18don MSN
DNA transcription is a tightly choreographed event: How RNA polymerase II regulates the dance
Life's instructions are written in DNA, but it is the enzyme RNA polymerase II (Pol II) that reads the script, transcribing RNA in eukaryotic cells and eventually giving rise to proteins. Scientists ...
Researchers at The University of Texas MD Anderson Cancer Center have shown that DNA inflexibility, or rigidity, inside the nucleosome regulates the positioning of INO80. This highlights that the ...
AZoLifeSciences on MSN
DNA Rigidity Inside the Nucleosome Regulates INO80 Positioning
Researchers at The University of Texas MD Anderson Cancer Center have shown that DNA inflexibility, or rigidity, inside the nucleosome regulates the positioning of INO80. This highlights that the ...
HER2-targeted therapy showed durable and clinically meaningful results for patients with rare bile duct cancers Researchers identified promising therapeutic targets for KRAS-mutant cancers and kidney ...
Chongwei Shi Advances Genetic Research Through DNA Microarray Technology Principles and Applications
A recent study highlights how DNA microarray technology enables high-throughput gene analysis, supporting variation detection, expression profiling, and clinical research. By refining probe design and ...
Synergy graph illustrating the efficacy of the dual inhibition Mtb treatment strategy. (Credit: Campbell lab) Tuberculosis is both curable and ...
1don MSN
Chromatin accessibility maps reveal how stem cells drive myelodysplastic syndrome progression
Over the past few decades, advances in hematology have illuminated how a delicate balance between stem cell self-renewal and ...
Nobel laureate David Baker’s latest foundation model can design proteins that interact to any biomolecule for broad biotech applications.
HOUSTON, DECEMBER 4, 2025 ― At The University of Texas MD Anderson Cancer Center , research breakthroughs are made possible through seamless ...
News-Medical.Net on MSN
Researchers identify chromatin accessibility changes driving stem cell transformation in MDS
Over the past few decades, advances in hematology have illuminated how a delicate balance between stem cell self-renewal and ...
Myelodysplastic syndrome (MDS) arises from defective blood stem cells that progressively lose their normal functions.
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