De novo start-loss mutation in PHYKPL associated with a novel sclerosing and fibro-osseous bone dysplasia

Objectives: This study aimed to identify the genetic cause of bone dysplasia in a patient with fibro-osseous bone dysplasia. Methods: We performed longitudinal clinical, radiographic, biochemical, and molecular characterization (whole-exome sequencing) of a 20-year-old male presenting with an atypical severe sclerosing and fibro-osseous bone phenotype. Results: Over a 15-year clinical window, the patient demonstrated diffuse, mixed lytic and sclerotic lesions across the axial and appendicular skeleton, accelerated skeletal maturation, structural bone fragility resulting in an early pathological fracture, and marked metabolic osseous remodeling, as evidenced by chronically elevated alkaline phosphatase. A novel, de novo start-loss mutation in the PHYKPL gene (NM_153373.4:c.2T>C (p.?) was identified in this patient. Conclusion: This study describes a novel candidate dominant phenotype associated with a de novo PHYKPL variant. These findings introduce a novel candidate gene-disease association that warrants future confirmatory studies to define its role in skeletal metabolic matrix health.

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Publication Details

Journal
Journal of Musculoskeletal Surgery and Research
Published
2026-09-11
DOI
https://doi.org/10.25259/jmsr_313_2026
Primary Topic
Alkaline Phosphatase Research Studies
Type
article
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article

De novo start-loss mutation in PHYKPL associated with a novel sclerosing and fibro-osseous bone dysplasia

Naif A.M. Almontashiri
Journal of Musculoskeletal Surgery and Research
Alkaline Phosphatase Research Studies
article

De novo start-loss mutation in PHYKPL associated with a novel sclerosing and fibro-osseous bone dysplasia

Naif A.M. Almontashiri
article en

Abstract

Objectives: This study aimed to identify the genetic cause of bone dysplasia in a patient with fibro-osseous bone dysplasia. Methods: We performed longitudinal clinical, radiographic, biochemical, and molecular characterization (whole-exome sequencing) of a 20-year-old male presenting with an atypical severe sclerosing and fibro-osseous bone phenotype. Results: Over a 15-year clinical window, the patient demonstrated diffuse, mixed lytic and sclerotic lesions across the axial and appendicular skeleton, accelerated skeletal maturation, structural bone fragility resulting in an early pathological fracture, and marked metabolic osseous remodeling, as evidenced by chronically elevated alkaline phosphatase. A novel, de novo start-loss mutation in the PHYKPL gene (NM_153373.4:c.2T>C (p.?) was identified in this patient. Conclusion: This study describes a novel candidate dominant phenotype associated with a de novo PHYKPL variant. These findings introduce a novel candidate gene-disease association that warrants future confirmatory studies to define its role in skeletal metabolic matrix health.

Journal of Musculoskeletal Surgery and ResearchVol. 0
Taibah University (SA)
Good health and well-being
Openalex Percentile: Top 11%
Alkaline Phosphatase Research Studies
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De novo start-loss mutation in PHYKPL associated with a novel sclerosing and fibro-osseous bone dysplasia — Naif A.M. Almontashiri · Journal of Musculoskeletal Surgery and Research (2026) | TGRS Research Map | TGRS