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1. Late sporogonic stages of Plasmodium parasites are susceptible to the melanization response in Anopheles gambiae mosquitoes.

2. The major surface protein of malaria sporozoites is GPI-anchored to the plasma membrane.

3. Flp/ FRT -mediated disruption of ptex150 and exp2 in Plasmodium falciparum sporozoites inhibits liver-stage development.

4. An ApiAp2 Transcription Factor with a Dispensable Role in Plasmodium berghei Life Cycle.

5. The novel Plasmodium berghei protein S14 is essential for sporozoite gliding motility and infectivity.

6. A screen for Plasmodium falciparum sporozoite surface protein binding to human hepatocyte surface receptors identifies novel host-pathogen interactions.

7. Stearoyl-CoA desaturase regulates organelle biogenesis and hepatic merozoite formation in Plasmodium berghei.

8. Unveiling Cryptosporidium parvum sporozoite-derived extracellular vesicles: profiling, origin, and protein composition.

9. Identification of host protein ENO1 (alpha-enolase) interacting with Cryptosporidium parvum sporozoite surface protein, Cpgp40.

10. Comparative proteomic analysis across the developmental stages of the Eimeria tenella.

11. Overcoming the egress block of Plasmodium sporozoites expressing fluorescently tagged circumsporozoite protein.

12. Plasmodium GPI-anchored micronemal antigen is essential for parasite transmission through the mosquito host.

13. Host protein EPCAM interacting with EtMIC8-EGF is essential for attachment and invasion of Eimeria tenella in chickens.

14. A Time Point Proteomic Analysis Reveals Protein Dynamics of Plasmodium Oocysts.

15. Developing efficient strategies for localizing the enhanced yellow fluorescent protein subcellularly in transgenic Eimeria parasites.

16. Requirement of microtubules for secretion of a micronemal protein CpTSP4 in the invasive stage of the apicomplexan Cryptosporidium parvum .

17. The Anopheles leucine-rich repeat protein APL1C is a pathogen binding factor recognizing Plasmodium ookinetes and sporozoites.

18. Naturally acquired antibodies against Plasmodium vivax pre-erythrocytic stage vaccine antigens inhibit sporozoite invasion of human hepatocytes in vitro.

19. A single-pass type I membrane protein, mannose-specific L-type lectin, potentially involved in the adhesion and invasion of Cryptosporidium parvum.

20. Plasmodium sporozoite excystation involves local breakdown of the oocyst capsule.

21. Localization in vivo and in vitro confirms EnApiAP2 protein encoded by ENH_00027130 as a nuclear protein in Eimeria necatrix .

22. Still running fast: Plasmodium ookinetes and sporozoites 125 years after their discovery.

23. Intracellular Plasmodium aquaporin 2 is important for sporozoite production in the mosquito vector and malaria transmission.

24. Label-free quantitative detection and comparative analysis of lysine acetylation during the different life stages of Eimeria tenella .

25. Molecular characterization of methionine aminopeptidase1 from Eimeria tenella.

26. Conformational change of Plasmodium TRAP is essential for sporozoite migration and transmission.

27. Plasmodium falciparum Gametes and Sporozoites Hijack Plasmin and Factor H To Evade Host Complement Killing.

28. Assessment of Bio-Based Materials as a Sustainable and Scalable Alternative for Detection of Plasmodium spp. (Haemospororida: Plasmodiidae) Sporozoites in Field Deployable Testing.

29. Late Embryogenesis Abundant Proteins Contribute to the Resistance of Toxoplasma gondii Oocysts against Environmental Stresses.

30. Characterization of CpCaM, a protein potentially involved in the growth of Cryptosporidium parvum.

31. The claudin-like apicomplexan microneme protein is required for gliding motility and infectivity of Plasmodium sporozoites.

32. Refractile bodies of Eimeria tenella are proteinaceous membrane-less organelles that undergo dynamic changes during infection.

33. Apical Secretory Glycoprotein Complex Contributes to Cell Attachment and Entry by Cryptosporidium parvum.

34. Dissecting The role of Plasmodium metacaspase-2 in malaria gametogenesis and sporogony.

35. Characteristics analyses of Eimeria tenella 14-3-3 protein and verification of its interaction with calcium-dependent protein kinase 4.

36. Characterization of Dense Granule Metalloproteinase INS-16 in Cryptosporidium parvum .

37. Plasmodium sporozoite disintegration during skin passage limits malaria parasite transmission.

38. Phosphorylation of myosin A regulates gliding motility and is essential for Plasmodium transmission.

39. The AMA1-RON complex drives Plasmodium sporozoite invasion in the mosquito and mammalian hosts.

40. A conserved Plasmodium structural integrity maintenance protein (SIMP) is associated with sporozoite membrane and is essential for maintaining shape and infectivity.

41. A conserved malaria parasite protein required for maintenance of sporozoite cell shape and transmission.

42. Cloning, expression and purification of Plasmodium knowlesi circumsporozoite protein and immunoblot analysis with P. knowlesi strain A1H1 protein extract.

43. MAEBL Contributes to Plasmodium Sporozoite Adhesiveness.

44. The mucin-like, secretory type-I transmembrane glycoprotein GP900 in the apicomplexan Cryptosporidium parvum is cleaved in the secretory pathway and likely plays a lubrication role.

45. Molecular characterization and immune protection by cystathionine β-synthase from Eimeria tenella.

46. Eimeria proteins: order amidst disorder.

47. Structural basis of Plasmodium vivax inhibition by antibodies binding to the circumsporozoite protein repeats.

48. Addendum: Transcriptomics and proteomics reveal two waves of translational repression during the maturation of malaria parasite sporozoites.

49. Plasmodium sporozoite phospholipid scramblase interacts with mammalian carbamoyl-phosphate synthetase 1 to infect hepatocytes.

50. Secretory Organelle Function in the Plasmodium Sporozoite.

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