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Updated: May 19, 2026

Detection of Nuclear Blebbing and DNA Leakage in Mammalian Cells by Immunofluorescence
Published on: January 17, 2025
Cytoplasmic localization of PML particles in laminopathies
F Houben1, W H De Vos, I P C Krapels
1Department of Molecular Cell Biology, CARIM, School for Cardiovascular Diseases, Maastricht University Medical Center, UNS50 Box 17, P.O. Box 616, NL-6200 MD, Maastricht, The Netherlands.
Abstract:
There is growing evidence that laminopathies, diseases associated with mutations in the LMNA gene, are caused by a combination of mechanical and gene regulatory distortions. Strikingly, there is a large variability in disease symptoms between individual patients carrying an identical LMNA mutation. This is why classical genetic screens for mutations appear to have limited predictive value for disease development. Recently, the widespread occurrence of repetitive nuclear ruptures has been described in fibroblast cultures from various laminopathy patients. Since this phenomenon was strongly correlated with disease severity, the identification of biomarkers that report on these rupture events could have diagnostic relevance. One such candidate marker is the PML nuclear body, a structure that is normally confined to the nuclear interior, but leaks out of the nucleus upon nuclear rupture. Here, we show that a variety of laminopathies shows the presence of these cytoplasmic PML particles (PML CPs), and that the amount of these protein aggregates increases with severity of the disease. In addition, between clinically healthy individuals, carrying LMNA mutations, significant differences can be found. Therefore, we postulate that detection of PML CPs in patient fibroblasts could become a valuable marker for diagnosis of disease development.
Insights
Laminopathies, linked to LMNA gene mutations, show nuclear ruptures. Cytoplasmic PML particles (PML CPs) correlate with disease severity, offering a potential diagnostic biomarker for laminopathy development.
Area of Science:
- Cell Biology
- Genetics
- Biomarker Discovery
Background:
- Laminopathies result from LMNA gene mutations, causing mechanical and regulatory cellular issues.
- Significant symptom variability exists among patients with identical LMNA mutations, limiting predictive value of genetic screening.
- Nuclear ruptures in fibroblasts correlate with laminopathy severity, suggesting potential diagnostic markers.
Purpose of the Study:
- To investigate PML nuclear bodies as potential biomarkers for laminopathy diagnosis.
- To correlate the presence and quantity of cytoplasmic PML particles (PML CPs) with laminopathy severity.
Main Methods:
- Analysis of fibroblast cultures from laminopathy patients.
- Detection and quantification of cytoplasmic PML particles (PML CPs).
- Correlation of PML CP levels with clinical disease severity.
Main Results:
- A variety of laminopathies exhibit cytoplasmic PML particles (PML CPs).
- The quantity of PML CPs increases proportionally with disease severity.
- Differences in PML CP levels are detectable even in clinically healthy individuals with LMNA mutations.
Conclusions:
- Cytoplasmic PML particles (PML CPs) are present in various laminopathies.
- PML CP detection in patient fibroblasts shows potential as a diagnostic marker for disease development.
- This biomarker could aid in predicting disease progression and severity.
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