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Functionalization of the TMEM175 p.M393T variant as a risk factor for Parkinson disease

机译:TMEM175 P.M393T变体的官能化作为帕金森病的危险因素

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Multiple genome-wide association studies (GWAS) in Parkinson disease (PD) have identified a signal at chromosome 4p16.3; however, the causal variant has not been established for this locus. Deep investigation of the region resulted in one identified variant, the rs34311866 missense SNP (p.M393T) in TMEM175, which is 20 orders of magnitude more significant than any other SNP in the region. Because TMEM175 is a lysosomal gene that has been shown to influence alpha-synuclein phosphorylation and autophagy, the p.M393T variant is an attractive candidate, and we have examined its effect on TMEM175 protein and PD-related biology. After knocking down each of the genes located under the GWAS peak via multiple shRNAs, only TMEM175 was found to consistently influence accumulation of phosphorylated alpha-synuclein (p-alpha-syn). Examination of the p.M393T variant showed effects on TMEM175 function that were intermediate between the wild-type (WT) and knockout phenotypes, with reduced regulation of lysosomal pH in response to starvation and minor changes in clearance of autophagy substrates, reduced lysosomal localization, and increased accumulation of p-alpha-syn. Finally, overexpression of WT TMEM175 protein reduced p-alpha-syn, while overexpression of the p.M393T variant resulted in no change in alpha-synuclein phosphorylation. These results suggest that the main signal in the chromosome 4p16.3 PD risk locus is driven by the TMEM175 p.M393T variant. Modulation of TMEM175 may impact alpha-synuclein biology and therefore may be a rational therapeutic strategy for PD.
机译:帕金森病(PD)中的多种基因组关联研究(GWAS)鉴定了4p16.3染色体的信号;然而,尚未为该基因座建立因果变量。对该区域的深度调查导致了一个识别的变体,TMEM175中的RS34311866密码SNP(P.M393T),其数量级比该地区的任何其他SNP更重要。因为TMEM175是溶酶体基因已被证明是影响α-突触核蛋白磷酸化和自噬的,所以P.M393T变体是一种有吸引力的候选者,我们已经研究了对TMEM175蛋白和PD相关生物学的影响。在通过多个SHRNA敲击位于GWAS峰下方的每个基因之后,发现TMEM175始终影响磷酸化α-突触核蛋白(p-alpha-syn)的积累。检查P.M393T变体对野生型(WT)和敲除表型之间的中间体的作用显示,溶酶体pH调节减少,响应于自噬底物的清除,降低溶酶体定位,并增加对P-alpha-Syn的积累。最后,WT TMEM175蛋白的过表达降低了p-α-SYN,而P.M393T变体的过度表达导致α-突触核蛋白磷酸化没有变化。这些结果表明,染色体4P16.3 PD风险基因座的主信号由TMEM175 P.M393T变体驱动。 TMEM175的调节可能影响α-突触核蛋白生物学,因此可以是PD的合理治疗策略。

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