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由纯合KY突变引起的进行性遗传性痉挛性截瘫。

Progressive hereditary spastic paraplegia caused by a homozygous KY mutation.

作者信息

Yogev Yuval, Perez Yonatan, Noyman Iris, Madegem Anwar Abu, Flusser Hagit, Shorer Zamir, Cohen Eugene, Kachko Leonid, Michaelovsky Analia, Birk Ruth, Koifman Arie, Drabkin Max, Wormser Ohad, Halperin Daniel, Kadir Rotem, Birk Ohad S

机构信息

The Morris Kahn Laboratory of Human Genetics at the National Institute of Biotechnology in the Negev and Faculty of Health Sciences, Ben-Gurion University, Beer Sheva, Israel.

Department of Pediatric Neurology, Soroka University Medical Center, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer Sheva, Israel.

出版信息

Eur J Hum Genet. 2017 Aug;25(8):966-972. doi: 10.1038/ejhg.2017.85. Epub 2017 May 10.

Abstract

Twelve individuals of consanguineous Bedouin kindred presented with autosomal recessive progressive spastic paraplegia evident as of age 0-24 months, with spasticity of lower limbs, hyperreflexia, toe walking and equinus deformity. Kyphoscolisois was evident in older patients. Most had atrophy of the lateral aspects of the tongue and few had intellectual disability. Nerve conduction velocity, electromyography and head and spinal cord magnetic resonance imaging were normal in tested subjects. Muscle biopsy showed occasional central nuclei and fiber size variability with small angular fibers. Genome-wide linkage analysis identified a 6.7Mbp disease-associated locus on chromosome 3q21.3-3q22.2 (LOD score 9.02; D3S1290). Whole-exome sequencing identified a single homozygous variant within this locus, c.51_52ins(28); p.(V18fs56*) in KY, segregating in the family as expected and not found in 190 Bedouin controls. High KY transcript levels were demonstrated in muscular organs with lower expression in the CNS. The phenotype is reminiscent of kyphoscoliosis seen in Ky null mice. Two recent studies done independently and parallel to ours describe somewhat similar phenotypes in one and two patients with KY mutations. KY encodes a tranglutaminase-like peptidase, which interacts with muscle cytoskeletal proteins and is part of a Z-band protein complex, suggesting the disease mechanism may resemble myofibrillar myopathy. However, the mixed myopathic-neurologic features caused by human and mouse Ky mutations are difficult to explain by loss of KY sarcomere stabilizing function alone. KY transcription in CNS tissues may imply that it also has a role in neuromotor function, in line with the irregularity of neuromuscular junction in Ky null mutant mice.

摘要

12名有血缘关系的贝都因家族成员表现出常染色体隐性进行性痉挛性截瘫,症状在0至24个月大时明显,表现为下肢痉挛、反射亢进、足尖行走和马蹄内翻畸形。老年患者有脊柱后凸侧弯。大多数患者舌外侧萎缩,少数有智力障碍。受试对象的神经传导速度、肌电图以及头部和脊髓磁共振成像均正常。肌肉活检显示偶尔有中央核和纤维大小变异,伴有小角状纤维。全基因组连锁分析在3号染色体3q21.3 - 3q22.2上确定了一个6.7Mbp的疾病相关位点(LOD评分9.02;D3S1290)。全外显子组测序在该位点内确定了一个纯合变异,即KY基因中的c.51_52ins(28); p.(V18fs56*),该变异在家族中按预期分离,在190名贝都因对照中未发现。在肌肉器官中显示出较高的KY转录水平,在中枢神经系统中表达较低。该表型让人联想到Ky基因缺失小鼠中出现的脊柱后凸侧弯。最近两项与我们独立且并行开展的研究描述了1例和2例有KY突变患者的类似表型。KY编码一种转谷氨酰胺酶样肽酶,它与肌肉细胞骨架蛋白相互作用,是Z带蛋白复合物的一部分,这表明疾病机制可能类似于肌原纤维肌病。然而,人类和小鼠Ky突变引起的混合性肌病 - 神经特征难以仅通过KY肌节稳定功能丧失来解释。KY在中枢神经系统组织中的转录可能意味着它在神经运动功能中也起作用,这与Ky基因缺失突变小鼠中神经肌肉接头的异常情况一致。

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