| Literature DB >> 28768959 |
Atsushi Hattori1,2, Yuko Katoh-Fukui1, Akie Nakamura1, Keiko Matsubara1, Tsutomu Kamimaki3, Hiroyuki Tanaka4, Sumito Dateki5, Masanori Adachi6, Koji Muroya6, Shinobu Yoshida7, Shinobu Ida8, Marie Mitani3, Keisuke Nagasaki9, Tsutomu Ogata10, Erina Suzuki1, Kenichiro Hata11, Kazuhiko Nakabayashi11, Yoichi Matsubara2,12, Satoshi Narumi1, Toshiaki Tanaka13, Maki Fukami1.
Abstract
Although mutations in ACAN, FGFR3, NPR2, and SHOX typically lead to skeletal dysplasia, and mutations in GHRHR, GH1, GHR, STAT5B, IGF1, IGFALS, and IGF1R usually underlie hormonal defects of the growth hormone (GH)-insulin-like growth factor 1 (IGF1) axis, such mutations have also been identified in patients with idiopathic short stature (ISS). Of these, SHOX abnormalities are known to account for a certain percentage of ISS cases, whereas the frequency of mutations in the other 10 genes in ISS cohorts remains unknown. Here, we performed next-generation sequencing-based mutation screening of the 10 genes in 86 unrelated Japanese ISS patients without SHOX abnormalities. We searched for rare protein-altering variants. The functional significance of the identified variants was assessed by in silico analyses. Consequently, we identified 18 heterozygous rare variants in 19 patients, including four probable damaging variants in ACAN, six pathogenicity-unknown variants in FGFR3, GHRHR, GHR, and IGFALS, and eight possible benign variants. Pathogenic variants in NPR2, GH1, and IGF1 were absent from our cohort. Unlike previously reported patients with ACAN mutations, our four patients with ACAN variants manifested non-specific short stature with age-appropriate or mildly delayed bone ages, and had parents of normal stature. These results indicate that ACAN mutations can underlie ISS without characteristic skeletal features, and that such mutations are possibly associated with de novo occurrence or low penetrance. In addition, our data imply that mutations in FGFR3, NPR2, and GH-IGF1 axis genes play only limited roles in the etiology of ISS.Entities:
Keywords: ACAN; Growth hormone - insulin-like grotwh factor 1; Idiopathic short stature; Mutation
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Year: 2017 PMID: 28768959 DOI: 10.1507/endocrj.EJ17-0150
Source DB: PubMed Journal: Endocr J ISSN: 0918-8959 Impact factor: 2.349