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该复合体中谱系特异性蛋白质组特征揭示了参与毒力、DNA修复、CRISPR-Cas、生物能量学和脂质代谢的蛋白质丰度差异。

Lineage-Specific Proteomic Signatures in the Complex Reveal Differential Abundance of Proteins Involved in Virulence, DNA Repair, CRISPR-Cas, Bioenergetics and Lipid Metabolism.

作者信息

Yimer Solomon Abebe, Kalayou Shewit, Homberset Håvard, Birhanu Alemayehu Godana, Riaz Tahira, Zegeye Ephrem Debebe, Lutter Timo, Abebe Markos, Holm-Hansen Carol, Aseffa Abraham, Tønjum Tone

机构信息

Unit for Genome Dynamics, Department of Microbiology, University of Oslo, Oslo, Norway.

Coalition for Epidemic Preparedness Innovations, Oslo, Norway.

出版信息

Front Microbiol. 2020 Sep 22;11:550760. doi: 10.3389/fmicb.2020.550760. eCollection 2020.

Abstract

Despite the discovery of the tubercle bacillus more than 130 years ago, its physiology and the mechanisms of virulence are still not fully understood. A comprehensive analysis of the proteomes of members of the human-adapted complex (MTBC) lineages 3, 4, 5, and 7 was conducted to better understand the evolution of virulence and other physiological characteristics. Unique and shared proteomic signatures in these modern, pre-modern and ancient MTBC lineages, as deduced from quantitative bioinformatics analyses of high-resolution mass spectrometry data, were delineated. The main proteomic findings were verified by using immunoblotting. In addition, analysis of multiple genome alignment of members of the same lineages was performed. Label-free peptide quantification of whole cells from MTBC lineages 3, 4, 5, and 7 yielded a total of 38,346 unique peptides derived from 3092 proteins, representing 77% coverage of the predicted proteome. MTBC lineage-specific differential expression was observed for 539 proteins. Lineage 7 exhibited a markedly reduced abundance of proteins involved in DNA repair, type VII ESX-3 and ESX-1 secretion systems, lipid metabolism and inorganic phosphate uptake, and an increased abundance of proteins involved in alternative pathways of the TCA cycle and the CRISPR-Cas system as compared to the other lineages. Lineages 3 and 4 exhibited a higher abundance of proteins involved in virulence, DNA repair, drug resistance and other metabolic pathways. The high throughput analysis of the MTBC proteome by super-resolution mass spectrometry provided an insight into the differential expression of proteins between MTBC lineages 3, 4, 5, and 7 that may explain the slow growth and reduced virulence, metabolic flexibility, and the ability to survive under adverse growth conditions of lineage 7.

摘要

尽管130多年前就发现了结核杆菌,但其生理学和毒力机制仍未完全了解。为了更好地理解毒力和其他生理特征的演变,对适应人类的复合群(MTBC)谱系3、4、5和7的蛋白质组进行了全面分析。通过对高分辨率质谱数据的定量生物信息学分析推断出这些现代、前现代和古代MTBC谱系中独特和共有的蛋白质组特征,并进行了描述。主要的蛋白质组学发现通过免疫印迹进行了验证。此外,还对同一谱系成员的多个基因组比对进行了分析。对MTBC谱系3、4、5和7的全细胞进行无标记肽定量,共产生了38346个来自3092种蛋白质的独特肽段,占预测蛋白质组的77%。观察到539种蛋白质存在MTBC谱系特异性差异表达。与其他谱系相比,谱系7中参与DNA修复、VII型ESX-3和ESX-1分泌系统、脂质代谢和无机磷酸盐摄取的蛋白质丰度明显降低,而参与三羧酸循环替代途径和CRISPR-Cas系统的蛋白质丰度增加。谱系3和4中参与毒力、DNA修复、耐药性和其他代谢途径的蛋白质丰度较高。通过超分辨率质谱对MTBC蛋白质组进行高通量分析,深入了解了MTBC谱系3、4、5和7之间蛋白质的差异表达,这可能解释了谱系7生长缓慢、毒力降低、代谢灵活性以及在不利生长条件下生存的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c76/7536270/264257bf920a/fmicb-11-550760-g001.jpg

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