Nagata Mihoko, Takiyama Yoshihisa, Shimazaki Haruo, Nakano Imaharu, Miyajima Hiroaki
Department of Neurology, Jichi Medical School, 3311-1 Yakushiji, Minamikawachi, Tochigi 329-0498, Japan.
No To Shinkei. 2004 Oct;56(10):885-9.
Aceruloplasminemia is an autosomal recessive disorder of iron metabolism caused by mutations in the ceruloplasmin (Cp) gene. We reported the results of clinical and molecular studies on a Japanese family with aceruloplasminemia. A 58-year-old man who had had diabetes mellitus for more than 30 years developed cerebellar ataxia several years before. He was found to have mild retinal degeneration too. Laboratory findings revealed a complete deficiency of serum ferroxidase activity and undetectable serum Cp. Magnetic resonance imaging showed a pronounced hypointensity in the bilateral putamina, caudate, thalamus and dentate nuclei on both T1- and T2-weighted images suggesting the presence of iron overload. We identified a homozygous deletion mutation (nt2602 delG) of the Cp gene in the patient, and the same heterozygous mutation in his unaffected father. To date, at least 29 mutations in the Cp gene have been identified. Although an individual with a heterozygous mutation has been believed to be an asymptomatic carrier like his father, some patients with such a condition were recently described to show neurological deficits. The variation in clinical findings may be explained partly by the difference in the severity of generation of free radicals caused by iron deposition or the environmental factors such as aging. Further investigations would be required to elucidate the molecular mechanisms of this late onset neurodegeneraion.
无铜蓝蛋白血症是一种由铜蓝蛋白(Cp)基因突变引起的常染色体隐性铁代谢障碍疾病。我们报告了一个患有无铜蓝蛋白血症的日本家庭的临床和分子研究结果。一名患有30多年糖尿病的58岁男性在几年前出现了小脑共济失调。他还被发现有轻度视网膜变性。实验室检查结果显示血清铁氧化酶活性完全缺乏,血清铜蓝蛋白检测不到。磁共振成像显示,在T1加权和T2加权图像上,双侧壳核、尾状核、丘脑和齿状核均有明显的低信号,提示存在铁过载。我们在患者中鉴定出Cp基因的纯合缺失突变(nt2602 delG),在其未受影响的父亲中鉴定出相同的杂合突变。迄今为止,已在Cp基因中鉴定出至少29种突变。虽然一直认为具有杂合突变的个体像他的父亲一样是无症状携带者,但最近有报道称,一些患有这种疾病的患者出现了神经功能缺损。临床发现的差异可能部分归因于铁沉积产生的自由基严重程度的差异或衰老等环境因素。需要进一步研究以阐明这种迟发性神经退行性变的分子机制。