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伴有新型复合杂合基因突变及特征性临床表型的常染色体隐性遗传性PEX10相关过氧化物酶体生物合成障碍的共济失调型

Ataxic form of autosomal recessive PEX10-related peroxisome biogenesis disorders with a novel compound heterozygous gene mutation and characteristic clinical phenotype.

作者信息

Yamashita Toru, Mitsui Jun, Shimozawa Nobuyuki, Takashima Shigeo, Umemura Hiroshi, Sato Kota, Takemoto Mami, Hishikawa Nozomi, Ohta Yasuyuki, Matsukawa Takashi, Ishiura Hiroyuki, Yoshimura Jun, Doi Koichiro, Morishita Shinichi, Tsuji Shoji, Abe Koji

机构信息

Department of Neurology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, 2-5-1 Shikatacho, Okayama 700-8558, Japan.

Department of Neurology, Graduate School of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo, Tokyo 113-8655, Japan.

出版信息

J Neurol Sci. 2017 Apr 15;375:424-429. doi: 10.1016/j.jns.2017.02.058. Epub 2017 Feb 27.

Abstract

Peroxisome biogenesis factor 10 (PEX10) is involved in the import of peroxisomal matrix proteins, and the mutation of this gene causes 3 subtypes of peroxisome biogenesis disorders, namely Zellweger syndrome (severe), neonatal adrenoleukodystrophy (moderate) and an ataxic form (mild). Here, we report 3 siblings of the ataxic form with cerebellar ataxia, mild mental retardation, and 3 additional characteristic features: mydriasis, hyperreflexia and involuntary head movement. All 3 siblings are compound heterozygous for a previously reported mutation, c.2T>C (p.M1T), and a novel mutation, c.920G>A, causing a missense change (p.C307Y) located in the RING finger domain of PEX10. The present cases suggest that these PEX10 mutations involve not only cerebellar but also more multiple nervous systems including pupillary autonomic, pyramidal and extrapyramidal systems.

摘要

过氧化物酶体生物发生因子10(PEX10)参与过氧化物酶体基质蛋白的导入,该基因的突变会导致3种过氧化物酶体生物发生障碍亚型,即泽尔韦格综合征(严重型)、新生儿肾上腺脑白质营养不良(中型)和共济失调型(轻型)。在此,我们报告了3例共济失调型的兄弟姐妹,他们患有小脑共济失调、轻度智力障碍,还有另外3个特征:瞳孔散大、反射亢进和不自主头部运动。所有3例兄弟姐妹都是先前报道的突变c.2T>C(p.M1T)和一个新突变c.920G>A的复合杂合子,该新突变导致位于PEX10环指结构域的错义变化(p.C307Y)。目前的病例表明,这些PEX10突变不仅累及小脑,还累及包括瞳孔自主神经系统、锥体系统和锥体外系在内的更多神经系统。

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