Che Ruochen, Wang Chunli, Huang Songming, Zheng Bixia, Li Huixia, Cheng Xueqin, Zhao Fei, Ding Guixia, Jia Zhanjun, Zhang Aihua
Department of Nephrology, Children's Hospital of Nanjing Medical University, Nanjing, China.
Nanjing Key Laboratory of Pediatrics, Children's Hospital of Nanjing Medical University, Nanjing, China.
Clin Genet. 2023 Feb;103(2):179-189. doi: 10.1111/cge.14255. Epub 2022 Nov 13.
The "toe syndactyly, telecanthus and anogenital and renal malformations" (STAR) syndrome is a rare X-linked dominant inherited kidney ciliopathy caused by CCNQ gene mutations. Here, we investigated the genotype and phenotype in the first two twin sisters with a novel tail extension CCNQ variant in Asia. Genetic variants of the pedigree were screened using whole-exome sequence analysis and validated by direct Sanger sequencing. The genetic function was investigated through cultured cells and zebrafish embryos transfected with mutant. The proband is suffered from end-stage renal disease, telecanthus, scoliosis, anal atresia, bilateral hydronephrosis pyeloureter dilation and hearing loss, while her twin sister had milder phenotypes. A novel heterozygous variant c.502_518delinsA (p.Val168SerfsTer173) in CCNQ gene was identified in the twins and their asymptomatic mosaic mother. The concurrent deletion of 17 bases and insertion of one base variant led to the loss of 5 amino acids, subsequently caused a 96 more amino acids tail extension delaying the appearance of stop codon. The loss-of-function variant of CCNQ not only led to the impaired expression of cyclin M but also increased the binding affinity of CDK10-cyclin M complex, which is different from the previous study. The research expanded the genotypic and phenotypic spectrum of STAR syndrome.
“趾并指、内眦距增宽及肛门生殖器和肾脏畸形”(STAR)综合征是一种由CCNQ基因突变引起的罕见X连锁显性遗传性肾脏纤毛病。在此,我们对亚洲首例携带新型CCNQ基因尾部延伸变异的双胞胎姐妹进行了基因型和表型研究。通过全外显子测序筛选家系的基因变异,并通过直接Sanger测序进行验证。通过转染突变体的培养细胞和斑马鱼胚胎研究基因功能。先证者患有终末期肾病、内眦距增宽、脊柱侧凸、肛门闭锁、双侧肾盂积水伴肾盂输尿管扩张和听力损失,而她的双胞胎姐妹表型较轻。在这对双胞胎及其无症状的嵌合型母亲中鉴定出CCNQ基因的一种新型杂合变异c.502_518delinsA(p.Val168SerfsTer173)。17个碱基的同时缺失和一个碱基变异的插入导致5个氨基酸的缺失,随后导致多96个氨基酸的尾部延伸,延迟了终止密码子的出现。CCNQ的功能丧失变异不仅导致细胞周期蛋白M的表达受损,还增加了CDK10 - 细胞周期蛋白M复合物的结合亲和力,这与之前的研究不同。该研究扩展了STAR综合征的基因型和表型谱。