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与心肌病、胎儿水肿及因新型RARS2突变导致的严重多系统呼吸链缺陷相关的6型脑桥小脑发育不全的神经病理学特征

Neuropathologic Characterization of Pontocerebellar Hypoplasia Type 6 Associated With Cardiomyopathy and Hydrops Fetalis and Severe Multisystem Respiratory Chain Deficiency due to Novel RARS2 Mutations.

作者信息

Lax Nichola Z, Alston Charlotte L, Schon Katherine, Park Soo-Mi, Krishnakumar Deepa, He Langping, Falkous Gavin, Ogilvy-Stuart Amanda, Lees Christoph, King Rosalind H, Hargreaves Iain P, Brown Garry K, McFarland Robert, Dean Andrew F, Taylor Robert W

机构信息

From the Wellcome Trust Centre for Mitochondrial Research, Institute of Neuroscience, The Medical School, Newcastle University, Newcastle upon Tyne, UK (NZL, CLA, LH, GF, RM, RWT); East Anglian Medical Genetics Service, Cambridge University Hospital NHS foundations Trust, Cambridge Biomedical Campus, Cambridge, UK (KS, SP); Department of Paediatric Neurology, Addenbrooke's Hospital, Cambridge Biomedical Campus, Cambridge UK (DK); Neonatal Unit, The Rosie Hospital, Cambridge University Hospitals NHS Foundation Trust, Cambridge, UK (AO); The Centre for Fetal Care, Queen Charlotte's and Chelsea Hospital, Du Cane Road, London, UK (CL); Department of Clinical Neurosciences, Institute of Neurology, University College London, London, UK (RHK); Neurometabolic Unit, National Hospital for Neurology and Neurosurgery, London, UK (IPH); Oxford Medical Genetics Laboratories, Oxford University Hospitals NHS Trust, Oxford, UK (GKB); and Department of Histopathology, Cambridge University Hospital NHS foundations Trust, Cambridge, UK (AFD).

出版信息

J Neuropathol Exp Neurol. 2015 Jul;74(7):688-703. doi: 10.1097/NEN.0000000000000209.

Abstract

Autosomal recessive mutations in the RARS2 gene encoding the mitochondrial arginyl-transfer RNA synthetase cause infantile-onset myoencephalopathy pontocerebellar hypoplasia type 6 (PCH6). We describe 2 sisters with novel compound heterozygous RARS2 mutations who presented perinatally with neurologic features typical of PCH6 but with additional features including cardiomyopathy, hydrops, and pulmonary hypoplasia and who died at 1 day and 14 days of age. Magnetic resonance imaging findings included marked cerebellar hypoplasia, gyral immaturity, punctate lesions in cerebral white matter, and unfused deep cerebral grey matter. Enzyme histochemistry of postmortem tissues revealed a near-global cytochrome c oxidase-deficiency; assessment of respiratory chain enzyme activities confirmed severe deficiencies involving complexes I, III, and IV. Molecular genetic studies revealed 2 RARS2 gene mutations: a c.1A>G, p.? variant predicted to abolish the initiator methionine, and a deep intronic c.613-3927C>T variant causing skipping of exons 6-8 in the mature RARS2 transcript. Neuropathologic investigation included low brain weights, small brainstem and cerebellum, deep cerebral white matter pathology, pontine nucleus neuron loss (in 1 sibling), and peripheral nerve pathology. Mitochondrial respiratory chain immunohistochemistry in brain tissues confirmed an absence of complexes I and IV immunoreactivity with sparing of mitochondrial numbers. These cases expand the clinical spectrum of RARS2 mutations, including antenatal features and widespread mitochondrial respiratory chain deficiencies in postmortem brain tissues.

摘要

编码线粒体精氨酰 - 转运RNA合成酶的RARS2基因中的常染色体隐性突变会导致6型婴儿期起病的肌脑桥小脑发育不全(PCH6)。我们描述了2名患有新型复合杂合RARS2突变的姐妹,她们在围产期出现了PCH6典型的神经学特征,但还有其他特征,包括心肌病、水肿和肺发育不全,分别在1天和14天时死亡。磁共振成像结果包括明显的小脑发育不全、脑回不成熟、脑白质点状病变以及未融合的深部脑灰质。死后组织的酶组织化学显示几乎全身性的细胞色素c氧化酶缺乏;呼吸链酶活性评估证实涉及复合体I、III和IV的严重缺乏。分子遗传学研究发现了2个RARS2基因突变:一个c.1A>G,p.? 变异预计会消除起始甲硫氨酸,以及一个内含子深处的c.613 - 3927C>T变异,导致成熟RARS2转录本中外显子6 - 8的跳跃。神经病理学调查包括脑重量低、脑干和小脑小、深部脑白质病变、脑桥核神经元丢失(在1名兄弟姐妹中)以及周围神经病变。脑组织中的线粒体呼吸链免疫组织化学证实缺乏复合体I和IV的免疫反应性,线粒体数量保留。这些病例扩展了RARS2突变的临床谱,包括产前特征以及死后脑组织中广泛的线粒体呼吸链缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7b0/4470523/7ffe13bf6bfd/nen-74-688-g001.jpg

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