[HTML][HTML] DNA methylation in hematopoietic development and disease
AV Gore, BM Weinstein - Experimental hematology, 2016 - Elsevier
Highlights•DNA methylation is an important epigenetic mechanism regulating gene
expression.•DNA methyltransferases add repressing or activating methyl “marks” to …
expression.•DNA methyltransferases add repressing or activating methyl “marks” to …
[HTML][HTML] DNA methylation in normal and malignant hematopoiesis
The study of DNA methylation has been a rapidly expanding field since its dawn in the
1960s. DNA methylation is an epigenetic modification that plays a crucial role in guiding the …
1960s. DNA methylation is an epigenetic modification that plays a crucial role in guiding the …
Impact of DNA methylation programming on normal and pre-leukemic hematopoiesis
Epigenome regulation is a critical mechanism that governs cell identity, lineage specification
and developmental cell fates. With the advent of low-input and single-cell technologies as …
and developmental cell fates. With the advent of low-input and single-cell technologies as …
[HTML][HTML] New answers to old questions from genome-wide maps of DNA methylation in hematopoietic cells
M Jeong, MA Goodell - Experimental hematology, 2014 - Elsevier
DNA methylation is a well-studied epigenetic modification essential for efficient cellular
differentiation. Aberrant DNA methylation patterns are a characteristic feature of cancer …
differentiation. Aberrant DNA methylation patterns are a characteristic feature of cancer …
[HTML][HTML] The old and the new: DNA and RNA methylation in normal and malignant hematopoiesis
AA Guirguis, BJ Liddicoat, MA Dawson - Experimental Hematology, 2020 - Elsevier
Highlights•DNA and RNA methylation is implicated in normal and aberrant
hematopoiesis.•These epigenetic marks are exploited in cancer to evade immune …
hematopoiesis.•These epigenetic marks are exploited in cancer to evade immune …
[PDF][PDF] DNA methylation dynamics of human hematopoietic stem cell differentiation
Hematopoietic stem cells give rise to all blood cells in a differentiation process that involves
widespread epigenome remodeling. Here we present genome-wide reference maps of the …
widespread epigenome remodeling. Here we present genome-wide reference maps of the …
The DNA methylation landscape of hematological malignancies: an update
P Blecua, L Martinez‐Verbo, M Esteller - Molecular Oncology, 2020 - Wiley Online Library
The rapid advances in high‐throughput sequencing technologies have made it more evident
that epigenetic modifications orchestrate a plethora of complex biological processes. During …
that epigenetic modifications orchestrate a plethora of complex biological processes. During …
DNA methylation as a therapeutic target in hematologic disorders: recent results in older patients with myelodysplasia and acute myeloid leukemia
B Rüter, PW Wijermans, M Lübbert - International journal of hematology, 2004 - Springer
DNA methylation provides a major epigenetic code (besides histone modification) of the
lineage-and developmentspecific genes (such as regulators of differentiation in the …
lineage-and developmentspecific genes (such as regulators of differentiation in the …
Genome-wide promoter DNA methylation dynamics of human hematopoietic progenitor cells during differentiation and aging
MT Bocker, I Hellwig, A Breiling… - Blood, The Journal …, 2011 - ashpublications.org
DNA methylation plays an important role in the self-renewal of hematopoietic stem cells and
in the commitment to the lymphoid or myeloid lineages. Using purified CD34+ hematopoietic …
in the commitment to the lymphoid or myeloid lineages. Using purified CD34+ hematopoietic …
DNA methyltransferases in hematologic malignancies
KK Li, LF Luo, Y Shen, J Xu, Z Chen, SJ Chen - Seminars in hematology, 2013 - Elsevier
DNA methyltransferases (DNMTs) are the key enzymes for genome methylation, which plays
an important role in epigenetically regulated gene expression and repression. Mouse …
an important role in epigenetically regulated gene expression and repression. Mouse …
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