Evaluation of Cell Models to Study Monocyte Functions in PMM2 Congenital Disorders of Glycosylation

Paola de Haas1, Marien I de Jonge2, Hans J P M Koenen2

  • 1Department of Cell Biology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, Netherlands.

Insights

Congenital disorders of glycosylation (CDG) impact immune cells. Researchers developed models to study PMM2-CDG monocytes, finding PMM2 knockdown cells better mimic patient cells than tunicamycin models.

Area of Science:

  • Immunology
  • Metabolic Diseases
  • Glycoscience

Background:

  • Congenital disorders of glycosylation (CDG) are inherited metabolic diseases affecting protein glycosylation.
  • Immune cell dysfunction is increasingly recognized in CDG, but detailed studies are scarce.
  • Patient-derived immune cells are difficult to study due to low incidence and young patient age.

Purpose of the Study:

  • To investigate the immunophenotype and phagocytic function of primary PMM2-CDG monocytes.
  • To evaluate the suitability of two distinct glycosylation-impaired human monocyte models for PMM2-CDG research.
  • To compare PMM2-CDG patient monocytes with models using tunicamycin-treated and PMM2-knockdown THP-1 cells.

Main Methods:

  • Analysis of primary PMM2-CDG monocyte subpopulations and surface glycosylation using fluorescent lectin binding.
  • Assessment of phagocytic capacity of PMM2-CDG monocytes towards *C. albicans*.
  • Comparison of tunicamycin-treated THP-1 monocytes and PMM2-knockdown THP-1 monocytes for glycosylation, phagocytosis, and ER stress.

Main Results:

  • Primary PMM2-CDG monocytes showed anomalous surface glycosylation but no significant subpopulation differences.
  • PMM2-CDG monocytes exhibited slightly increased uptake of *C. albicans* compared to healthy controls.
  • PMM2-knockdown THP-1 cells, unlike tunicamycin-treated cells, did not show ER stress and better mimicked primary PMM2-CDG monocyte characteristics.

Conclusions:

  • PMM2-knockdown THP-1 cells represent a more suitable model for studying PMM2-CDG immune dysfunction than tunicamycin-treated cells.
  • The absence of ER stress in PMM2-knockdown cells makes them a better surrogate for primary PMM2-CDG monocytes.
  • Further development of CDG monocyte models is crucial for understanding CDG-related immune dysfunction mechanisms.

Related Concept Videos