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1. A Method for Conditional Regulation of Protein Stability in Native or Near-Native Form.

2. A method to rapidly create protein aggregates in living cells.

3. Distinct transcriptional responses elicited by unfolded nuclear or cytoplasmic protein in mammalian cells.

4. Using light to shape chemical gradients for parallel and automated analysis of chemotaxis.

5. Chemical biology strategies for posttranslational control of protein function.

6. The E3 ubiquitin ligase UBE3C enhances proteasome processivity by ubiquitinating partially proteolyzed substrates.

7. Rapid and tunable control of protein stability in Caenorhabditis elegans using a small molecule.

8. FK506 activates BMPR2, rescues endothelial dysfunction, and reverses pulmonary hypertension.

9. Par-4 downregulation promotes breast cancer recurrence by preventing multinucleation following targeted therapy.

10. Visualizing cellular interactions with a generalized proximity reporter.

11. Networks of polarized actin filaments in the axon initial segment provide a mechanism for sorting axonal and dendritic proteins.

12. Differential trafficking of transport vesicles contributes to the localization of dendritic proteins.

13. Imaging the impact of chemically inducible proteins on cellular dynamics in vivo.

14. Intracellular context affects levels of a chemically dependent destabilizing domain.

15. Ligand-switchable substrates for a ubiquitin-proteasome system.

16. Chemical control of FGF-2 release for promoting calvarial healing with adipose stem cells.

17. Asparagine repeat function in a Plasmodium falciparum protein assessed via a regulatable fluorescent affinity tag.

18. A general chemical method to regulate protein stability in the mammalian central nervous system.

19. A plant-like kinase in Plasmodium falciparum regulates parasite egress from erythrocytes.

20. Chemical control of protein stability and function in living mice.

21. A directed approach for engineering conditional protein stability using biologically silent small molecules.

22. The rapamycin-binding domain of the protein kinase mammalian target of rapamycin is a destabilizing domain.

23. PI(3,4,5)P3 and PI(4,5)P2 lipids target proteins with polybasic clusters to the plasma membrane.

24. A rapid, reversible, and tunable method to regulate protein function in living cells using synthetic small molecules.

25. Rapamycin analogs with differential binding specificity permit orthogonal control of protein activity.

26. Conditional control of protein function.

27. A cell-permeable, activity-based probe for protein and lipid kinases.

28. Total synthesis of ustiloxin D and considerations on the origin of selectivity of the asymmetric allylic alkylation.

29. Conditional protein alleles using knockin mice and a chemical inducer of dimerization.

31. Affinity modulation of small-molecule ligands by borrowing endogenous protein surfaces.

32. SH2 domains: a question of independence.

33. Potent stimulation of SH-PTP2 phosphatase activity by simultaneous occupancy of both SH2 domains.

34. Activation of the SH2-containing protein tyrosine phosphatase, SH-PTP2, by phosphotyrosine-containing peptides derived from insulin receptor substrate-1.

35. Controlling signal transduction with synthetic ligands.

36. Solution structure of FKBP, a rotamase enzyme and receptor for FK506 and rapamycin.

37. Probing immunosuppressant action with a nonnatural immunophilin ligand.

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