Department of Neurology, Tohoku University Graduate School of Medicine, Sendai, Japan.
Department of Medical Genetics, Tohoku University Graduate School of Medicine, Sendai, Japan.
J Hum Genet. 2021 Oct;66(10):965-972. doi: 10.1038/s10038-021-00916-y. Epub 2021 Mar 20.
Heat shock protein family B member 8, encoded by HSPB8, is an essential component of the chaperone-assisted selective autophagy complex, which maintains muscle function by degrading damaged proteins in the cells. Mutations in HSPB8 have been reported to cause Charcot-Marie-Tooth type 2L, distal hereditary motor neuropathy IIa, and rimmed vacuolar myopathies (RVM). In this study, we identified a novel heterozygous frameshift variant c.525_529del in HSPB8 in a large Japanese family with RVM, using whole exome sequencing. Three affected individuals had severe respiratory failure, which has not been addressed by previous studies. Muscle atrophy in the paraspinal muscles was also a clinical feature of the individuals affected with RVM in this study. The frameshift mutation was located in the last coding exon, and the mutated protein was predicted to harbor an isoleucine-leucine-valine (ILV) sequence, which corresponds to the IXI/V (isoleucine, X amino acids, and isoleucine or valine) motif. The IXI/V motif is essential for assembly into larger oligomers in other small heat shock proteins and all frameshift mutants of HSPB8 were predicted to share the ILV sequence in the C-terminal extension. The in silico prediction tools showed low protein solubility and increased aggregation propensity for the region around the ILV sequence. The IXI/V motif might be associated with the pathogenesis of HSPB8-related RVM.
热休克蛋白家族 B 成员 8(HSPB8)编码的蛋白是伴侣辅助选择性自噬复合物的重要组成部分,通过降解细胞内受损的蛋白质来维持肌肉功能。已有研究报道 HSPB8 突变可导致 Charcot-Marie-Tooth 型 2L、遗传性远端运动神经病 IIa 型和边缘空泡性肌病(RVM)。在这项研究中,我们通过全外显子组测序在一个患有 RVM 的日本大家族中发现了 HSPB8 的一个新的杂合移码突变 c.525_529del。三名受影响的个体均存在严重的呼吸衰竭,而这在之前的研究中并未得到解决。本研究中 RVM 受影响个体的脊柱旁肌肉也出现了肌肉萎缩。移码突变位于最后一个编码外显子,突变蛋白预计含有一个异亮氨酸-亮氨酸-缬氨酸(ILV)序列,与 IXI/V(异亮氨酸、X 种氨基酸和异亮氨酸或缬氨酸)基序相对应。IXI/V 基序对于其他小热休克蛋白形成较大寡聚体至关重要,所有 HSPB8 的移码突变体均被预测在 C 末端延伸中具有 ILV 序列。计算机预测工具显示 ILV 序列周围区域的蛋白可溶性较低,聚集倾向增加。IXI/V 基序可能与 HSPB8 相关的 RVM 发病机制有关。