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首页> 外文期刊>JAMA neurology >Fragile X-associated tremor/ataxia syndrome influence of the FMR1 gene on motor fiber tracts in males with normal and premutation alleles
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Fragile X-associated tremor/ataxia syndrome influence of the FMR1 gene on motor fiber tracts in males with normal and premutation alleles

机译:FMR1基因易碎的X相关震颤/共济失调综合征对正常和突变前等位基因男性运动纤维束的影响

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IMPORTANCE Individuals with the fragile X premutation express expanded CGG repeats (repeats 55-200) in the FMR1 gene and elevated FMR1 messenger RNA (mRNA) levels, both of which may underlie the occurrence of the late-onset neurodegenerative disorder fragile X-associated tremor/ataxia syndrome (FXTAS). Because the core feature of FXTAS is motor impairment, determining the influence of FMR1 mRNA levels on structural connectivity of motor fiber tracts is critical for a better understanding of the pathologic features of FXTAS. OBJECTIVE To examine the associations of CGG repeat and FMR1 mRNA with motor-related fiber tracts in males with premutation alleles. DESIGN AND SETTING A case-control study conducted at the University of California, Davis, from April 1, 2008, through August 31, 2009. All data were collected masked to the carrier status of the FMR1 gene. PARTICIPANTS Thirty-six male premutation carriers with FXTAS and 26 male premutation carriers without FXTAS were recruited through their family relationships with children affected by fragile X syndrome. The controls were 34 unaffected family members and healthy volunteers from the local community. MAIN OUTCOMES AND MEASURES The CGG repeat lengths and FMR1 mRNA expression levels in peripheral blood lymphocytes, motor functioning, and white matter structural integrity that were estimated using diffusion tensor imaging. After data collection, we selected 4 motor tracts to reconstruct using diffusion tensor tractography, namely, the middle and superior cerebellar peduncles, descending motor tracts (containing the corticospinal, corticobulbar, and corticopontine tracts), and the anterior body of the corpus callosum. RESULTS All fiber tracts exhibited weaker structural connectivity in the FXTAS group (decreased 5%-53%from controls, P ≤ .02). Genetic imaging correlation analysis revealed negative associations of CGG repeat length and FMR1 mRNA with connectivity strength of the superior cerebellar peduncles in both premutation groups (partial r2 = 0.23-0.33, P ≤.004). In addition, the measurements from the corpus callosum and superior cerebellar peduncles revealed a high correlation with motor functioning in all 3 groups (r between partial least square predicted and actual test scores = 0.41-0.56, P ≤ .04). CONCLUSIONS AND RELEVANCE Distinct pathophysiologic processesmay underlie the structural impairment of the motor tracts in FXTAS. Although both the corpus callosum and superior cerebellar peduncles were of great importance to motor functioning, only the superior cerebellar peduncles exhibited an association with the elevated RNA levels in the blood of fragile X premutation carriers.
机译:重要提示具有脆弱X预突变的个体在FMR1基因中表达CGG重复序列扩增(重复55-200),而FMR1信使RNA(mRNA)水平升高,这两者都可能是迟发性神经退行性疾病与X相关的脆性震颤的基础。 /共济失调综合征(FXTAS)。因为FXTAS的核心特征是运动障碍,所以确定FMR1 mRNA水平对运动纤维束结构连通性的影响对于更好地了解FXTAS的病理特征至关重要。目的探讨男性CGG重复序列和FMR1 mRNA与突变前等位基因男性运动相关纤维束的相关性。设计与背景从2008年4月1日至2009年8月31日,在加利福尼亚大学戴维斯分校进行了一项病例对照研究。收集的所有数据均掩盖了FMR1基因的携带者状态。参加者是通过与脆弱X综合征患儿的家庭关系招募的,其中包括FXTAS的36个男性变异子携带者和26个不带有FXTAS的男性变异子携带者。对照组是34名未受影响的家庭成员和当地社区的健康志愿者。主要结果和测量指标CGG的重复长度和FMR1 mRNA在外周血淋巴细胞中的表达水平,运动功能和白质结构完整性是通过弥散张量成像估计的。收集数据后,我们选择了4个运动束,使用弥散张量束图进行重建,即中小脑上,下小花梗,下降运动束(包含皮质脊髓,皮质球和皮质肾上腺束)以及call体前体。结果在FXTAS组中,所有纤维束均表现出较弱的结构连通性(比对照组降低5%-53%,P≤.02)。遗传成像相关分析显示,在两个突变前组中,CGG重复长度和FMR1 mRNA与小脑上指的连接强度呈负相关(部分r2 = 0.23-0.33,P≤.004)。此外,从call体和小脑上小花梗的测量结果显示,所有三个组的运动功能都高度相关(偏最小二乘预测值与实际测试得分之间的r = 0.41-0.56,P≤.04)。结论和相关性独特的病理生理过程可能是FXTAS运动系统结构受损的基础。尽管call体和上小脑梗对运动功能都非常重要,但只有上小脑梗与脆弱的X预突变携带者血液中的RNA水平升高相关。

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