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Paroxysmal non-kinesigenic dyskinesia is caused by mutations of the MR-1 mitochondrial targeting sequence

机译:阵发性非运动反应性运动障碍是由MR-1线粒体靶向序列的突变引起的

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摘要

Paroxysmal non-kinesigenic dyskinesia (PNKD) is an autosomal-dominant movement disorder characterized by attacks of dystonia, chorea and athetosis. Myofibrillogenesis regulator-1 (MR-1), the gene responsible for PNKD, is transcribed into three alternatively spliced forms: long (MR-1L), medium (MR-1M) and small (MR-1S). Two mutations, A7V and A9V, were previously discovered in the N-terminal region common to MR-1L and MR-1S. We now found a third mutation, A33P, in a new PNKD patient in the same region. Contrary to previous reports, we show here that the mutation-free MR-1M is localized in the Golgi apparatus, ER and plasma membrane, whereas both MR-1L and MR-1S isoforms are mitochondrial proteins, imported into the organelle thanks to a 39 amino acid-long, N-terminal mitochondrial targeting sequence (MTS). The MTS, which contains all three PNKD mutations, is then cleaved off the mature proteins before their insertion in the inner mitochondrial membrane. Therefore, mature MR-1S and MR-1L of PNKD patients are identical to those of normal subjects. We found no difference in import efficiency and protein maturation between wild-type and mutant MR-1 variants. These results indicate that PNKD is due to a novel disease mechanism based on a deleterious action of the MTS.
机译:阵发性非运动原性运动障碍(PNKD)是一种常染色体显性运动障碍,其特征为肌张力障碍,舞蹈症和无动脉粥样硬化。负责PNKD的基因肌纤维生成调节物1(MR-1)被转录为三种剪接形式:长(MR-1L),中(MR-1M)和小(MR-1S)。先前在MR-1L和MR-1S共有的N端区域发现了两个突变A7V和A9V。现在,我们在同一地区的一名新PNKD患者中发现了第三个突变A33P。与以前的报告相反,我们在这里显示无突变的MR-1M位于高尔基体,内质网和质膜中,而MR-1L和MR-1S的同工型都是线粒体蛋白,由于39氨基酸长的N端线粒体靶向序列(MTS)。然后,将包含所有三个PNKD突变的MTS从成熟蛋白上切下,然后插入到线粒体内膜中。因此,PNKD患者的成熟MR-1S和MR-1L与正常受试者相同。我们发现野生型和突变MR-1变体之间的进口效率和蛋白质成熟度没有差异。这些结果表明,PNKD是由于基于MTS的有害作用的新型疾病机制引起的。

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