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1. Trypanosomal TAC40 constitutes a novel subclass of mitochondrial beta-barrel proteins specialized in mitochondrial genome inheritance

2. Phylogenomics of hyperthermophilic Archaea and Bacteria

3. Proteome remodelling during development from blood to insect-form Trypanosoma brucei quantified by SILAC and mass spectrometry

4. Expansion of metabolically labelled endocytic organelles and cytoskeletal cell structures in Giardia lamblia using optimised U-ExM protocols.

5. Pre-gelation staining expansion microscopy for visualisation of the Plasmodium liver stage.

6. Mitochondrial genome maintenance-the kinetoplast story.

7. Characterization of two novel proteins involved in mitochondrial DNA anchoring in Trypanosoma brucei.

8. Single p197 molecules of the mitochondrial genome segregation system of Trypanosoma brucei determine the distance between basal body and outer membrane.

9. Mistargeting of aggregation prone mitochondrial proteins activates a nucleus-mediated posttranscriptional quality control pathway in trypanosomes.

10. Ultrastructure expansion microscopy in Trypanosoma brucei .

11. Characterization of the novel mitochondrial genome segregation factor TAP110 in Trypanosoma brucei .

12. A comparison of three approaches for the discovery of novel tripartite attachment complex proteins in Trypanosoma brucei.

13. Lexis and Grammar of Mitochondrial RNA Processing in Trypanosomes.

14. Assembly and annotation of the mitochondrial minicircle genome of a differentiation-competent strain of Trypanosoma brucei.

15. Failure is not an option - mitochondrial genome segregation in trypanosomes.

16. The translationally controlled tumor protein TCTP is involved in cell cycle progression and heat stress response in the bloodstream form of Trypanosoma brucei .

17. Distinct 3' UTRs regulate the life-cycle-specific expression of two TCTP paralogs in Trypanosoma brucei .

18. Characterization of the novel mitochondrial genome replication factor MiRF172 in Trypanosoma brucei .

19. Molecular model of the mitochondrial genome segregation machinery in Trypanosoma brucei .

21. The nuclear RNA binding protein RBP33 influences mRNA and spliced leader RNA abundance in Trypanosoma brucei.

22. Mitochondrial growth during the cell cycle of Trypanosoma brucei bloodstream forms.

23. A novel component of the mitochondrial genome segregation machinery in trypanosomes.

25. TAC102 Is a Novel Component of the Mitochondrial Genome Segregation Machinery in Trypanosomes.

26. Trypanosoma brucei RRM1 is a nuclear RNA-binding protein and modulator of chromatin structure.

27. Trypanosomal TAC40 constitutes a novel subclass of mitochondrial β-barrel proteins specialized in mitochondrial genome inheritance.

28. Genome profiling of sterol synthesis shows convergent evolution in parasites and guides chemotherapeutic attack.

29. Whole proteome analysis of the protozoan parasite Trypanosoma brucei using stable isotope labeling by amino acids in cell culture and mass spectrometry.

30. Dual targeting of isoleucyl-tRNA synthetase in Trypanosoma brucei is mediated through alternative trans-splicing.

31. Gene expression in Trypanosoma brucei: lessons from high-throughput RNA sequencing.

32. Epigenetic regulation of transcription and virulence in Trypanosoma cruzi by O-linked thymine glucosylation of DNA.

33. The Trypanosoma brucei MitoCarta and its regulation and splicing pattern during development.

34. Spliced leader trapping reveals widespread alternative splicing patterns in the highly dynamic transcriptome of Trypanosoma brucei.

35. RNA editing in kinetoplastids.

36. Alternative RNA editing produces a novel protein involved in mitochondrial DNA maintenance in trypanosomes.

37. Alternative mRNA editing in trypanosomes is extensive and may contribute to mitochondrial protein diversity.

38. KISS: the kinetoplastid RNA editing sequence search tool.

39. Alternative editing of cytochrome c oxidase III mRNA in trypanosome mitochondria generates protein diversity.

40. Characterization of large-insert DNA libraries from soil for environmental genomic studies of Archaea.

41. Acidobacteria form a coherent but highly diverse group within the bacterial domain: evidence from environmental genomics.

42. Diversity and abundance of Crenarchaeota in terrestrial habitats studied by 16S RNA surveys and real time PCR.

43. First insight into the genome of an uncultivated crenarchaeote from soil.

44. Diversity of Archaea in hypersaline environments characterized by molecular-phylogenetic and cultivation studies.

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