• Medicine · Dec 2023

    Case Reports

    Retinitis pigmentosa with or without skeletal abnormalities due to homozygous mutations in the CWC27 gene: A case report.

    • Yang-Fan Qi, Xiaoping Ma, Shuang-Zhu Lin, Wan-Qi Wang, Jia-Yi Li, Qian-Dui Chen, and Li Liu.
    • Changchun University of Chinese Medicine, Changchun, Jilin Province, China.
    • Medicine (Baltimore). 2023 Dec 22; 102 (51): e36357e36357.

    RationaleRetinitis pigmentosa with or without skeletal abnormalities (RPSKA) is an autosomal recessive disorder caused by mutations in the CWC27 gene. Skeletal dysplasia and non-syndromic retinitis pigmentosa are typical manifestations, and most patients present with retinopathy such as retinitis pigmentosa and limited visual field. Its clinical manifestations are complex and diverse, often involving multiple systems. Examples include short finger deformities, peculiar facial features, short stature, and neurodevelopmental abnormalities, and it is easy to misdiagnose clinically, and early diagnosis is crucial for prognosis.Patient ConcernsA 2-year and 2-month-old female child was admitted to the hospital due to "unsteady walking alone and slow reaction for more than half a year." After admission, the child was found to have delayed motor development, accompanied by special face, abnormal physical examination of the nervous system, cranial MRI Dandy-Walker malformation, considering developmental delay.DiagnosesWhole exome sequencing of the family line revealed the presence of a c.617(exon7)C>A pure mutation in the CWC27 gene in the affected child (this locus has been reported in the clinical literature); the final diagnosis is RPSKA.InterventionsUnfortunately, there is no specific drug for the disease; we give children rehabilitation training treatment.OutcomesDuring follow-up process we found that children's condition is better than before.Lessons Subsections As Per StyleWe reported a case of RPSKA caused by mutations in the CWC27 gene. This study adds to our understanding of the clinical phenotype of TBL1XR1 mutations and provides a realistic and reliable basis for clinicians.Copyright © 2023 the Author(s). Published by Wolters Kluwer Health, Inc.

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