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[Three PHEX gene mutations in Chinese subjects with hypophosphatemic rickets and literature review]
Shuang Liu1, Min Wei, Juan Xiao
1Department of Pediatrics, Peking Union Medical College Hospital , Beijing 100730, China. zhengqingqiu33@aliyun.com.
Insights
This study identified a novel PHEX gene mutation in Chinese children with X-linked hypophosphatemia (XLH). Exon 22 is a key mutation site for XLH in China.
Area of Science:
- Genetics
- Pediatrics
- Endocrinology
Context:
- X-linked hypophosphatemia (XLH) is a genetic disorder affecting phosphate metabolism.
- The phosphate-regulating gene with homologies to endopeptidases on the X chromosome (PHEX) is implicated in XLH.
- Understanding PHEX mutations is crucial for diagnosing and managing XLH.
Purpose:
- To analyze PHEX gene mutations in Chinese children diagnosed with XLH.
- To review and compare global and Chinese PHEX mutation data.
- To identify novel PHEX mutations in the Chinese XLH population.
Summary:
- Retrospective analysis of three Chinese XLH patients revealed PHEX gene mutations, including a novel splicing mutation (c.436+1G>A).
- Global data show 329 PHEX mutations, with missense mutations being most common (24%).
- In China, 89 XLH cases with 28 PHEX mutation types are reported, with exon 22 being the most frequent site (18%) and missense mutations the most common (61%).
Impact:
- Identifies exon 22 as a mutation hotspot and missense mutations as the most common type in Chinese XLH patients.
- Reports a novel PHEX gene mutation (c.436+1G>A) in Chinese individuals with XLH.
- Contributes to a better understanding of the genetic basis of XLH in diverse populations.
Abstract:
The clinical data of three Chinese children who had been definitely diagnosed with X-link dominate hypophosphatemic rickets (XLH) by gene mutation analysis of phosphate-regulating gene with homologies to endopeptidases on the X chromosome (PHEX) were retrospectively studied and the relevant literature was reviewed. PHEX gene mutations were detected in all 3 XLH children; a nonsense mutation (c.58C>T) in one case and splicing mutations (c.1645+1G>A, c.436+1G>A) in the other two cases. Among these mutations, c.436+1G>A was novel. As of January 2014, a total of 329 PHEX gene mutations were reported, primarily within three mutation hot spots, throughout the world. Missense mutations accounted for the highest proportion (24%) among all mutations. There is literature showing geographic differences in the total number of XLH subjects and PHEX mutation types across the world. In the current literature, 89 cases of XLH with 28 types of PHEX mutations have been reported in the population of mainland China. Exon 22 is the most frequent mutation site (18%) and missense mutations are the most common type of mutations (61%). It is concluded that exon 22 is the mutation hot spot and missense mutation is the most common type of mutation in the PHEX gene in Chinese XLH patients and that c.436+1G>A detected in this study is a novel PHEX gene mutation in Chinese with XLH.
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