distinct Allosteric Networks Underlie Mechanistic Speciation of ABC Transporters

16. Single-molecule probing of the conformational homogeneity of the ABC transporter BtuCD

17. Metal binding spectrum and model structure of theBacillus anthracisvirulence determinant MntA

18. Dimerization of the adaptor Gads facilitates antigen receptor signaling by promoting the cooperative binding of Gads to the adaptor LAT

19. The highly synergistic, broad spectrum, antibacterial activity of organic acids and transition metals

20. Identification of functionally important conserved trans‐membrane residues of bacterial <scp> P IB </scp> ‐type <scp>ATPases</scp>

21. A single intact ATPase site of the ABC transporter BtuCD drives 5% transport activity yet supports full in vivo vitamin B 12 utilization

22. Two molybdate/tungstate ABC transporters that interact very differently with their substrate binding proteins

23. ATP binding and hydrolysis disrupt the high-affinity interaction between the heme ABC transporter HmuUV and its cognate substrate-binding protein

24. L-glutamine Induces Expression of Listeria monocytogenes Virulence Genes

25. A distinct mechanism for the ABC transporter BtuCD–BtuF revealed by the dynamics of complex formation

26. The Funnel Approach to the Precrystallization Production of Membrane Proteins

27. The uncoupled ATPase activity of the ABC transporter BtuC2D2 leads to a hysteretic conformational change, conformational memory, and improved activity

28. E. coli Multidrug Transporter MdfA Is a Monomer

29. Do physiological roles foster persistence of drug/multidrug-efflux transporters? A case study

30. Alkalitolerance: A biological function for a multidrug transporter in pH homeostasis

31. Role of a Conserved Membrane-Embedded Acidic Residue in the Multidrug Transporter MdfA

32. Structural and functional characterization of a heavy metal detoxifying ABC transporter (997.2)

33. Structural Basis for Heavy Metal Detoxification by an Atm1-Type ABC Exporter

34. Evidence for Simultaneous Binding of Dissimilar Substrates by the Escherichia coli Multidrug Transporter MdfA

35. Bacterial ATP-driven transporters of transition metals: physiological roles, mechanisms of action, and roles in bacterial virulence

36. A P-type ATPase importer that discriminates between essential and toxic transition metals

37. ABC transporters: The power to change

38. The Escherichia coli multidrug transporter MdfA catalyzes both electrogenic and electroneutral transport reactions

39. The Size of the Proteasomal Substrate Determines Whether Its Degradation Will Be Mediated by Mono- or Polyubiquitylation

40. Not All ABC Transporters are the Same: Correlation between Genetic, Structural, and Mechanistic Diversity

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