Cui G Z, Zhou Q S, Cheng Q Q, Rao F Q, Cheng Y M, Tian Y, Zhang T, Chen Z H, Liao J, Guan Z Z, Qi X L, Wu Q, Hong Wei
Key Laboratory of Microbiology and Parasitology of Education Department of Guizhou, Guizhou Medical University, Guiyang 550004, China.
Key Laboratory of Endemic and Ethnic Diseases, Ministry of Education & Key Laboratory of Medical Molecular Biology of Guizhou Province, Guizhou Medical University, Guiyang 550001, China.
Zhonghua Yu Fang Yi Xue Za Zhi. 2022 May 6;56(5):601-608. doi: 10.3760/cma.j.cn112150-20220222-00166.
Comparative analyses of wild-type 630 (Cd630) strain and pathogenicity locus (PaLoc) knockout mutant (ΔPaLoc) by using RNA-seq technology. Analysis of differential expression of Cd630 wild-type strain and ΔPaLoc mutant strain and measurement of its cellular virulence changes. Lay the foundation for the construction of an toxin-attenuated vaccine strain against Analysis of Cd630 and ΔPaLoc mutant strains using high-throughput sequencing (RNA-seq). Clustering differentially expressed genes and screening differentially expressed genes by DESeq software. Further analysis of differential genes using Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment. Finally, cytotoxicity assays of ΔPaLoc and Cd630 strains were performed in the African monkey kidney epithelial cell (Vero) and the human colonic cell (Caco-2) lines. The transcriptome data showed that the ΔPaLoc mutant toxin genes and were not transcribed. Compared to the wild-type strain, and genes upregulated 17.92,11.40,8.93 and 7.55 fold, respectively. Whereas the (high serine dehydrogenase), the (spore-forming protein), (zinc-binding dehydrogenase) and (galactitol 1-phosphate 5-dehydrogenase) genes were down-regulated by 0.06, 0.075, 0.133 and 0.183 fold, respectively. The GO and KEGG enrichment analyses showed that the differentially transcribed genes in ΔPaLoc were enriched in the density-sensing system, ABC transport system, two-component system, phosphotransferase (PTS) system, and sugar metabolism pathway, as well as vancomycin resistance-related pathways. Cytotoxicity assays showed that the ΔPaLoc mutant strain lost its virulence to Vero and Caco-2 cells compared to the wild-type Cd630 strain. Transcriptional sequencing analysis of the Cd630 and ΔPaLoc mutant strains showed that the toxin genes were not transcribed. Those other differential genes could provide a reference for further studies on the physiological and biochemical properties of the ΔPaLoc mutant strain. Cytotoxicity assays confirmed that the ΔPaLoc mutant lost virulence to Vero and Caco-2 cells, thus laying the foundation for constructing an toxin-attenuated vaccine strain against
利用RNA测序技术对野生型630(Cd630)菌株和致病位点(PaLoc)敲除突变体(ΔPaLoc)进行比较分析。分析Cd630野生型菌株和ΔPaLoc突变体菌株的差异表达,并测定其细胞毒力变化。为构建抗……的减毒毒素疫苗菌株奠定基础。使用高通量测序(RNA-seq)分析Cd630和ΔPaLoc突变体菌株。通过DESeq软件对差异表达基因进行聚类并筛选差异表达基因。使用基因本体论(GO)和京都基因与基因组百科全书(KEGG)富集对差异基因进行进一步分析。最后,在非洲绿猴肾上皮细胞(Vero)和人结肠细胞(Caco-2)系中对ΔPaLoc和Cd630菌株进行细胞毒性试验。转录组数据显示,ΔPaLoc突变体毒素基因未转录。与野生型菌株相比,……基因分别上调了17.92、11.40、8.93和7.55倍。而……(高丝氨酸脱氢酶)、……(芽孢形成蛋白)、……(锌结合脱氢酶)和……(半乳糖醇1-磷酸5-脱氢酶)基因分别下调了0.06、0.075、0.133和0.183倍。GO和KEGG富集分析表明,ΔPaLoc中差异转录的基因富集于密度感应系统、ABC转运系统、双组分系统、磷酸转移酶(PTS)系统和糖代谢途径,以及万古霉素抗性相关途径。细胞毒性试验表明,与野生型Cd630菌株相比,ΔPaLoc突变体菌株对Vero和Caco-2细胞失去了毒力。对Cd630和ΔPaLoc突变体菌株的转录测序分析表明,毒素基因未转录。那些其他差异基因可为进一步研究ΔPaLoc突变体菌株的生理生化特性提供参考。细胞毒性试验证实,ΔPaLoc突变体对Vero和Caco-2细胞失去了毒力,从而为构建抗……的减毒毒素疫苗菌株奠定了基础