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Updated: Aug 11, 2025

Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Prolidase deficiency: A novel PEPD missense variant in exon 2
Firas Ido1, Steven Tessier2, Nicole Yoder1
1Department of Pulmonary and Critical Care, St. Luke's University Health Network, Bethlehem, Pennsylvania, USA.
Insights
Prolidase deficiency, a rare genetic disorder, impairs collagen breakdown, leading to severe health issues. This case highlights a novel genetic variant causing skeletal deformities and chronic infections.
Area of Science:
- Genetics
- Biochemistry
- Pathology
Background:
- Prolidase deficiency is a rare autosomal recessive disorder affecting collagen degradation.
- It leads to the accumulation of proline- and hydroxyproline-containing imidodipeptides.
- Clinical features include dysmorphic features, skeletal deformities, skin ulcers, and recurrent infections.
Observation:
- A case study of prolidase deficiency presenting with skeletal malformations and lifelong multisystemic infections.
- Genetic analysis identified a novel homozygous missense variant (c.200A>G, p.Gln67Arg) in the PEPD gene.
- Urine amino acid analysis revealed elevated proline levels post-hydrolysis.
Findings:
- The novel PEPD gene variant is associated with impaired collagen degradation and imidodipeptide accumulation.
- The patient exhibited characteristic clinical manifestations, including skeletal deformities and recurrent infections.
- Diagnostic confirmation involved genetic testing and biochemical analysis of urine amino acids.
Implications:
- This case expands the understanding of genetic variants in prolidase deficiency.
- Highlights the importance of genetic and biochemical diagnostics for rare diseases.
- Provides insights into the pathophysiology and management of prolidase deficiency.
Abstract:
Prolidase deficiency is an autosomal recessive disease that causes impaired collagen degradation. Altered collagen homeostasis results in the intracellular accumulation of imidodipeptides, which contain proline and hydroxyproline. The many clinical manifestations of prolidase deficiency include dysmorphic facial features, skeletal deformities, hepatosplenomegaly, necrotizing skin ulcers, and recurrent infections. Current clinical knowledge of this genetic disease relies upon few case reports due to its extreme rarity. Diagnosis is dependent on the detection of a pathologic gene variant. Additional diagnostic confirmation may be provided by urine amino acid quantification or reduced in vitro prolidase activity. We present a case of prolidase deficiency caused by a novel variant manifested by skeletal malformations and lifelong multisystemic infections. Genetic testing revealed a homozygous missense variant in the PEPD gene at nucleotide position 200, whereby adenine was replaced by guanine (c.200A > G). The corresponding amino acid change replaced glutamine with arginine at codon 67 (p.Gln67Arg). After boiling the urine sample for hydrolysis, quantitative urine amino acids demonstrated a markedly elevated proline level, confirming the diagnosis. We also provide a discussion of the pathophysiology, clinical manifestations, diagnostic testing, and clinical management of this disease.
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