Division of Metabolic Disorders, CHOC Children's Hospital, Orange, California, USA.
Department of Human Genetics, University of California, Los Angeles, California, USA.
Am J Med Genet A. 2021 Jan;185(1):157-167. doi: 10.1002/ajmg.a.61936. Epub 2020 Oct 28.
Mutations in the short-chain enoyl-CoA hydratase (SCEH) gene, ECHS1, cause a rare autosomal recessive disorder of valine catabolism. Patients usually present with developmental delay, regression, dystonia, feeding difficulties, and abnormal MRI with bilateral basal ganglia involvement. We present clinical, biochemical, molecular, and functional data for four affected patients from two unrelated families of Samoan descent with identical novel compound heterozygous mutations. Family 1 has three affected boys while Family 2 has an affected daughter, all with clinical and MRI findings of Leigh syndrome and intermittent episodes of acidosis and ketosis. WES identified a single heterozygous variant in ECHS1 at position c.832G > A (p.Ala278Thr). However, western blot revealed significantly reduced ECHS1 protein for all affected family members. Decreased SCEH activity in fibroblasts and a mild increase in marker metabolites in urine further supported ECHS1 as the underlying gene defect. Additional investigations at the DNA (aCGH, WGS) and RNA (qPCR, RT-PCR, RNA-Seq, RNA-Array) level identified a silent, common variant at position c.489G > A (p.Pro163=) as the second mutation. This substitution, present at high frequency in the Samoan population, is associated with decreased levels of normally spliced mRNA. To our understanding, this is the first report of a novel, hypomorphic allele c.489G > A (p.Pro163=), associated with SCEH deficiency.
SCEH 基因(ECHS1)中的突变导致一种罕见的常染色体隐性遗传的缬氨酸分解代谢障碍。患者通常表现为发育迟缓、倒退、肌张力障碍、喂养困难和双侧基底节受累的异常 MRI。我们介绍了来自两个无关联的萨摩亚血统家庭的 4 名受影响患者的临床、生化、分子和功能数据,他们均携带相同的新型复合杂合突变。家系 1 中有 3 名受影响的男孩,家系 2 中有 1 名受影响的女孩,均具有 Leigh 综合征的临床和 MRI 表现以及间歇性酸中毒和酮症。WES 鉴定出 ECHS1 基因在位置 c.832G > A(p.Ala278Thr)处存在单个杂合变体。然而,western blot 显示所有受影响的家族成员的 ECHS1 蛋白均显著减少。纤维母细胞中的 SCEH 活性降低以及尿液中标记代谢物的轻度增加进一步支持 ECHS1 是潜在的基因缺陷。在 DNA(aCGH、WGS)和 RNA(qPCR、RT-PCR、RNA-Seq、RNA-Array)水平的进一步研究鉴定出位置 c.489G > A(p.Pro163=)处的一个沉默、常见变体为第二个突变。这种替代物在萨摩亚人群中高频出现,与正常剪接 mRNA 水平降低相关。据我们所知,这是第一个报道新型、低功能等位基因 c.489G > A(p.Pro163=)与 SCEH 缺乏相关的报告。