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35 results on '"Boulanger, Martin J"'

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1. Toxoplasma gondii mitochondrial association factor 1b interactome reveals novel binding partners including Ral GTPase accelerating protein α1.

2. Plasmodium falciparum evades immunity of anopheline mosquitoes by interacting with a Pfs47 midgut receptor.

3. A lipid-binding protein mediates rhoptry discharge and invasion in Plasmodium falciparum and Toxoplasma gondii parasites.

4. A Toxoplasma gondii locus required for the direct manipulation of host mitochondria has maintained multiple ancestral functions.

5. Dissecting the molecular assembly of the Toxoplasma gondii MyoA motility complex.

6. Efficient invasion by Toxoplasma depends on the subversion of host protein networks.

7. The structure of Plasmodium falciparum 3D7_0606800 reveals a bi-lobed architecture that supports re-annotation as a Venus Flytrap protein.

8. Structural characterization reveals a novel bilobed architecture for the ectodomains of insect stage expressed Trypanosoma brucei PSSA-2 and Trypanosoma congolense ISA.

9. Host Mitochondrial Association Evolved in the Human Parasite Toxoplasma gondii via Neofunctionalization of a Gene Duplicate.

10. Characterization of Calflagin, a Flagellar Calcium-Binding Protein from Trypanosoma congolense.

11. Dissecting the interface between apicomplexan parasite and host cell: Insights from a divergent AMA-RON2 pair.

12. Stability of the Plasmodium falciparum AMA1-RON2 Complex Is Governed by the Domain II (DII) Loop.

13. Computational and biophysical approaches to protein-protein interaction inhibition of Plasmodium falciparum AMA1/RON2 complex.

14. Structural and functional divergence of the aldolase fold in Toxoplasma gondii.

15. A conserved apicomplexan microneme protein contributes to Toxoplasma gondii invasion and virulence.

16. Immunization with a functional protein complex required for erythrocyte invasion protects against lethal malaria.

17. Plasticity and redundancy among AMA-RON pairs ensure host cell entry of Toxoplasma parasites.

18. The inner membrane complex sub-compartment proteins critical for replication of the apicomplexan parasite Toxoplasma gondii adopt a pleckstrin homology fold.

19. Toxoplasma gondii sporozoites invade host cells using two novel paralogues of RON2 and AMA1.

20. Purification, crystallization and X-ray diffraction analysis of Trypanosoma congolense insect-stage surface antigen (TcCISSA).

21. Integrated bioinformatic and targeted deletion analyses of the SRS gene superfamily identify SRS29C as a negative regulator of Toxoplasma virulence.

22. Purification, crystallization and preliminary X-ray diffraction analysis of inner membrane complex (IMC) subcompartment protein 1 (ISP1) from Toxoplasma gondii.

23. Structural and functional insights into the malaria parasite moving junction complex.

24. Host cell invasion by apicomplexan parasites: insights from the co-structure of AMA1 with a RON2 peptide.

25. Structural characterization and epitope mapping of the glutamic acid/alanine-rich protein from Trypanosoma congolense: defining assembly on the parasite cell surface.

26. The RON2-AMA1 interaction is a critical step in moving junction-dependent invasion by apicomplexan parasites.

27. Structure of the micronemal protein 2 A/I domain from Toxoplasma gondii.

28. Apicomplexan parasite adhesins: novel strategies for targeting host cell carbohydrates.

29. Structural and functional characterization of SporoSAG: a SAG2-related surface antigen from Toxoplasma gondii.

30. Insect-cell expression, crystallization and X-ray data collection of the bradyzoite-specific antigen BSR4 from Toxoplasma gondii.

31. The structure of Plasmodium falciparum 3D7_0606800 reveals a bi‐lobed architecture that supports re‐annotation as a Venus Flytrap protein

32. Structural characterization reveals a novel bilobed architecture for the ectodomains of insect stage expressed Trypanosoma brucei PSSA‐2 and Trypanosoma congolense ISA

33. Structural Characterization and Epitope Mapping of the Glutamic Acid/Alanine-rich Protein from Trypanosoma congolense: DEFINING ASSEMBLY ON THE PARASITE CELL SURFACE*♦

34. Structure of the micronemal protein 2 A/I domain from Toxoplasma gondii

35. Structural and Functional Characterization of SporoSAG: A SAG2-RELATED SURFACE ANTIGEN FROM TOXOPLASMA GONDII*

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