Histonefrom example sentences

Related (6): acetylation, methylation, phosphorylation, ubiquitination, chromatin, epigenetics

"Histonefrom" Example Sentences

1. Histonefrom deposition is important for gene expression.
2. Histonefrom modifications are associated with changes in gene expression.
3. Histonefrom acetylation is a key mechanism for controlling chromatin structure.
4. Histonefrom methylation plays a role in regulating gene expression.
5. Histonefrom acetyltransferases are enzymes that catalyze the addition of acetyl groups to histones.
6. Histonefrom ubiquitination is a key mechanism for regulating chromatin structure and gene expression.
7. Histonefrom demethylases are enzymes that catalyze the removal of methyl groups from histones.
8. Histonefrom phosphorylation is an important mechanism for regulating chromatin structure and gene expression.
9. Histonefrom deacetylases are enzymes that catalyze the removal of acetyl groups from histones.
10. Histonefrom modifications can lead to changes in gene expression and cell fate.
11. Histonefrom methyltransferases are enzymes that catalyze the addition of methyl groups to histones.
12. Histonefrom lysine methylation is an important mechanism for regulating chromatin structure and gene expression.
13. Histonefrom sumoylation is a key mechanism for regulating chromatin structure and gene expression.
14. Histonefrom arginine methylation is a key mechanism for regulating chromatin structure and gene expression.
15. Histonefrom acetylation is a key mechanism for regulating chromatin structure and gene expression.
16. Histonefrom ubiquitination is an important mechanism for controlling chromatin structure and gene expression.
17. Histonefrom deubiquitinases are enzymes that catalyze the removal of ubiquitin groups from histones.
18. Histonefrom phosphatases are enzymes that catalyze the removal of phosphate groups from histones.
19. Histonefrom lysine acetylation is an important mechanism for regulating chromatin structure and gene expression.
20. Histonefrom modifications play a role in regulating gene expression and cell fate.

Common Phases

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

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