Epigenetic modifications underlie all aspects of human physiology, including stem cell renewal, formation of cell types and tissues. They also underlie environmental impacts on human health, including aging and diseases like cancer. Consequently, cracking the epigenetic "code" is considered a key challenge in biomedical research.
Chromatin structure and function are modified by protein complexes, causing genes to be...
This book identifies RNA molecules associated with various chromatin-modifying machines. It explores the biological significance of chromatin machines in cancer (and the development and differentiation of stem cells).
This book identifies RNA molecules associated with various chromatin-modifying machines. It explores the biological significance of chromatin machines...