| Literature DB >> 28018607 |
Wenjin Yan1, Jin Dai1, Zhihong Xu1, Dongquan Shi1, Dongyang Chen1, Xingquan Xu1, Kai Song1, Yao Yao1, Lan Li1, Shiro Ikegawa2, Huajian Teng3, Qing Jiang1.
Abstract
Progressive pseudorheumatoid dysplasia (PPD) is a rare disease caused by mutations in the gene for Wnt1-inducible signaling pathway protein 3 (WISP3). Here, we report the clinical and radiographic manifestations of two Chinese PPD patients. We performed whole-exome sequencing for one patient and sequenced the WISP3 for the other. Three WISP3 mutations (c.396T>G, c.721T>G and c.679dup) were identified; the two missense mutations were novel. Our study expanded the WISP3 mutation spectrum.Entities:
Year: 2016 PMID: 28018607 PMCID: PMC5143363 DOI: 10.1038/hgv.2016.41
Source DB: PubMed Journal: Hum Genome Var ISSN: 2054-345X
Figure 1Radiographic features of the two patients with progressive pseudorheumatoid dysplasia. (a–e) Patient 1 at age 15. (f–i) Patient 2 at age 17. (a, b) Thoracolumbar spine. Platyspondyly with anterior breaking of the vertebral bodies. (c) Pelvis. Narrow joint spaces and subluxation of the hip joints and irregular densities and cyst-like structures in the femoral head and neck. (d) Knee. The articular surface was flat and irregular, and the joint space was narrow. (e) Hand. Enlargement of the interphalangeal and metacarpal epiphyses. (f) Chest. Decreased heights of the vertebrae. (g–i) Large joints of the lower extremities showed narrow joint spaces.
Figure 2WISP3 mutations in the patients with progressive pseudorheumatoid dysplasia. (a) Family of patient 1. Patient 1 was a compound heterozygote of the mutationsc.396T>G [p.(C132W)]and c.721T>G [p.(C241G)]. Mother of patient 1 was confirmed to have one mutation (c.396T>G of WISP), whereas father and brother of patient 1 were confirmed to have the other mutation (c.721T>G of WISP). This suggested that the two mutations in patient 1 were compound. Neither of the two mutations was present in the 50 controls. (b) Family of patient 2. Patient 2 was a homozygote of the mutation c.679dup [p.(C227Lfs*21)]. The frameshift mutation of the carrier parents needs to be read in theelectropherogram on both the forward and reverse sides. (c) Amino acid alignments in different species around the missense mutation. p.C132and p.C241 are highly evolutionarily conserved.