Key result
Analysis of the GHR gene in 17 children with idiopathic short stature identified a novel heterozygous mutation (V144I) in one subject and neutral polymorphisms in eight subjects.
Observational (n=17)
Heterozygous GHR gene mutations can be found in a subset of children with idiopathic short stature and should be considered when other causes are ruled out.
Does not support routine GHR testing; leaves open a potential role for rare variants in idiopathic short stature.
Homozygous or compound heterozygous mutations in the GH receptor (GHR) gene result in GH insensitivity syndrome. Previous reports have shown that some heterozygous mutations may induce a partial insensitivity to GH, but others appear to have limited effect on growth. To investigate further these observations, we analyzed the GHR gene in 17 subjects with idiopathic short stature (ISS). All subjects had a height 2 SD or more below the mean and/or abnormal growth velocity. In addition, serum GH levels were 10 ng/mL or more and insulin-like growth factor I levels were normal or low. A novel heterozygous mutation resulting in a valine to isoleucine change (V144I) in exon 6 in the extracellular domain was found in one subject. His mother and one brother had significant short stature and also had the identical mutation. Affected family members also had a polymorphism in exon 6 of the GHR gene, which has been present in other subjects who had short stature and heterozygous mutations of the GHR gene. The other subjects with ISS had normal GHR genes. However, eight subjects had neutral polymorphisms distributed throughout the GHR locus. Accumulating evidence suggests that GHR gene mutations account for up to 5% of all ISS patients. These mutations should be considered when other causes of short stature have been eliminated.
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Sanchez et al. (1998) conducted an observational in Idiopathic short stature (n=17). GHR gene mutations vs. Normal GHR genes was evaluated on Presence of GHR gene mutations. Analysis of the GHR gene in 17 children with idiopathic short stature identified a novel heterozygous mutation (V144I) in one subject and neutral polymorphisms in eight subjects.
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