AHNAK controls 53BP1-mediated p53 response by restraining 53BP1 oligomerization and phase separation
Summary p53-binding protein 1 (53BP1) regulates both the DNA damage response and p53
signaling. Although 53BP1's function is well established in DNA double-strand break repair …
signaling. Although 53BP1's function is well established in DNA double-strand break repair …
Variations of chromosome 2 gene expressions among patients with lung cancer or non-cancer
L Bao, Y Zhang, J Wang, H Wang, N Dong, X Su… - Cell biology and …, 2016 - Springer
Lung cancer is one of the most common malignancies worldwide. The present study aimed
to investigate specific genotypes of different subtypes or stages of lung cancer through gene …
to investigate specific genotypes of different subtypes or stages of lung cancer through gene …
Glioblastoma stem cells reprogram chromatin in vivo to generate selective therapeutic dependencies on DPY30 and phosphodiesterases
Glioblastomas are universally fatal cancers and contain self-renewing glioblastoma stem
cells (GSCs) that initiate tumors. Traditional anticancer drug discovery based on in vitro …
cells (GSCs) that initiate tumors. Traditional anticancer drug discovery based on in vitro …
Early transcriptional events linked to induction of diapause revealed by RNAseq in larvae of drosophilid fly, Chymomyza costata
R Poupardin, K Schöttner, J Korbelová, J Provazník… - BMC genomics, 2015 - Springer
Background Diapause is a developmental alternative to direct ontogeny in many
invertebrates. Its primary adaptive meaning is to secure survival over unfavourable seasons …
invertebrates. Its primary adaptive meaning is to secure survival over unfavourable seasons …
Epigenetic influences on diapause
JA Reynolds - Advances in insect physiology, 2017 - Elsevier
Diapause is an endogenously regulated dormant state that allows insects and other animals
to survive seasons of inimical conditions. Diapause is characterized by altered gene …
to survive seasons of inimical conditions. Diapause is characterized by altered gene …
The DPY30 subunit in SET1/MLL complexes regulates the proliferation and differentiation of hematopoietic progenitor cells
Epigenetic mechanisms, including histone modifications, have emerged as important factors
influencing cell fate determination. The functional role of H3K4 methylation, however …
influencing cell fate determination. The functional role of H3K4 methylation, however …
[HTML][HTML] DPY30 promotes proliferation and cell cycle progression of colorectal cancer cells via mediating H3K4 trimethylation
WC Su, XM Mao, SY Li, CY Luo, R Fan… - … journal of medical …, 2023 - ncbi.nlm.nih.gov
DPY30, a core subunit of the SET1/MLL histone H3K4 methyltransferase complexes, plays
an important role in diverse biological functions through the epigenetic regulation of gene …
an important role in diverse biological functions through the epigenetic regulation of gene …
ZNF524 directly interacts with telomeric DNA and supports telomere integrity
H Braun, Z Xu, F Chang, N Viceconte, G Rane… - Nature …, 2023 - nature.com
Telomeres are nucleoprotein structures at the ends of linear chromosomes. In humans, they
consist of TTAGGG repeats, which are bound by dedicated proteins such as the shelterin …
consist of TTAGGG repeats, which are bound by dedicated proteins such as the shelterin …
Molecular basis for DPY-30 association to COMPASS-like and NURF complexes
V Tremblay, P Zhang, CP Chaturvedi, J Thornton… - Structure, 2014 - cell.com
DPY-30 is a subunit of mammalian COMPASS-like complexes (complex of proteins
associated with Set1) and regulates global histone H3 Lys-4 trimethylation. Here we report …
associated with Set1) and regulates global histone H3 Lys-4 trimethylation. Here we report …
Transient methionine deprivation triggers histone modification and potentiates differentiation of induced pluripotent stem cells
H Ozawa, A Kambe, K Hibi, S Murakami, A Oikawa… - Stem Cells, 2023 - academic.oup.com
Human induced pluripotent stem cells (iPSCs) require high levels of methionine (Met). Met
deprivation results in a rapid decrease in intracellular S-adenosyl-methionine (SAM) …
deprivation results in a rapid decrease in intracellular S-adenosyl-methionine (SAM) …