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Updated: Feb 12, 2026

Investigating the Function of Coronin A in the Early Starvation Response of Dictyostelium discoideum by Aggregation Assays
Published on: June 18, 2016
From Phagocytes to Immune Defense: Roles for Coronin Proteins in Dictyostelium and Mammalian Immunity
Mayumi Mori1, Ravindra Mode1, Jean Pieters1
1Biozentrum, University of Basel, Basel, Switzerland.
Abstract:
Microbes have interacted with eukaryotic cells for as long as they have been co-existing. While many of these interactions are beneficial for both the microbe as well as the eukaryotic cell, several microbes have evolved into pathogenic species. For some of these pathogens, host cell invasion results in irreparable damage and thus host cell destruction, whereas others use the host to avoid immune detection and elimination. One of the latter pathogens is Mycobacterium tuberculosis, arguably one of the most notorious pathogens on earth. In mammalian macrophages, M. tuberculosis manages to survive within infected macrophages by avoiding intracellular degradation in lysosomes using a number of different strategies. One of these is based on the recruitment and phagosomal retention of the host protein coronin 1, that is a member of the coronin protein family and a mammalian homolog of coronin A, a protein identified in Dictyostelium. Besides mediating mycobacterial survival in macrophages, coronin 1 is also an important regulator of naïve T cell homeostasis. How, exactly, coronin 1 mediates its activity in immune cells remains unclear. While in lower eukaryotes coronins are involved in cytoskeletal regulation, the functions of the seven coronin members in mammals are less clear. Dictyostelium coronins may have maintained multiple functions, whereas the mammalian coronins may have evolved from regulators of the cytoskeleton to modulators of signal transduction. In this minireview, we will discuss the different studies that have contributed to understand the molecular and cellular functions of coronin proteins in mammals and Dictyostelium.
Insights
Coronin 1 protein helps Mycobacterium tuberculosis survive in macrophages by retaining phagosomes. This protein also regulates T cell homeostasis, but its precise immune cell functions require further investigation.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Microbe-eukaryotic cell interactions range from symbiotic to pathogenic.
- Mycobacterium tuberculosis survives within macrophages by evading lysosomal degradation.
- Coronin 1 is crucial for M. tuberculosis survival and naïve T cell homeostasis.
Purpose of the Study:
- To review the molecular and cellular functions of coronin proteins in mammals and Dictyostelium.
- To elucidate the role of coronin 1 in host-pathogen interactions and immune cell regulation.
Main Methods:
- Literature review of studies on coronin proteins in mammals and Dictyostelium.
- Analysis of coronin 1's role in M. tuberculosis survival mechanisms.
- Examination of coronin 1's function in T cell homeostasis.
Main Results:
- Coronin 1 facilitates M. tuberculosis survival by mediating phagosomal retention in macrophages.
- Coronin 1 is essential for maintaining naïve T cell homeostasis.
- Mammalian coronins may have evolved from cytoskeletal regulators to signal transduction modulators.
Conclusions:
- Coronin 1 plays a critical role in both pathogen survival and immune system regulation.
- Further research is needed to fully understand coronin 1's mechanisms in immune cells.
- Comparative analysis of coronins in different species highlights evolutionary divergence in function.
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