Figure 4.
Figure 4. Undifferentiated hematopoietic cells have more open and dynamic chromatin than differentiated cells. (A) Levels of active (Me-H3K4) and repressive (Di-Me-H3K9) histone modifications and acetylation of histones (Ac-H3K9/14, Ac-H4) were compared at different stages in human (left row) and murine (right row) hematopoietic cells. (B) Protein expression levels of each indicated histone-modifying enzymes from human (left) and murine (right) hematopoietic cells. (C-D) Pulse-chase labeling of histone acetylation in lineage-negative (Linβˆ’) and lineage-positive (Lin+) murine bone marrow cells (C) and in human CD34+ and CD34βˆ’ cells (D). (Top panels) Autoradiography of immunoprecipitations using the antibodies as indicated from 106 input cells. Inp indicates input cells; IgG, immunoprecipitation with isotype IgG; Ac-H4, immunoprecipitation with antibody against acetylated H4. (Bottom panels) Immunoblots using antibody against total form of H4 from 106 input cells.

Undifferentiated hematopoietic cells have more open and dynamic chromatin than differentiated cells. (A) Levels of active (Me-H3K4) and repressive (Di-Me-H3K9) histone modifications and acetylation of histones (Ac-H3K9/14, Ac-H4) were compared at different stages in human (left row) and murine (right row) hematopoietic cells. (B) Protein expression levels of each indicated histone-modifying enzymes from human (left) and murine (right) hematopoietic cells. (C-D) Pulse-chase labeling of histone acetylation in lineage-negative (Linβˆ’) and lineage-positive (Lin+) murine bone marrow cells (C) and in human CD34+ and CD34βˆ’ cells (D). (Top panels) Autoradiography of immunoprecipitations using the antibodies as indicated from 106 input cells. Inp indicates input cells; IgG, immunoprecipitation with isotype IgG; Ac-H4, immunoprecipitation with antibody against acetylated H4. (Bottom panels) Immunoblots using antibody against total form of H4 from 106 input cells.

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