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1. Apical annuli are specialised sites of post-invasion secretion of dense granules in Toxoplasma

2. Stable endocytic structures navigate the complex pellicle of apicomplexan parasites

3. Molecular characterization of the conoid complex in Toxoplasma reveals its conservation in all apicomplexans, including Plasmodium species.

4. Metabolic pathway redundancy within the apicomplexan-dinoflagellate radiation argues against an ancient chromalveolate plastid

5. Stable and ancient endocytic structures navigate the complex pellicle of apicomplexan parasites

6. Evolution, Composition, Assembly, and Function of the Conoid in Apicomplexa

7. A hub-and-spoke nuclear lamina architecture in trypanosomes

8. Expansion Microscopy provides new insights into the cytoskeleton of malaria parasites including the conservation of a conoid

9. A Comprehensive Subcellular Atlas of the Toxoplasma Proteome via hyperLOPIT Provides Spatial Context for Protein Functions

11. Conservation of theToxoplasmaconoid complex proteome reveals a cryptic conoid inPlasmodiumthat differentiates between blood- and vector-stage zoites

12. A subcellular atlas of Toxoplasma reveals the functional context of the proteome

13. Photosensitized INA-Labelled protein 1 (PhIL1) is novel component of the inner membrane complex and is required for Plasmodium parasite development

14. Global mapping of protein subcellular location in apicomplexans: the parasite as we’ve never seen it before

15. Involvement in surface antigen expression by a moonlighting FG-repeat nucleoporin in trypanosomes

16. Touching from a distance

17. Enriching the Pore: Splendid Complexity from Humble Origins

18. SAS6-like protein in Plasmodium indicates that conoid-associated apical complex proteins persist in invasive stages within the mosquito vector

19. Tetrapyrrole Synthesis of Photosynthetic Chromerids Is Likely Homologous to the Unusual Pathway of Apicomplexan Parasites

20. Enriching the pore: splendid complexity from humble origins

21. Telomeres, tethers and trypanosomes

22. Metabolic pathway redundancy within the apicomplexan-dinoflagellate radiation argues against an ancient chromalveolate plastid

23. Using Diatom and Apicomplexan Models to Study the Heme Pathway of Chromera velia

24. Genome and phylogenetic analyses of Trypanosoma evansi reveal extensive similarity to T. brucei and multiple independent origins for dyskinetoplasty.

26. Radiolabeling of Chlorophyll by [14C]Glutamic Acid in vivo and Relative Quantification of Labeled Chlorophyll by Using Thin Layer Chromatography (TLC)

27. A gene in the process of endosymbiotic transfer.

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