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选择性缺失 LAP1 异构体导致肌肉特异性核层病。

Selective loss of a LAP1 isoform causes a muscle-specific nuclear envelopathy.

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), Inserm U1258, CNRS UMR7104, Strasbourg University, Illkirch, France.

Centre de Compétences des Maladies neuro-musculaires, CHU Grenoble Alpes, Grenoble, France.

出版信息

Neurogenetics. 2021 Mar;22(1):33-41. doi: 10.1007/s10048-020-00632-3. Epub 2021 Jan 6.

DOI:10.1007/s10048-020-00632-3
PMID:33405017
Abstract

The nuclear envelope (NE) separates the nucleus from the cytoplasm in all eukaryotic cells. A disruption of the NE structure compromises normal gene regulation and leads to severe human disorders collectively classified as nuclear envelopathies and affecting skeletal muscle, heart, brain, skin, and bones. The ubiquitous NE component LAP1B is encoded by TOR1AIP1, and the use of an alternative start codon gives rise to the shorter LAP1C isoform. TOR1AIP1 mutations have been identified in patients with diverging clinical presentations such as muscular dystrophy, progressive dystonia with cerebellar atrophy, and a severe multi-systemic disorder, but the correlation between the mutational effect and the clinical spectrum remains to be determined. Here, we describe a novel TOR1AIP1 patient manifesting childhood-onset muscle weakness and contractures, and we provide clinical, histological, ultrastructural, and genetic data. We demonstrate that the identified TOR1AIP1 frameshift mutation leads to the selective loss of the LAP1B isoform, while the expression of LAP1C was preserved. Through comparative review of all previously reported TOR1AIP1 cases, we delineate a genotype/phenotype correlation and conclude that LAP1B-specific mutations cause a progressive skeletal muscle phenotype, while mutations involving a loss of both LAP1B and LAP1C isoforms induce a syndromic disorder affecting skeletal muscle, brain, eyes, ear, skin, and bones.

摘要

核膜(NE)将所有真核细胞的细胞核与细胞质分隔开来。NE 结构的破坏会影响正常的基因调控,并导致严重的人类疾病,统称为核纤层病,影响骨骼肌、心脏、大脑、皮肤和骨骼。普遍存在的 NE 成分 LAP1B 由 TOR1AIP1 编码,使用选择性起始密码子会产生较短的 LAP1C 异构体。已经在具有不同临床表现的患者中鉴定出 TOR1AIP1 突变,例如肌营养不良、伴有小脑萎缩的进行性肌张力障碍和严重的多系统疾病,但突变效应与临床谱之间的相关性仍有待确定。在这里,我们描述了一位表现为儿童期起病的肌肉无力和挛缩的新型 TOR1AIP1 患者,并提供了临床、组织学、超微结构和遗传数据。我们证明,鉴定出的 TOR1AIP1 移码突变导致 LAP1B 异构体的选择性缺失,而 LAP1C 的表达则保留。通过对所有先前报道的 TOR1AIP1 病例的比较回顾,我们描绘了一种基因型/表型相关性,并得出结论,LAP1B 特异性突变导致进行性骨骼肌表型,而涉及 LAP1B 和 LAP1C 异构体缺失的突变会导致影响骨骼肌、大脑、眼睛、耳朵、皮肤和骨骼的综合征疾病。

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Muscular involvement and tendon contracture in limb-girdle muscular dystrophy 2Y: a mild adult phenotype and literature review.肢带型肌营养不良2Y型中的肌肉受累与肌腱挛缩:一种轻度成人表型及文献综述
BMC Musculoskelet Disord. 2020 Sep 1;21(1):588. doi: 10.1186/s12891-020-03616-4.
2
Two novel cases further expand the phenotype of TOR1AIP1-associated nuclear envelopathies.两例新病例进一步扩展了 TOR1AIP1 相关核包膜病的表型。
Hum Genet. 2020 Apr;139(4):483-498. doi: 10.1007/s00439-019-02105-6. Epub 2020 Feb 13.
3
Clinical, histological, and genetic characterization of PYROXD1-related myopathy.
外显子组测序在未诊断的先天性肌病中的应用揭示了新的基因,并完善了基因-表型相关性。
Genome Med. 2024 Jul 9;16(1):87. doi: 10.1186/s13073-024-01353-0.
4
Congenital myasthenic syndromes in adults: clinical features, diagnosis and long-term prognosis.成人先天性肌无力综合征:临床特征、诊断和长期预后。
Brain. 2024 Nov 4;147(11):3849-3862. doi: 10.1093/brain/awae124.
5
-Associated Nuclear Envelopathies.-相关核包络病。
Int J Mol Sci. 2023 Apr 7;24(8):6911. doi: 10.3390/ijms24086911.
6
Hepatocytes Deficient in Nuclear Envelope Protein Lamina-associated Polypeptide 1 are an Ideal Mammalian System to Study Intranuclear Lipid Droplets.核膜蛋白层粘连相关多肽 1 缺陷的肝细胞是研究核内脂滴的理想哺乳动物系统。
J Lipid Res. 2022 Oct;63(10):100277. doi: 10.1016/j.jlr.2022.100277. Epub 2022 Sep 10.
PYROXD1 相关肌病的临床、组织学和遗传学特征。
Acta Neuropathol Commun. 2019 Aug 27;7(1):138. doi: 10.1186/s40478-019-0781-8.
4
Combined loss of LAP1B and LAP1C results in an early onset multisystemic nuclear envelopathy.LAP1B 和 LAP1C 联合缺失导致早发性多系统核纤层病。
Nat Commun. 2019 Feb 5;10(1):605. doi: 10.1038/s41467-019-08493-7.
5
TOR1AIP1 as a cause of cardiac failure and recessive limb-girdle muscular dystrophy.TOR1AIP1作为心力衰竭和隐性肢带型肌营养不良的病因。
Neuromuscul Disord. 2016 Aug;26(8):500-3. doi: 10.1016/j.nmd.2016.05.013. Epub 2016 May 24.
6
ESCRT III repairs nuclear envelope ruptures during cell migration to limit DNA damage and cell death.ESCRT III 在细胞迁移过程中修复核膜破裂,以限制 DNA 损伤和细胞死亡。
Science. 2016 Apr 15;352(6283):359-62. doi: 10.1126/science.aad7611. Epub 2016 Mar 24.
7
Genetic mutations strengthen functional association of LAP1 with DYT1 dystonia and muscular dystrophy.基因突变增强了 LAP1 与 DYT1 型肌张力障碍和肌肉疾病的功能关联。
Mutat Res Rev Mutat Res. 2015 Oct-Dec;766:42-7. doi: 10.1016/j.mrrev.2015.07.004. Epub 2015 Aug 5.
8
Severe dystonia, cerebellar atrophy, and cardiomyopathy likely caused by a missense mutation in TOR1AIP1.严重肌张力障碍、小脑萎缩和心肌病可能由TOR1AIP1基因的错义突变引起。
Orphanet J Rare Dis. 2014 Nov 26;9:174. doi: 10.1186/s13023-014-0174-9.
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How lamina-associated polypeptide 1 (LAP1) activates Torsin.核纤层相关多肽1(LAP1)如何激活Torsin。
Elife. 2014 Aug 22;3:e03239. doi: 10.7554/eLife.03239.
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