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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Modulation of age at onset of Huntington disease patients by variations in TP53 and human caspase activated DNase (hCAD) genes.
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Modulation of age at onset of Huntington disease patients by variations in TP53 and human caspase activated DNase (hCAD) genes.

机译:通过TP53和人caspase激活DNase(hCAD)基因的变异来调节Huntington病患者发病时的年龄。

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摘要

Variation of age at onset (AO) in Huntington's disease (HD) cannot be explained by the number of CAG repeats alone in the mutant alleles of the gene huntingtin (Htt). Given the ability of expanded polyglutamine (poly-Q) tract present in Htt protein to interact with other proteins and increased neuronal cell death by apoptosis, variations in the genes coding for htt-interacting proteins and those involved in apoptosis are likely to alter the AO in HD. In the present investigation, we studied two single nucleotide polymorphisms (SNPs), namely, R72P in TP53 gene coding for transcription factor p53, which interacts with Htt protein and R196K in human caspase activated DNase (hCAD) gene involved in apoptosis to investigate their role as genetic modifiers of the AO of HD. Multiple linear regression analysis revealed that variations in TP53 and hCAD genes explained 12.6% and 6%, respectively, of the variance in the AO of HD after accounting for the effect of expanded CAG repeats. Statistical analysis further showed a significant effect of the interaction term between expanded CAG repeats and variations at each of TP53 and hCAD genes upon the AO. This data demonstrated that variations in TP53 and hCAD genes modulate the AO of HD.
机译:亨廷顿舞蹈病(HD)发病年龄(AO)的变化无法通过亨廷顿基因(Htt)基因突变等位基因中单独的CAG重复数来解释。鉴于Htt蛋白中存在的扩展聚谷氨酰胺(poly-Q)束与其他蛋白相互作用并通过凋亡增加神经元细胞死亡的能力,编码htt相互作用蛋白的基因和参与凋亡的基因的变异可能会改变AO在高清。在本研究中,我们研究了两个单核苷酸多态性(SNP),即编码转录因子p53的TP53基因中的R72P,它与参与凋亡的人胱天蛋白酶激活的DNase(hCAD)基因中的Htt蛋白和R196K相互作用,以研究它们的作用。作为HD AO的遗传修饰剂。多元线性回归分析显示,考虑到扩大的CAG重复序列的影响,TP53和hCAD基因的变异分别解释了HD AO的变异的12.6%和6%。统计分析进一步表明,扩展的CAG重复序列与TP53和hCAD基因的每个变异之间的相互作用项对AO产生了显着影响。该数据表明,TP53和hCAD基因的变异可调节HD的AO。

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