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Vesicular transport of peroxidase in human eosinophilic myelocytes
A M Dvorak1, P Estrella, T Ishizaka
1Department of Pathology, Beth Israel Hospital, Boston, MA 02215.
Abstract:
We performed ultrastructural cytochemistry to detect peroxidase in developmentally arrested human eosinophilic myelocytes. Human umbilical cord blood mononuclear cells were cultured for 21 days in the presence of murine-derived conditioned media, resulting in the development of eosinophilic myelocytes. Unlike normally developing eosinophilic myelocytes, which contain peroxidase in synthetic organelles (i.e. cisterns surrounding the nucleus and bounded by the rough endoplasmic reticulum and Golgi structures) and in immature and mature granules, the developmentally arrested cells showed ultrastructural evidence of decreased synthesis and secretory transport of peroxidase. Thus, peroxidase was generally absent in the perinuclear and rough endoplasmic cisterns, in Golgi structures, in immature granules and in the matrix compartment of most mature granules. Rather, biocompartmental specific granules displayed empty, peroxidase-negative matrix and central, peroxidase-negative core material. Peroxidase was present in perigranular vesicles, some of which were attached to granules. Such peroxidase-loaded transport vesicles are similar to those that effect piecemeal degranulation of mature human eosinophils cultured in rhIL-5-containing media [1]. These findings establish vesicle-mediated piecemeal degranulation in the secretory repertoire of immature human eosinophils and suggest the possibility that eosinophilic myelocytes may participate in vivo in important physiological and/or pathological events that require selective secretion from the specific granule matrix compartment.
Insights
Developmentally arrested human eosinophilic myelocytes show reduced peroxidase synthesis and transport. These cells exhibit abnormal granules and utilize vesicle-mediated piecemeal degranulation, suggesting a role in immune responses.
Area of Science:
- Hematology
- Cell Biology
- Immunology
Background:
- Eosinophilic myelocytes are precursors to mature eosinophils.
- Peroxidase is a key enzyme in eosinophil granules.
- Understanding eosinophil development is crucial for immunology.
Purpose of the Study:
- To investigate peroxidase localization in developmentally arrested human eosinophilic myelocytes.
- To elucidate the secretory mechanisms of these arrested cells.
Main Methods:
- Ultrastructural cytochemistry was used to detect peroxidase.
- Human umbilical cord blood mononuclear cells were cultured.
- Developmentally arrested eosinophilic myelocytes were analyzed.
Main Results:
- Arrested cells showed decreased peroxidase synthesis and transport.
- Peroxidase was absent in synthetic organelles and immature granules.
- Specific granules were peroxidase-negative, with peroxidase found in perigranular vesicles.
Conclusions:
- Developmentally arrested eosinophilic myelocytes display impaired peroxidase handling.
- Vesicle-mediated piecemeal degranulation is identified in immature eosinophils.
- These cells may participate in vivo in physiological or pathological events.