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疑似与GBA相关的帕金森病家族中的假定二次打击罕见基因变异。

Putative second hit rare genetic variants in families with seemingly GBA-associated Parkinson's disease.

作者信息

Aslam Muhammad, Kandasamy Nirosiya, Ullah Anwar, Paramasivam Nagarajan, Öztürk Mehmet Ali, Naureen Saima, Arshad Abida, Badshah Mazhar, Khan Kafaitullah, Wajid Muhammad, Abbasi Rashda, Ilyas Muhammad, Eils Roland, Schlesner Matthias, Wade Rebecca C, Ahmad Nafees, von Engelhardt Jakob

机构信息

Institute of Pathophysiology, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.

Institute of Biomedical and Genetic Engineering (IBGE), Islamabad, Pakistan.

出版信息

NPJ Genom Med. 2021 Jan 5;6(1):2. doi: 10.1038/s41525-020-00163-8.

Abstract

Rare variants in the beta-glucocerebrosidase gene (GBA1) are common genetic risk factors for alpha synucleinopathy, which often manifests clinically as GBA-associated Parkinson's disease (GBA-PD). Clinically, GBA-PD closely mimics idiopathic PD, but it may present at a younger age and often aggregates in families. Most carriers of GBA variants are, however, asymptomatic. Moreover, symptomatic PD patients without GBA variant have been reported in families with seemingly GBA-PD. These observations obscure the link between GBA variants and PD pathogenesis and point towards a role for unidentified additional genetic and/or environmental risk factors or second hits in GBA-PD. In this study, we explored whether rare genetic variants may be additional risk factors for PD in two families segregating the PD-associated GBA1 variants c.115+1G>A (ClinVar ID: 93445) and p.L444P (ClinVar ID: 4288). Our analysis identified rare genetic variants of the HSP70 co-chaperone DnaJ homolog subfamily B member 6 (DNAJB6) and lysosomal protein prosaposin (PSAP) as additional factors possibly influencing PD risk in the two families. In comparison to the wild-type proteins, variant DNAJB6 and PSAP proteins show altered functions in the context of cellular alpha-synuclein homeostasis when expressed in reporter cells. Furthermore, the segregation pattern of the rare variants in the genes encoding DNAJB6 and PSAP indicated a possible association with PD in the respective families. The occurrence of second hits or additional PD cosegregating rare variants has important implications for genetic counseling in PD families with GBA1 variant carriers and for the selection of PD patients for GBA targeted treatments.

摘要

β-葡萄糖脑苷脂酶基因(GBA1)中的罕见变异是α-突触核蛋白病常见的遗传风险因素,临床上常表现为GBA相关帕金森病(GBA-PD)。临床上,GBA-PD与特发性帕金森病极为相似,但发病年龄可能更小,且常呈家族聚集性。然而,大多数GBA变异携带者并无症状。此外,在看似为GBA-PD的家族中,也有报道称存在无GBA变异的有症状帕金森病患者。这些观察结果模糊了GBA变异与帕金森病发病机制之间的联系,提示在GBA-PD中存在尚未明确的其他遗传和/或环境风险因素或二次打击的作用。在本研究中,我们探讨了在两个分离帕金森病相关GBA1变异c.115+1G>A(ClinVar ID:93445)和p.L444P(ClinVar ID:4288)的家族中,罕见遗传变异是否可能是帕金森病的额外风险因素。我们的分析确定,热休克蛋白70共伴侣DnaJ同源亚家族B成员6(DNAJB6)和溶酶体蛋白prosaposin(PSAP)的罕见遗传变异可能是影响这两个家族帕金森病风险的额外因素。与野生型蛋白相比,变异的DNAJB6和PSAP蛋白在报告细胞中表达时,在细胞α-突触核蛋白稳态的背景下显示出功能改变。此外,编码DNAJB6和PSAP的基因中罕见变异的分离模式表明在各自家族中可能与帕金森病有关。二次打击或其他与帕金森病共分离的罕见变异的出现,对于有GBA1变异携带者的帕金森病家族的遗传咨询以及帕金森病患者接受GBA靶向治疗的选择具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22b3/7785741/4625a25f23ae/41525_2020_163_Fig1_HTML.jpg

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