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1. Interdomain-linkers control conformational transitions in the SLC23 elevator transporter UraA

2. Structural basis for functional interactions in dimers of SLC26 transporters

3. Selection of nanobodies with broad neutralizing potential against primary HIV-1 strains using soluble subtype C gp140 envelope trimers

4. Generation of synthetic nanobodies against delicate proteins

5. Biotinylation of Membrane Proteins for Binder Selections

6. Structural basis for functional interactions in dimers of SLC26 transporters

7. Synthetic single domain antibodies for the conformational trapping of membrane proteins

8. Efficient Screening and Optimization of Membrane Protein Production in Escherichia coli

9. Evolved Lactococcus lactis Strains for Enhanced Expression of Recombinant Membrane Proteins

10. Structure of a prokaryotic fumarate transporter reveals the architecture of the SLC26 family

11. The first cytoplasmic loop of the mannitol permease from Escherichia coli is accessible for sulfhydryl reagents from the periplasmic side of the membrane

12. The response of Lactococcus lactis to membrane protein production

13. Amino acid accumulation limits the overexpression of proteins in Lactococcus lactis

14. The substrate-binding protein imposes directionality on an electrochemical sodium gradient-driven TRAP transporter

15. Flavin binding to the high affinity riboflavin transporter RibU

16. The Riboflavin Transporter RibU in Lactococcus lactis: Molecular Characterization of Gene Expression and the Transport Mechanism

17. The Activity of the Lactose Transporter from Streptococcus thermophilus Is Increased by Phosphorylated IIA and the Action of β-Galactosidase

18. Close Approximation of Putative α-Helices II, IV, VII, X, and XI in the Translocation Pathway of the Lactose Transport Protein of Streptococcus thermophilus

19. Synthetic single domain antibodies for the conformational trapping of membrane proteins

20. The response of Lactococcus lactis to membrane protein production.

21. Amino acid accumulation limits the overexpression of proteins in Lactococcus lactis.

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