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1. A novel Tetrahymena thermophila sterol C-22 desaturase belongs to the fatty acid hydroxylase/desaturase superfamily.

2. Genome analysis of sphingolipid metabolism-related genes in Tetrahymena thermophila and identification of a fatty acid 2-hydroxylase involved in the sexual stage of conjugation.

3. Genome-wide Transcriptional Analysis of Tetrahymena thermophila Response to Exogenous Cholesterol.

4. Gene identification and functional characterization of a Δ12 fatty acid desaturase in Tetrahymena thermophila and its influence in homeoviscous adaptation to low temperature.

5. Biotechnology in ciliates: an overview.

7. Phylogenomic analysis of integral diiron membrane histidine motif-containing enzymes in ciliates provides insights into their function and evolutionary relationships.

8. Introducing the concept of biocatalysis in the classroom: The conversion of cholesterol to provitamin D 3 .

9. Photoreceptors in Chemotrophic Prokaryotes: The Case of Acinetobacter spp. Revisited.

10. Expression and functional characterization of a C-7 cholesterol desaturase from Tetrahymena thermophila in an insect cell line.

11. Incomplete sterols and hopanoids pathways in ciliates: gene loss and acquisition during evolution as a source of biosynthetic genes.

12. Blue-light-dependent inhibition of twitching motility in Acinetobacter baylyi ADP1: additive involvement of three BLUF-domain-containing proteins.

13. The Sterol-C7 desaturase from the ciliate Tetrahymena thermophila is a Rieske Oxygenase, which is highly conserved in animals.

14. The cytochrome b5 dependent C-5(6) sterol desaturase DES5A from the endoplasmic reticulum of Tetrahymena thermophila complements ergosterol biosynthesis mutants in Saccharomyces cerevisiae.

15. Identification of virulence markers in clinically relevant strains of Acinetobacter genospecies.

16. A novel sterol desaturase-like protein promoting dealkylation of phytosterols in Tetrahymena thermophila.

17. C-5(6) sterol desaturase from tetrahymena thermophila: Gene identification and knockout, sequence analysis, and comparison to other C-5(6) sterol desaturases.

18. Prokaryotic phototaxis.

19. A bioreactor model system specifically designed for Tetrahymena growth and cholesterol removal from milk.

20. The use of Tetrahymena thermophila mutant cell line for removal of cholesterol from milk.

21. Characterization and properties of cholesterol desaturases from the ciliate Tetrahymena thermophila.

22. Physiological factors affecting production of extracellular lipase (LipA) in Acinetobacter calcoaceticus BD413: fatty acid repression of lipA expression and degradation of LipA.

23. Characterization of the extracellular lipase, LipA, of Acinetobacter calcoaceticus BD413 and sequence analysis of the cloned structural gene.

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