Related Experiment Video
Updated: Feb 3, 2026

Visualizing Macrophage Extracellular Traps Using Confocal Microscopy
Published on: October 19, 2017
Utilization of macrophage extracellular trap nucleotides by Mycoplasma hyopneumoniae
Clair R Henthorn1,2,3, F Chris Minion4,2, Orhan Sahin3,2
1†Present address: Promega Corporation, 2800 Woods Hollow Road, Madison, WI 53711, USA.
Abstract:
Mycoplasma hyopneumoniae is the causative agent of enzootic pneumonia in swine, an important disease worldwide. It has finite biosynthetic capabilities, including a deficit in de novo nucleotide synthesis. The source(s) for nucleotides in vivo are unknown, but mycoplasmas are known to carry membrane-bound nucleases thought to participate in the acquisition of nucleotides from host genomic DNA. Recent research has demonstrated that neutrophils can produce extracellular traps (NETs), chromatin NETs decorated with granular proteins to interact with and eliminate pathogens. We hypothesized that M. hyopneumoniae could utilize its membrane nuclease to obtain nucleotides from extracellular traps to construct its own DNA. Using the human monocytic cell line THP-1, we induced macrophage extracellular traps (METs), which are structurally similar to NETs. The thymidine analogue ethynyl deoxyuridine (EdU) was incorporated into THP-1 DNA and METs were induced. When incubated with M. hyopneumoniae, METs were degraded and the modified nucleotide label could be co-localized within M. hyopneumoniae DNA. When the nucleases were inhibited, MET degradation and nucleotide transfer were also inhibited. Controls confirmed that the EdU originated directly from the METs and not from free nucleotides arising from intracellular pools released during extrusion of the chromosomal DNA. M. hyopneumoniae incorporated labelled nucleotides more efficiently when 'fed' on METs than from free nucleotides in the medium, suggesting a tight linkage between nuclease degradation of DNA and nucleotide transport. These results strongly suggest that M. hyopneumoniae could degrade extracellular traps formed in vivo during infection and incorporate those host nucleotides into its own DNA.
Insights
Mycoplasma hyopneumoniae scavenges nucleotides from host macrophage extracellular traps (METs) using its nucleases. This mechanism allows the bacteria to acquire essential DNA building blocks during infection.
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Mycoplasma hyopneumoniae causes swine enzootic pneumonia and lacks nucleotide synthesis pathways.
- Mycoplasmas possess nucleases for acquiring host DNA nucleotides.
- Neutrophils and macrophages produce extracellular traps (NETs/METs) to trap pathogens.
Purpose of the Study:
- To investigate if Mycoplasma hyopneumoniae utilizes macrophage extracellular traps (METs) as a source of nucleotides.
- To determine the role of M. hyopneumoniae nucleases in acquiring nucleotides from METs.
Main Methods:
- Macrophage extracellular traps (METs) were generated from THP-1 cells labeled with ethynyl deoxyuridine (EdU).
- METs were incubated with M. hyopneumoniae, and DNA degradation and nucleotide incorporation were analyzed.
- Nuclease activity was inhibited to assess its role in MET degradation and nucleotide transfer.
Main Results:
- M. hyopneumoniae degraded EdU-labeled METs, incorporating the modified nucleotides into its own DNA.
- Inhibition of M. hyopneumoniae nucleases blocked MET degradation and nucleotide transfer.
- Nucleotide incorporation from METs was more efficient than from free nucleotides, indicating a direct utilization pathway.
Conclusions:
- Mycoplasma hyopneumoniae can effectively degrade host extracellular traps to obtain nucleotides for DNA synthesis.
- This nuclease-mediated scavenging of host DNA from METs is a likely in vivo survival strategy for M. hyopneumoniae.
Related Concept Videos
Nucleotide Excision Repair
Nucleotide Excision Repair
Cells are regularly exposed to mutagens—factors in the environment that can damage DNA and generate mutations. UV radiation is one of the most common mutagens and is estimated to introduce a significant number of changes in DNA. These include bends or kinks in the structure, which can block DNA replication or transcription. If these errors are not fixed, the damage can cause mutations, which in turn can result in cancer or disease depending on which sequences are...
Social Traps
The Extracellular Matrix
The Extracellular Matrix
In order to maintain tissue organization, many animal cells are surrounded by structural molecules that make up the extracellular matrix (ECM). Together, the molecules in the ECM maintain the structural integrity of tissue as well as the remarkable specific properties of certain tissues.
Composition of the Extracellular Matrix
The extracellular matrix (ECM) is commonly composed of ground substance, a gel-like fluid, fibrous components, and many structurally and functionally diverse...
Nucleic Acids and Nucleotides
Deoxyribonucleic Acid (DNA)
DNA is the genetic material in all living organisms, ranging from single-celled bacteria to multicellular mammals. It is in the nucleus of eukaryotes and the organelles such as chloroplasts and mitochondria....

