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Hair Proteome Variation at Different Body Locations on Genetically Variant Peptide Detection for Protein-Based Human Identification

机译:基于蛋白质的人类鉴定基因变异肽检测上不同身体部位的头发蛋白质组变异。

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Human hair contains minimal intact nuclear DNA for human identification in forensic and archaeological applications. In contrast, proteins offer a pathway to exploit hair evidence for human identification owing to their persistence, abundance, and derivation from DNA. Individualizing single nucleotide polymorphisms (SNPs) are often conserved as single amino acid polymorphisms in genetically variant peptides (GVPs). Detection of GVP markers in the hair proteome via high-resolution tandem mass spectrometry permits inference of SNPs with known statistical probabilities. To adopt this approach for forensic investigations, hair proteomic variation and its effects on GVP identification must first be characterized. This research aimed to assess variation in single-inch head, arm, and pubic hair, and discover body location-invariant GVP markers to distinguish individuals. Comparison of protein profiles revealed greater body location-specific variation in keratin-associated proteins and intracellular proteins, allowing body location differentiation. However, robust GVP markers derive primarily from keratins that do not exhibit body location-specific differential expression, supporting GVP identification independence from hair proteomic variation at the various body locations. Further, pairwise comparisons of GVP profiles with 8 SNPs demonstrated greatest interindividual variation and high intraindividual consistency, enabling similar differentiative potential of individuals using single hairs irrespective of body location origin.
机译:人的头发含有最少的完整核DNA,可在法医学和考古学应用中进行人识别。相反,由于蛋白质的持久性,丰度和从DNA衍生而来,因此它们提供了一种途径来利用头发证据进行人类识别。个体化的单核苷酸多态性(SNP)通常作为遗传变异肽(GVP)中的单氨基酸多态性而保存。通过高分辨率串联质谱法检测头发蛋白质组中的GVP标记可以推断出具有已知统计概率的SNP。要采用这种方法进行法医调查,必须首先表征头发蛋白质组变异及其对GVP鉴定的影响。这项研究旨在评估单英寸头,手臂和阴毛的变异,并发现身体位置不变的GVP标记以区分个体。蛋白质分布图的比较显示,与角蛋白相关的蛋白质和细胞内蛋白质的人体位置特异性变异更大,从而可以区分人体位置。但是,健壮的GVP标记主要来源于不显示特定于身体位置的差异表达的角蛋白,从而支持了GVP识别独立于各种身体位置处的头发蛋白质组学变化的能力。此外,GVP分布图与8个SNP的成对比较显示出最大的个体差异和较高的个体内一致性,从而使使用单根头发的个体具有相似的分化潜能,而与身体位置起源无关。

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