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Analysis of children with familial short stature: who should be indicated for genetic testing?
Lukas Plachy1, Lenka Petruzelkova1, Petra Dusatkova1
1Department of Pediatrics, 2nd Faculty of Medicine, Charles University in Prague and University Hospital Motol, Prague, Czech Republic.
Insights
Monogenic familial short stature (FSS) is common in children treated with growth hormone (GH). Shorter parental height and less delayed bone age (BA) predict monogenic FSS, often caused by growth plate gene variants.
Area of Science:
- Genetics
- Pediatrics
- Endocrinology
Background:
- Familial short stature (FSS) is typically assumed to be polygenic.
- Monogenic inheritance is increasingly recognized as a significant cause of FSS.
- Clinical predictors for identifying monogenic FSS have not been well-established.
Purpose of the Study:
- To identify the monogenic causes of FSS in children.
- To determine clinical predictors that indicate monogenic FSS.
Main Methods:
- Studied 95 children with FSS treated with growth hormone (GH).
- Excluded secondary short stature and specific genetic syndromes.
- Utilized next-generation sequencing for genetic analysis and evaluated variants using ACMG guidelines.
- Employed nonparametric tests and ROC curve analysis to identify predictors.
Main Results:
- Monogenic FSS was confirmed in 38% of cases (36/95 children).
- Growth plate gene variants were the most frequent cause (81% of monogenic cases).
- Lower shorter parental height and less delayed bone age (BA) significantly predicted monogenic FSS.
Conclusions:
- Monogenic inheritance is a frequent cause of FSS in children receiving GH therapy.
- Gene variants impacting the growth plate are the primary genetic drivers of monogenic FSS.
- Shorter parental height and BA serve as valuable clinical predictors for identifying monogenic FSS.
Abstract:
Familial short stature (FSS) describes vertically transmitted growth disorders. Traditionally, polygenic inheritance is presumed, but monogenic inheritance seems to occur more frequently than expected. Clinical predictors of monogenic FSS have not been elucidated. The aim of the study was to identify the monogenic etiology and its clinical predictors in FSS children. Of 747 patients treated with growth hormone (GH) in our center, 95 with FSS met the inclusion criteria (pretreatment height ≤-2 SD in child and his/her shorter parent); secondary short stature and Turner/Prader-Willi syndrome were excluded criteria. Genetic etiology was known in 11/95 children before the study, remaining 84 were examined by next-generation sequencing. The results were evaluated by American College of Medical Genetics and Genomics (ACMG) guidelines. Nonparametric tests evaluated differences between monogenic and non-monogenic FSS, an ROC curve estimated quantitative cutoffs for the predictors. Monogenic FSS was confirmed in 36/95 (38%) children. Of these, 29 (81%) carried a causative genetic variant affecting the growth plate, 4 (11%) a variant affecting GH-insulin-like growth factor 1 (IGF1) axis and 3 (8%) a variant in miscellaneous genes. Lower shorter parent's height (P = 0.015) and less delayed bone age (BA) before GH treatment (P = 0.026) predicted monogenic FSS. In children with BA delayed less than 0.4 years and with shorter parent's heights ≤-2.4 SD, monogenic FSS was revealed in 13/16 (81%) cases. To conclude, in FSS children treated with GH, a monogenic etiology is frequent, and gene variants affecting the growth plate are the most common. Shorter parent's height and BA are clinical predictors of monogenic FSS.
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