Histone example sentences

Related (7): chromatin, epigenetics, DNA, transcription, nucleosome, acetylation, methylation

"Histone" Example Sentences

1. Histone proteins are important components of chromatin.
2. Histone modifications are important for gene regulation.
3. Histone tails can be subject to a variety of post-translational modifications.
4. Histone acetylation is associated with transcriptional activation.
5. Histone methylation is associated with transcriptional repression.
6. Histone acetyltransferases are enzymes that catalyze the transfer of an acetyl group to histones.
7. Histone deacetylases are enzymes that catalyze the removal of acetyl groups from histones.
8. Histone methyltransferases are enzymes that catalyze the transfer of a methyl group to histones.
9. Histone demethylases are enzymes that catalyze the removal of methyl groups from histones.
10. Histone variants are proteins that differ from canonical histones in sequence and/or structure.
11. Histone variants can be incorporated into chromatin to modulate chromatin structure and gene expression.
12. Histone chaperones are proteins that facilitate the assembly of nucleosomes and chromatin remodeling.
13. Histone H3 is one of the four core histones that make up the nucleosome.
14. Histone H3 is subject to a variety of post-translational modifications.
15. Histone H3 is acetylated at lysine 9 and lysine 14 and this acetylation is associated with transcriptional activation.
16. Histone H3 is methylated at lysine 4 and this methylation is associated with transcriptional activation.
17. Histone H3 is methylated at lysine 9 and this methylation is associated with transcriptional repression.
18. Histone H3 is methylated at lysine 27 and this methylation is associated with transcriptional repression.
19. Histone H3 can be replaced by histone variants to modulate chromatin structure and gene expression.
20. Histone H4 is one of the four core histones that make up the nucleosome.
21. Histone H4 is subject to a variety of post-translational modifications.
22. Histone H4 is acetylated at lysine 5 and lysine 8 and this acetylation is associated with transcriptional activation.
23. Histone H4 is methylated at lysine 20 and this methylation is associated with transcriptional activation.
24. Histone H4 is methylated at lysine 16 and this methylation is associated with transcriptional repression.
25. Histone H4 is methylated at lysine 12 and this methylation is associated with transcriptional repression.
26. Histone H4 can be replaced by histone variants to modulate chromatin structure and gene expression.
27. Histone H2A is one of the four core histones that make up the nucleosome.
28. Histone H2A is subject to a variety of post-translational modifications.
29. Histone H2A is acetylated at lysine 5 and lysine 8 and this acetylation is associated with transcriptional activation.
30. Histone H2A is methylated at lysine 5 and this methylation is associated with transcriptional activation.
31. Histone H2A is methylated at lysine 12 and this methylation is associated with transcriptional repression.
32. Histone H2A is methylated at lysine 15 and this methylation is associated with transcriptional repression.
33. Histone H2A can be replaced by histone variants to modulate chromatin structure and gene expression.
34. Histone H2B is one of the four core histones that make up the nucleosome.
35. Histone H2B is subject to a variety of post-translational modifications.
36. Histone H2B is acetylated at lysine 5 and lysine 8 and this acetylation is associated with transcriptional activation.
37. Histone H2B is methylated at lysine 4 and this methylation is associated with transcriptional activation.
38. Histone H2B is methylated at lysine 12 and this methylation is associated with transcriptional repression.
39. Histone H2B is methylated at lysine 15 and this methylation is associated with transcriptional repression.
40. Histone H2B can be replaced by histone variants to modulate chromatin structure and gene expression.

Common Phases

Histone acetylation; Histone methylation; Histone phosphorylation; Histone ubiquitination; Histone sumoylation

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