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Updated: Jan 12, 2026

Morphological and Compositional Analysis of Neutrophil Extracellular Traps Induced by Microbial and Chemical Stimuli
Published on: November 4, 2022
SCAMP3 is essential for proper formation and function of neutrophil granules
Almke Bader1, Jincheng Gao1, Nina Reiter1
1Institute of Cardiovascular Physiology and Pathophysiology, Biomedical Center, LMU Munich, Großhaderner Straße 9, 82152 Planegg-Martinsried, Germany.
Abstract:
Host defense functions of neutrophils during infection critically depend on microbicidal and proteolytic proteins stored in primary, secondary, and tertiary granules that are released into the phagosome or into the extracellular space upon degranulation. Granules are generated during granulopoiesis, and impaired granule production or granule protein sorting has been linked to inefficient pathogen clearance resulting in recurrent bacterial and fungal infections. Here, we studied the role of secretory carrier associated membrane protein 3 (SCAMP3) for neutrophil defense functions. We generated Scamp3 knockout (KO) Hoxb8 cells and found that killing of Escherichia coli by Scamp3 KO Hoxb8 cell-derived neutrophils (dHoxb8 cells) was compromised as compared with control dHoxb8 cells in vitro. Mass spectrometric and Western blot analyses revealed a significant reduction of primary, secondary, and tertiary granule proteins in the genetic absence of Scamp3, resulting in a reduced overall granularity of these cells. Accordingly, degranulation was reduced in Scamp3 KO dHoxb8 cells compared with control dHoxb8 cells. Similarly, Scamp3 deficiency in zebrafish resulted in reduced neutrophil granularity in comparison with wild-type animals. However, neutrophil migration toward sites of E. coli infection was unaffected in scamp3 KO zebrafish larvae. In summary, SCAMP3 represents an important novel player in granule equipment and degranulation, with key functions in neutrophil defense mechanisms during host-pathogen interactions in vitro.
Insights
Secretory carrier associated membrane protein 3 (SCAMP3) is crucial for neutrophil defense. SCAMP3 deficiency impairs neutrophil granule production and degranulation, compromising bacterial killing during infection.
Area of Science:
- Immunology
- Cell Biology
Background:
- Neutrophils are key immune cells that rely on granular proteins for pathogen clearance.
- Defects in neutrophil granule production or protein sorting lead to recurrent infections.
Purpose of the Study:
- To investigate the role of secretory carrier associated membrane protein 3 (SCAMP3) in neutrophil function.
- To determine SCAMP3's impact on neutrophil granule content and degranulation.
Main Methods:
- Generation of Scamp3 knockout (KO) Hoxb8 cells and derived neutrophils (dHoxb8 cells).
- In vitro bacterial killing assays with Escherichia coli.
- Mass spectrometry and Western blot analysis of granule proteins.
- Assessment of neutrophil degranulation and granularity.
- Analysis of neutrophil migration in scamp3 KO zebrafish larvae.
Main Results:
- Scamp3 KO dHoxb8 cells showed compromised killing of E. coli compared to controls.
- Absence of SCAMP3 led to a significant reduction in primary, secondary, and tertiary granule proteins.
- Scamp3 deficiency resulted in reduced overall neutrophil granularity and degranulation.
- Scamp3 deficiency in zebrafish also showed reduced neutrophil granularity, but migration was unaffected.
Conclusions:
- SCAMP3 is essential for proper neutrophil granule protein loading and degranulation.
- SCAMP3 plays a critical role in host defense against bacterial infections by equipping neutrophils.
- SCAMP3 is a novel and important factor in neutrophil-mediated immunity.
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