Qualitative and quantitative detection of mitochondrial heteroplasmy in cerebrospinal fluid using denaturing high-performance liquid chromatography

Yvette P. Conley, Heather Brockway, Megan Beatty, Mary E. Kerr
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引用次数: 15

Abstract

Detecting and quantifying generalized mitochondrial heteroplasmy is essential if the field of mitochondrial genetics is to advance in the arena of complex genetic disorders. The majority of techniques used to detect and quantify mitochondrial heteroplasmy focus on a known mutation or polymorphism. The necessity of knowing the mitochondrial DNA (mtDNA) change beforehand means that non-specific heteroplasmy in general cannot be assessed. In this study, we assessed the extent that denaturing high-performance liquid chromatography (dHPLC) could detect and quantify mitochondrial heteroplasmy from cerebrospinal fluid (CSF). Although we used a known polymorphism to assess reliability and sensitivity of this technique, a distinct advantage to using dHPLC for heteroplasmy detection is that the entire fragment is screened for variability and any unique fragments will be detected regardless of the placement or type of change. Our results demonstrate that dHPLC can consistently and reliably detect mitochondrial heteroplasmy in a CSF sample down to 0.01%. In addition, the level of heteroplasmy was consistent with peak height for each homoduplex, giving a reliable method to quantify level of heteroplasmy.

变性高效液相色谱法定性定量检测脑脊液线粒体异质性
如果线粒体遗传学领域要在复杂遗传疾病领域取得进展,检测和量化广义线粒体异质性是必不可少的。大多数用于检测和量化线粒体异质性的技术都集中在已知的突变或多态性上。事先知道线粒体DNA (mtDNA)变化的必要性意味着一般来说,非特异性异质性无法评估。在这项研究中,我们评估了变性高效液相色谱(dHPLC)在脑脊液(CSF)中检测和量化线粒体异质性的程度。虽然我们使用了已知的多态性来评估该技术的可靠性和灵敏度,但使用dHPLC进行异质性检测的一个明显优势是,整个片段都经过了变异性筛选,任何独特的片段都将被检测出来,而不管位置或变化类型如何。我们的研究结果表明,dHPLC可以持续可靠地检测脑脊液样品中的线粒体异质性,低至0.01%。此外,异质性水平与每个同工双工的峰高一致,为量化异质性水平提供了可靠的方法。
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