Department of Biology, University of Waterloo, 200 University Ave. West, Waterloo, Ontario, N2L 3G1, Canada.
Division of Microbiology, Center for Food Safety and Applied Nutrition, United States Food and Drug Administration, College Park, MD, 20740, USA.
Sci Rep. 2019 Feb 7;9(1):1634. doi: 10.1038/s41598-018-37647-8.
Clostridial neurotoxins (CNTs), which include botulinum neurotoxins (BoNTs) and tetanus neurotoxin (TeNT), are the most potent toxins known to science and are the causative agents of botulism and tetanus, respectively. The evolutionary origins of CNTs and their relationships to other proteins remains an intriguing question. Here we present a large-scale bioinformatic screen for putative toxin genes in all currently available genomes. We detect a total of 311 protein sequences displaying at least partial homology to BoNTs, including 161 predicted toxin sequences that have never been characterized. We focus on a novel toxin family from Chryseobacterium piperi with homology to BoNTs. We resequenced the genome of C. piperi to confirm and further analyze the genomic context of these toxins, and also examined their potential toxicity by expression of the protease domain of one C. piperi toxin in human cells. Our analysis suggests that these C. piperi sequences encode a novel family of metalloprotease toxins that are distantly related to BoNTs with similar domain architecture. These toxins target a yet unknown class of substrates, potentially reflecting divergence in substrate specificity between the metalloprotease domains of these toxins and the related metalloprotease domain of clostridial neurotoxins.
梭菌神经毒素(CNTs)包括肉毒神经毒素(BoNTs)和破伤风神经毒素(TeNT),是目前已知的最有效毒素,分别是肉毒中毒和破伤风的病原体。CNTs 的进化起源及其与其他蛋白质的关系仍然是一个有趣的问题。在这里,我们对所有现有基因组中的潜在毒素基因进行了大规模的生物信息学筛选。我们总共检测到 311 种与 BoNTs 至少部分同源的蛋白质序列,其中包括 161 种从未被表征过的预测毒素序列。我们专注于来自黄杆菌属的一种新型毒素家族,该家族与 BoNTs 具有同源性。我们对黄杆菌属的基因组进行了重新测序,以确认并进一步分析这些毒素的基因组背景,还通过在人类细胞中表达一种黄杆菌属毒素的蛋白酶结构域来研究其潜在毒性。我们的分析表明,这些黄杆菌属序列编码了一种新型的金属蛋白酶毒素家族,与 BoNTs 具有相似的结构域架构,但亲缘关系较远。这些毒素针对的是尚未知的一类底物,这可能反映了这些毒素的金属蛋白酶结构域与相关梭菌神经毒素的金属蛋白酶结构域之间在底物特异性上的差异。