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首页> 外文期刊>Brain Sciences >High and Low Levels of an NTRK2 -Driven Genetic Profile Affect Motor- and Cognition-Associated Frontal Gray Matter in Prodromal Huntington’s Disease
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High and Low Levels of an NTRK2 -Driven Genetic Profile Affect Motor- and Cognition-Associated Frontal Gray Matter in Prodromal Huntington’s Disease

机译:NTRK2驱动的遗传概况的高低影响前驱性亨廷顿病的运动和认知相关的额叶灰质

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摘要

This study assessed how BDNF (brain-derived neurotrophic factor) and other genes involved in its signaling influence brain structure and clinical functioning in pre-diagnosis Huntington’s disease (HD). Parallel independent component analysis (pICA), a multivariate method for identifying correlated patterns in multimodal datasets, was applied to gray matter concentration (GMC) and genomic data from a sizeable PREDICT-HD prodromal cohort ( N = 715). pICA identified a genetic component highlighting NTRK2 , which encodes BDNF’s TrkB receptor, that correlated with a GMC component including supplementary motor, precentral/premotor cortex, and other frontal areas ( p 0.001); this association appeared to be driven by participants with high or low levels of the genetic profile. The frontal GMC profile correlated with cognitive and motor variables (Trail Making Test A ( p = 0.03); Stroop Color ( p = 0.017); Stroop Interference ( p = 0.04); Symbol Digit Modalities Test ( p = 0.031); Total Motor Score ( p = 0.01)). A top-weighted NTRK2 variant (rs2277193) was protectively associated with Trail Making Test B ( p = 0.007); greater minor allele numbers were linked to a better performance. These results support the idea of a protective role of NTRK2 in prodromal HD, particularly in individuals with certain genotypes, and suggest that this gene may influence the preservation of frontal gray matter that is important for clinical functioning.
机译:这项研究评估了BDNF(脑源性神经营养因子)和其他参与其信号传导的基因如何在预诊断亨廷顿舞蹈病(HD)中影响大脑结构和临床功能。并行独立成分分析(pICA)是一种用于识别多峰数据集中相关模式的多变量方法,已应用于来自大量PREDICT-HD前驱群(N = 715)的灰质浓度(GMC)和基因组数据。 pICA确定了突出显示NTRK2的遗传成分,该基因编码BDNF的TrkB受体,与包括补充运动,中枢/运动前皮层和其他额叶区域的GMC组分相关(p <0.001);这种关联似乎是由遗传图谱水平高或低的参与者驱动的。额叶GMC轮廓与认知和运动变量相关(追踪测试A(p = 0.03); Stroop颜色(p = 0.017); Stroop干扰(p = 0.04);符号数字模态测试(p = 0.031);运动总成绩(p = 0.01))。权重最高的NTRK2变体(rs2277193)与Trail制作测试B(p = 0.007)有保护性关联。较高的次要等位基因数目与更好的表现有关。这些结果支持NTRK2在前驱HD中具有保护作用的想法,特别是在具有某些基因型的个体中,并表明该基因可能影响额叶灰质的保存,这对于临床功能很重要。

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