首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Mitochondrial DNA Sequence Variation Associated With Peripheral Nerve Function in the Elderly
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Mitochondrial DNA Sequence Variation Associated With Peripheral Nerve Function in the Elderly

机译:老年人外周神经功能的线粒体DNA序列变异

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Background. Mitochondrial dysfunction is a prominent hallmark of many sensory neuropathies. The purpose of this study was to assess the influence of mitochondrial DNA sequence variation on peripheral nerve function in the population-based Health, Aging, and Body Composition Study. Methods. We investigated the role of common mitochondrial DNA variation ( n = 1,580) and complete mitochondrial DNA sequences ( n = 138) on peroneal motor nerve conduction velocity and amplitude, average vibration detection threshold, and monofilament sensitivity. Results. Nominal associations among common mitochondrial DNA variants and haplogroups were identified but were not statistically significant after adjustment for multiple comparisons. Sequence-based approaches were used to identify aggregate variant associations across the 16S rRNA ( weighted- sum, p = 2E-05 and variable threshold, p = 9E-06) for nerve conduction velocity. Several of these rare 16S variants occurred at or near sites with earlier disease associations and are also in close proximity to the peptidyl transferase center, which is the catalytic center of the 16S rRNA Conclusions. These results suggest that sequence variation related to mitochondrial protein synthesis/ assembly is associated with peripheral nerve function and may provide insight into targets for intervention or new clinical strategies to preserve nerve function in late life.
机译:背景。线粒体功能障碍是许多感觉神经病的突出标志。这项研究的目的是评估基于人群的健康,衰老和身体成分研究中线粒体DNA序列变异对周围神经功能的影响。方法。我们调查了常见的线粒体DNA变异(n = 1,580)和完整的线粒体DNA序列(n = 138)对腓神经运动神经传导速度和幅度,平均振动检测阈值以及单丝敏感性的作用。结果。确定了常见的线粒体DNA变体和单倍体之间的名义关联,但经过多次比较调整后,在统计学上无统计学意义。基于序列的方法可用于识别跨神经传导速度的16S rRNA的聚合变体关联(加权总和,p = 2E-05和可变阈值,p = 9E-06)。这些罕见的16S变体中的几个发生在具有较早疾病关联的位点或附近,并且也紧邻肽基转移酶中心,后者是16S rRNA结论的催化中心。这些结果表明,与线粒体蛋白合成/组装相关的序列变异与周围神经功能有关,并可能为干预目标或新的临床策略提供洞察力,以保留晚年的神经功能。

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