TY - JOUR
T1 - Axial spondylometaphyseal dysplasia is also caused by NEK1 mutations
AU - Wang, Zheng
AU - Horemuzova, Eva
AU - Iida, Aritoshi
AU - Guo, Long
AU - Liu, Ying
AU - Matsumoto, Naomichi
AU - Nishimura, Gen
AU - Nordgren, Ann
AU - Miyake, Noriko
AU - Tham, Emma
AU - Grigelioniene, Giedre
AU - Ikegawa, Shiro
N1 - Publisher Copyright:
© 2017 The Japan Society of Human Genetics.
PY - 2017/4/1
Y1 - 2017/4/1
N2 - Axial spondylometaphyseal dysplasia (axial SMD) is a unique form of SMD characterized by dysplasia of axial skeleton and retinal dystrophy. Recently, C21orf2 has been identified as the first disease gene for axial SMD; however, the presence of genetic heterogeneity is known. In this study, we identified NEK1 as the second disease gene for axial SMD. By whole-exome sequencing in a patient with axial SMD, we identified compound heterozygous mutations of NEK1, c.3107C>G (p.S1036∗) and c.3830A>C (p.D1277A), which co-segregated in the family. NEK1 mutations have previously been found in three types of short rib thoracic dystrophy, which have no retinal dystrophy. The skeletal phenotype of our patient was milder than those of previously reported cases with NEK1 mutations and those with axial SMD harboring C21orf2 mutations. Phenotypes associated with NEK1 mutations are variable and the phenotype-genotype corelation in skeletal ciliopathies is challenging.
AB - Axial spondylometaphyseal dysplasia (axial SMD) is a unique form of SMD characterized by dysplasia of axial skeleton and retinal dystrophy. Recently, C21orf2 has been identified as the first disease gene for axial SMD; however, the presence of genetic heterogeneity is known. In this study, we identified NEK1 as the second disease gene for axial SMD. By whole-exome sequencing in a patient with axial SMD, we identified compound heterozygous mutations of NEK1, c.3107C>G (p.S1036∗) and c.3830A>C (p.D1277A), which co-segregated in the family. NEK1 mutations have previously been found in three types of short rib thoracic dystrophy, which have no retinal dystrophy. The skeletal phenotype of our patient was milder than those of previously reported cases with NEK1 mutations and those with axial SMD harboring C21orf2 mutations. Phenotypes associated with NEK1 mutations are variable and the phenotype-genotype corelation in skeletal ciliopathies is challenging.
UR - https://www.scopus.com/pages/publications/85016315326
U2 - 10.1038/jhg.2016.157
DO - 10.1038/jhg.2016.157
M3 - 文章
C2 - 28123176
AN - SCOPUS:85016315326
SN - 1434-5161
VL - 62
SP - 503
EP - 506
JO - Journal of Human Genetics
JF - Journal of Human Genetics
IS - 4
ER -