Figure 2.
Figure 2. Micrographs and Western blots of extruded nuclei and reticulocytes. (A) Bright field illumination (top panels) and fluorescence microscopy (bottom panels) of an extruded nucleus from FVA cell culture, a PE-Ter119–labeled reticulocyte from FVA cell culture, and a PE-Ter119–labeled reticulocyte from bone marrow. Retic indicates reticulocyte. For scale reference, the diameter of the nucleus is 4.4 μm. (B) Nuclear and reticulocyte proteins from 5 × 105 nuclei and 5 × 105 reticulocytes from FVA cell cultures, separated on a SDS-PAGE gel, were immunoblotted using monoclonal antibody Ter119. Results from both fluorescence microscopy and Western blot analysis showed that GPA sorted predominantly to reticulocytes. (C) Nuclear and reticulocyte proteins from 5 × 105 nuclei and 5 × 105 reticulocytes from FVA cell cultures, separated on a SDS-PAGE gel, were immunoblotted using monoclonal antibodies specific for EMP or β1 integrin subunit. Both EMP and β1 partitioned predominantly to nuclei.

Micrographs and Western blots of extruded nuclei and reticulocytes. (A) Bright field illumination (top panels) and fluorescence microscopy (bottom panels) of an extruded nucleus from FVA cell culture, a PE-Ter119–labeled reticulocyte from FVA cell culture, and a PE-Ter119–labeled reticulocyte from bone marrow. Retic indicates reticulocyte. For scale reference, the diameter of the nucleus is 4.4 μm. (B) Nuclear and reticulocyte proteins from 5 × 105 nuclei and 5 × 105 reticulocytes from FVA cell cultures, separated on a SDS-PAGE gel, were immunoblotted using monoclonal antibody Ter119. Results from both fluorescence microscopy and Western blot analysis showed that GPA sorted predominantly to reticulocytes. (C) Nuclear and reticulocyte proteins from 5 × 105 nuclei and 5 × 105 reticulocytes from FVA cell cultures, separated on a SDS-PAGE gel, were immunoblotted using monoclonal antibodies specific for EMP or β1 integrin subunit. Both EMP and β1 partitioned predominantly to nuclei.

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