Berland Siren, Toft-Bertelsen Trine L, Aukrust Ingvild, Byska Jan, Vaudel Marc, Bindoff Laurence A, MacAulay Nanna, Houge Gunnar
Department of Medical Genetics, Haukeland University Hospital, Bergen N-5021, Norway.
Department of Neuroscience, University of Copenhagen, Copenhagen DK-2200, Denmark.
Cold Spring Harb Mol Case Stud. 2018 Feb 1;4(1). doi: 10.1101/mcs.a002303. Print 2018 Feb.
Aquaporin-4, encoded by , is the major water channel in the central nervous system and plays an important role in the brain's water balance, including edema formation and clearance. Using genomic copy-number analysis and trio-exome sequencing, we investigated a male patient with intellectual disability, hearing loss, and progressive gait dysfunction and found a de novo missense change Ser111Thr in as the only suspicious finding. Perinatally, signs of brain ischemia were detected in relation to acute collapse 2 h after birth that resolved a few days later. At the age of 3 mo, cardiac hypertrophy was detected that persisted through childhood but was completely resolved by age 16. In theory, this neurodevelopmental disorder with transient cardiomyopathy could be caused by a disturbance of cellular water balance. Ser111 is an extremely conserved residue in the short cytoplasmic loop between AQP4 transmembrane helix 2 and 3, present across all AQP isoforms from plants to mammals, and it does not appear to be a phosphorylation site. We found that the Ser111Thr change does not affect water permeability or protein stability, suggesting another and possibly regulatory role. Although causality remains unproven, this case study draws attention to as a candidate gene for a unique developmental disorder and to a specific serine as a residue of possibly great functional importance in many AQPs.
水通道蛋白4由[基因名称]编码,是中枢神经系统中的主要水通道,在大脑的水平衡中发挥重要作用,包括水肿的形成和清除。我们通过基因组拷贝数分析和三联体外显子组测序,对一名患有智力残疾、听力丧失和进行性步态功能障碍的男性患者进行了研究,发现[基因名称]中存在一个新生的错义突变Ser111Thr,这是唯一可疑的发现。出生时,在出生后2小时急性虚脱时检测到脑缺血迹象,几天后症状缓解。3个月大时,检测到心脏肥大,这种情况在儿童期持续存在,但在16岁时完全缓解。理论上,这种伴有短暂性心肌病的神经发育障碍可能是由细胞水平衡紊乱引起的。Ser111是水通道蛋白4跨膜螺旋2和3之间短细胞质环中一个极其保守的残基,从植物到哺乳动物的所有水通道蛋白亚型中都存在,并且它似乎不是一个磷酸化位点。我们发现Ser111Thr突变不影响水通透性或蛋白质稳定性,提示其可能具有其他调节作用。尽管因果关系尚未得到证实,但本病例研究提请人们注意[基因名称]作为一种独特发育障碍的候选基因,以及特定丝氨酸作为许多水通道蛋白中可能具有重要功能的残基。