Medical Genetics Unit, Biomedical Sciences, St. George's University of London, UK.
Am J Hum Genet. 2012 Feb 10;90(2):356-62. doi: 10.1016/j.ajhg.2011.12.018. Epub 2012 Jan 26.
We have identified KIF11 mutations in individuals with syndromic autosomal-dominant microcephaly associated with lymphedema and/or chorioretinopathy. Initial whole-exome sequencing revealed heterozygous KIF11 mutations in three individuals with a combination of microcephaly and lymphedema from a microcephaly-lymphedema-chorioretinal-dysplasia cohort. Subsequent Sanger sequencing of KIF11 in a further 15 unrelated microcephalic probands with lymphedema and/or chorioretinopathy identified additional heterozygous mutations in 12 of them. KIF11 encodes EG5, a homotetramer kinesin motor. The variety of mutations we have found (two nonsense, two splice site, four missense, and six indels causing frameshifts) are all predicted to have an impact on protein function. EG5 has previously been shown to play a role in spindle assembly and function, and these findings highlight the critical role of proteins necessary for spindle formation in CNS development. Moreover, identification of KIF11 mutations in patients with chorioretinopathy and lymphedema suggests that EG5 is involved in the development and maintenance of retinal and lymphatic structures.
我们在伴有淋巴管瘤和/或脉络膜视网膜病变的综合征性常染色体显性小头畸形相关个体中鉴定出 KIF11 突变。全外显子组测序最初揭示了小头畸形-淋巴管瘤-脉络膜视网膜发育不良队列中 3 名具有小头畸形和淋巴管瘤合并症的个体中存在杂合性 KIF11 突变。随后对另外 15 名伴有淋巴管瘤和/或脉络膜视网膜病变的无关联小头畸形先证者的 KIF11 进行 Sanger 测序,在其中 12 名患者中发现了额外的杂合突变。KIF11 编码 EG5,一种同源四聚体驱动蛋白。我们发现的突变种类(两个无义突变,两个剪接位点突变,四个错义突变和六个导致移码的缺失/插入)都预计会对蛋白功能产生影响。EG5 先前已被证明在纺锤体组装和功能中发挥作用,这些发现强调了对中枢神经系统发育中纺锤体形成必不可少的蛋白的关键作用。此外,在伴有脉络膜视网膜病变和淋巴管瘤的患者中鉴定出 KIF11 突变提示 EG5 参与视网膜和淋巴管结构的发育和维持。