Hansen Lars, Comyn Sophie, Mang Yuan, Lind-Thomsen Allan, Myhre Layne, Jean Francesca, Eiberg Hans, Tommerup Niels, Rosenberg Thomas, Pilgrim David
1] Wilhelm Johannsen Centre for Functional Genome Research, Panum Institute, University of Copenhagen, Copenhagen, Denmark [2] Institute of Cellular and Molecular Medicine, Panum Institute, University of Copenhagen, Copenhagen, Denmark.
Department of Biological Sciences, CW-405 Biological Sciences Building, University of Alberta, Edmonton, Alberta, Canada.
Eur J Hum Genet. 2014 Nov;22(11):1290-7. doi: 10.1038/ejhg.2014.21. Epub 2014 Feb 19.
Genome-wide linkage analysis, followed by targeted deep sequencing, in a Danish multigeneration family with juvenile cataract revealed a region of chromosome 17 co-segregating with the disease trait. Affected individuals were heterozygous for two potentially protein-disrupting alleles in this region, in ACACA and UNC45B. As alterations of the UNC45B protein have been shown to affect eye development in model organisms, effort was focused on the heterozygous UNC45B missense mutation. UNC45B encodes a myosin-specific chaperone that, together with the general heat shock protein HSP90, is involved in myosin assembly. The mutation changes p.Arg805 to Trp in the UCS domain, an amino acid that is highly conserved from yeast to human. UNC45B is strongly expressed in the heart and skeletal muscle tissue, but here we show expression in human embryo eye and zebrafish lens. The zebrafish mutant steif, carrying an unc45b nonsense mutation, has smaller eyes than wild-type embryos and shows accumulation of nuclei in the lens. Injection of RNA encoding the human wild-type UNC45B protein into the steif homozygous embryo reduced the nuclei accumulation and injection of human mutant UNC45B cDNA in wild-type embryos resulted in development of a phenotype similar to the steif mutant. The p.Arg805Trp alteration in the mammalian UNC45B gene suggests that developmental cataract may be caused by a defect in non-muscle myosin assembly during maturation of the lens fiber cells.
在一个患有青少年白内障的丹麦多代家族中进行全基因组连锁分析,随后进行靶向深度测序,结果显示17号染色体上有一个区域与疾病性状共分离。在该区域的ACACA和UNC45B基因中,受影响的个体对于两个可能破坏蛋白质的等位基因是杂合的。由于已证明UNC45B蛋白的改变会影响模式生物的眼睛发育,因此研究重点放在了杂合的UNC45B错义突变上。UNC45B编码一种肌球蛋白特异性伴侣蛋白,它与一般的热休克蛋白HSP90一起参与肌球蛋白的组装。该突变将UCS结构域中的p.Arg805变为Trp,这是一个从酵母到人类都高度保守的氨基酸。UNC45B在心脏和骨骼肌组织中强烈表达,但在这里我们显示其在人类胚胎眼睛和斑马鱼晶状体中也有表达。携带unc45b无义突变的斑马鱼突变体steif的眼睛比野生型胚胎小,并且晶状体中出现细胞核聚集。将编码人类野生型UNC45B蛋白的RNA注射到steif纯合胚胎中可减少细胞核聚集,而将人类突变型UNC45B cDNA注射到野生型胚胎中则导致出现与steif突变体相似的表型。哺乳动物UNC45B基因中的p.Arg805Trp改变表明,发育性白内障可能是由晶状体纤维细胞成熟过程中非肌肉肌球蛋白组装缺陷引起的。