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进一步描绘 ISCA2 缺陷的表型谱:十例新病例报告。

Further delineation of the phenotypic spectrum of ISCA2 defect: A report of ten new cases.

机构信息

Genetics Division, Department of Pediatrics, King Saud bin Abdulaziz University for Health Science, King Abdullah International Medical Research Centre, King Abdulaziz Medical City, Riyadh, Saudi Arabia.

Genetics Division, Department of Pediatrics, King Saud bin Abdulaziz University for Health Science, King Abdullah International Medical Research Centre, King Abdulaziz Medical City, Riyadh, Saudi Arabia.

出版信息

Eur J Paediatr Neurol. 2018 Jan;22(1):46-55. doi: 10.1016/j.ejpn.2017.10.003. Epub 2017 Oct 16.

DOI:10.1016/j.ejpn.2017.10.003
PMID:29122497
Abstract

Iron-Sulfur Cluster (ISC) biogenesis is a vital cellular process required to produce various ISC-containing proteins. These ISC proteins are responsible for essential functions such as glycine cleavage and the formation of lipoic acid, an essential cofactor of respiratory chain complexes. Defects in ISC biogenesis lead to multiple mitochondrial dysfunction syndromes including: ISCA2 with infantile onset leukodystrophy. Recently, a founder mutation, c.229G > A, p.Gly77Ser in ISCA2 was reported to cause Multiple Mitochondrial Dysfunction Syndrome type 4. In a retrospective review of children diagnosed with the ISCA2 defect, we were able to identify ten new patients who were not reported previously with the identical founder mutation. High CSF glycine levels and elevated glycine peaks on MR spectroscopy were demonstrated in all tested probands. All patients were between 3 and 7 months of age with a triad of neurodevelopmental regression, nystagmus and optic atrophy and leukodystrophy. MRI findings were typical in the patients with diffuse, abnormal white matter signal in the cerebrum, cerebellum, brain stem and spinal cord. The patients ended up in a vegetative state, and often premature death due to respiratory infections. We alert clinicians to consider the ISCA2 defect as a differential diagnosis of infantile onset leukodystrophies affecting the brain as well as the spinal cord, especially in the presence of elevated CSF glycine or elevated glycine peaks in MR spectroscopy.

摘要

铁硫簇(ISC)生物发生是产生各种含有 ISC 的蛋白质所必需的重要细胞过程。这些 ISC 蛋白负责重要的功能,如甘氨酸裂解和脂酰基辅酶 A 的形成,脂酰基辅酶 A 是呼吸链复合物的必需辅助因子。ISC 生物发生缺陷导致多种线粒体功能障碍综合征,包括:婴儿发病的白细胞脑白质营养不良伴 ISCA2 缺陷。最近,报道了一个启动子突变 c.229G > A,p.Gly77Ser 在 ISCA2 中,导致 4 型多线粒体功能障碍综合征。在对诊断为 ISCA2 缺陷的儿童进行的回顾性研究中,我们能够鉴定出十个以前未报道的具有相同启动子突变的新患者。所有检测的先证者的脑脊液中甘氨酸水平升高,磁共振波谱显示甘氨酸峰升高。所有患者的年龄均在 3 至 7 个月之间,表现为神经发育退化、眼球震颤和视神经萎缩三联征以及脑白质营养不良。MRI 发现患者大脑、小脑、脑干和脊髓的弥漫性异常白质信号具有特征性。患者最终处于植物人状态,经常因呼吸道感染而过早死亡。我们提醒临床医生将 ISCA2 缺陷视为影响大脑和脊髓的婴儿发病脑白质营养不良的鉴别诊断,尤其是在存在脑脊液甘氨酸升高或磁共振波谱中甘氨酸峰升高时。

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