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1. Cell Traversal Activity Is Important for Plasmodium falciparum Liver Infection in Humanized Mice.

2. Giant MACPF/CDC pore forming toxins: A class of their own.

3. The X-ray Crystal Structure of Full-Length Human Plasminogen

4. Serpins Flex Their Muscle.

5. Serpins Flex Their Muscle.

6. Maspin (SERPINB5) Is an Obligate Intracellular Serpin.

7. Molecular gymnastics: serpin structure, folding and misfolding

8. Mapping the binding site of C1-inhibitor for polyanion cofactors.

9. SH3 domains in prokaryotes.

10. New insights into the structure and function of the plasminogen/plasmin system.

11. A tale of two specificities: bispecific antibodies for therapeutic and diagnostic applications.

12. Protecting a serial killer: pathways for perforin trafficking and self-defence ensure sequential target cell death

13. Structural determinants of GAD antigenicity

14. Role of the M-loop and Reactive Center Loop Domains in the Folding and Bridging of Nucleosome Arrays by MENT.

15. Fragment-based and structure-guided discovery of perforin inhibitors.

16. TcpA from the Clostridium perfringens plasmid pCW3 is more closely related to the DNA translocase FtsK than to coupling proteins.

17. Analysis of Perforin Assembly by Quartz Crystal Microbalance Reveals a Role for Cholesterol and Calcium-independent Membrane Binding.

18. Structural Basis for Ca2+-mediated Interaction of the Perforin C2 Domain with Lipid Membranes.

19. The Phosphatidylinositol (3,4,5)-Trisphosphate-dependent Rac Exchanger 1·Ras-related C3 Botulinum Toxin Substrate 1 (P-Rex1·Rac1) Complex Reveals the Basis of Rac1 Activation in Breast Cancer Cells.

20. Bone morphogenetic protein/retinoic acid inducible neural-specific protein (brinp) expression during Danio rerio development.

21. Reconciling the Structural Attributes of Avian Antibodies.

22. The Perforin Pore Facilitates the Delivery of Cationic Cargos.

23. The Three-dimensional Structure of the Extracellular Adhesion Domain of the Sialic Acid-binding Adhesin SabA from Helicobacter pylori.

24. The X-ray Crystal Structure of Mannose-binding Lectin-associated Serine Proteinase-3 Reveals the Structural Basis for Enzyme Inactivity Associated with the Carnevale, Mingarelli, Malpuech, and Michels (3MC) Syndrome.

25. A Molecular Switch Governs the Interaction between the Human Complement Protease C1s and Its Substrate, Complement C4.

26. S1 Pocket of a Bacterially Derived Subtilisin-like Protease Underpins Effective Tissue Destruction.

27. Plasmodium falciparum neutral aminopeptidases: new targets for anti-malarials

28. A serpin in the cellulosome of the anaerobic fungus Piromyces sp. strain E2

29. Elucidation of the substrate specificity of the MASP-2 protease of the lectin complement pathway and identification of the enzyme as a major physiological target of the serpin, C1-inhibitor

30. DNA Accelerates the Inhibition of Human Cathepsin V by Serpins.

31. Aeropin from the Extremophile Pyrobaculum aerophilum Bypasses the Serpin Misfolding Trap.

32. Leucine-rich Repeats 2-4 (Leu60-Glu128) of Platelet Glycoprotein Ibα Regulate Shear-dependent Cell Adhesion to von Willebrand Factor.

33. Leucine-rich Repeats 2—4 (Leu60—Glu128) of Platelet Glycoprotein Ibα Regulate Shear-dependent Cell Adhesion to von Willebrand Factor.

34. The Murine Orthologue of Human Antichymotrypsin: A STRUCTURAL PARADIGM FOR CLADEA3 SERPINS.

35. The High Resolution Crystal Structure of the Human Tumor Suppressor Maspin Reveals a Novel Conformational Switch in the G-helix.

36. The High Resolution Crystal Structure of a Native Thermostable Serpin Reveals the Complex Mechanism Underpinning the Stressed to Relaxed Transition.

37. Antithrombin: in control of coagulation

38. The 1.5 A˚ Crystal Structure of a Prokaryote Serpin: Controlling Conformational Change in a Heated Environment

39. Identification of a Novel Domain in Two Mammalian Inositol-polyphosphate 5-Phosphatases That Mediates Membrane Ruffle Localization.

40. Determination of the <F>P1′</F>, <F>P2′</F> and <F>P3′</F> subsite-specificity of factor Xa

41. Subunit γ-Green Fluorescent Protein Fusions Are Functionally Incorporated into Mitochondrial F[sub 1]F[sub 0]-ATP Synthase, Arguing Against a Rigid Cap Structure at the Top of F[sub 1].

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