The role of histone H3K36me3 in mammalian cell cycle regulation and genome stability
<p>Although the molecular genetics regulating DNA replication onset have been studied in great detail, the epigenetic contribution to this step is poorly understood. H3K36me3 has been identified as a key factor regulating the catalytic ribonucleotide reductase subunit RRM2, suggesting an impo...
Glavni avtor: | Armfield, LD |
---|---|
Drugi avtorji: | Humphrey, T |
Format: | Thesis |
Jezik: | English |
Izdano: |
2019
|
Teme: |
Podobne knjige/članki
-
Therapeutic targeting of histone H3 lysine 36 trimethylation-deficient cancers
od: Lopez, K
Izdano: (2019) -
SETD2-H3K36ME3: an important bridge between the environment and tumors
od: Jiahui He, et al.
Izdano: (2023-06-01) -
Thermal Manipulation During Embryogenesis Impacts H3K4me3 and H3K27me3 Histone Marks in Chicken Hypothalamus
od: Sarah-Anne David, et al.
Izdano: (2019-11-01) -
Visfatin and global histone H3K9me levels in colon cancer
od: Eman A. Al Abdulsalam, et al.
Izdano: (2021-01-01) -
The three methyls: the function and therapeutic potential of histone H3K36 trimethylation
od: Pfister, SX
Izdano: (2014)