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与人类考古遗骸相关的古代梭状芽胞杆菌 DNA 和破伤风神经毒素变体。

Ancient Clostridium DNA and variants of tetanus neurotoxins associated with human archaeological remains.

机构信息

Department of Biology and the Waterloo Centre for Microbial Research, University of Waterloo, Waterloo, ON, Canada.

Department of Urology, Boston Children's Hospital, Boston, MA, USA.

出版信息

Nat Commun. 2023 Sep 6;14(1):5475. doi: 10.1038/s41467-023-41174-0.

Abstract

The analysis of microbial genomes from human archaeological samples offers a historic snapshot of ancient pathogens and provides insights into the origins of modern infectious diseases. Here, we analyze metagenomic datasets from 38 human archaeological samples and identify bacterial genomic sequences related to modern-day Clostridium tetani, which produces the tetanus neurotoxin (TeNT) and causes the disease tetanus. These genomic assemblies had varying levels of completeness, and a subset of them displayed hallmarks of ancient DNA damage. Phylogenetic analyses revealed known C. tetani clades as well as potentially new Clostridium lineages closely related to C. tetani. The genomic assemblies encode 13 TeNT variants with unique substitution profiles, including a subgroup of TeNT variants found exclusively in ancient samples from South America. We experimentally tested a TeNT variant selected from an ancient Chilean mummy sample and found that it induced tetanus muscle paralysis in mice, with potency comparable to modern TeNT. Thus, our ancient DNA analysis identifies DNA from neurotoxigenic C. tetani in archaeological human samples, and a novel variant of TeNT that can cause disease in mammals.

摘要

从人类考古样本中分析微生物基因组,可以提供古代病原体的历史快照,并深入了解现代传染病的起源。在这里,我们分析了 38 个人类考古样本的宏基因组数据集,鉴定出与现代破伤风梭菌(Clostridium tetani)相关的细菌基因组序列,该菌产生破伤风神经毒素(TeNT)并引起破伤风疾病。这些基因组组装具有不同程度的完整性,其中一部分显示出古代 DNA 损伤的特征。系统发育分析揭示了已知的破伤风梭菌进化枝,以及与破伤风梭菌密切相关的潜在新型梭菌谱系。基因组组装编码了 13 种具有独特取代模式的 TeNT 变体,包括在来自南美洲的古代样本中发现的 TeNT 变体亚群。我们对从智利古代木乃伊样本中选择的 TeNT 变体进行了实验测试,发现它在小鼠中引起破伤风肌肉瘫痪,其效力与现代 TeNT 相当。因此,我们的古 DNA 分析在考古人类样本中鉴定出了神经毒素产生的破伤风梭菌的 DNA,以及一种新型的 TeNT 变体,它可以在哺乳动物中引起疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0e5/10482840/2c2562411bec/41467_2023_41174_Fig1_HTML.jpg

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