Suppr超能文献

敲低实验揭示了一种必需的GTP酶CgtA参与霍乱弧菌的生长、生存力、运动性、形态和持留菌表型。

Knockdown Experiment Reveals an Essential GTPase CgtA's Involvement in Growth, Viability, Motility, Morphology, and Persister Phenotypes in Vibrio cholerae.

作者信息

Das Sagarika, Chatterjee Ananya, Datta Partha Pratim

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, Nadia, West Bengal, India.

出版信息

Microbiol Spectr. 2023 Mar 14;11(2):e0318122. doi: 10.1128/spectrum.03181-22.

Abstract

CgtA is an essential bacterial GTPase consisting of a highly conserved N-terminal Spo-associated TP-binding protein (Obg) domain, a central GTPase domain, and a variable C-terminal domain (CTD). This study reports global changes in the proteome and transcriptome of wild-type (Wt) versus full-length CgtA-depleted Vibrio cholerae in minimal media. Comparative transcriptome sequencing (RNA-Seq), followed by comparative proteomic analyses, revealed that the knockdown of significantly altered expressions of 311 proteins involved in diverse cellular activities, many of which are associated with the survival of V. cholerae. Various intracellular functional roles of CgtA in growth, viability, motility, morphology, and persister phenotypes in V. cholerae are revealed based on subsequent confirmatory experiments. Furthermore, a more sustained mRNA expression pattern of in a minimal medium than in a rich medium was also observed for Wt V. cholerae, where the highest level of mRNA expression of was observed during the logarithmic growth phase. Thereby, we propose that minimal medium-associated reduced growth rate coupled with depletion aggravates the intracellular stress in V. cholerae, interrupting vital cellular processes. The functional role of the CTD in V. cholerae is not fully understood. Hence, to specifically investigate the intracellular role of the 57-amino-acid-long CTD of CgtA, the CTD-only portion of CgtA was deleted. Subsequent proteomics studies revealed an altered expression of 240 proteins in the CgtA(ΔCTD) mutant, having major overlap with the full-length -deleted condition. Overall, our study reveals an alternative facet of the survival mechanism of V. cholerae during nutritional downshift as per the concomitant consequences of depletion. It is very important that we must find new drug target proteins from multidrug-resistant human-pathogenic organisms like V. cholerae. CgtA is among such potential candidates, and here, we are reporting about some newly identified cellular roles of it that are important for the survival of V. cholerae. Briefly, we knocked down the full-length gene, as well as did a partial deletion of this gene from the V. cholerae genome followed by RNA-Seq and proteomics studies. Results from our study revealed up- and downregulation of several known and unknown genes and proteins as the effect of the knockdown experiment. Also, we have presented some interesting observations that are linked with for growth, viability, motility, morphology, and persister phenotypes in V. cholerae. Our study enhances the importance of CgtA and paves the way for further exploration based on our provided data.

摘要

CgtA是一种必需的细菌GTP酶,由高度保守的N端Spo相关TP结合蛋白(Obg)结构域、一个中央GTP酶结构域和一个可变的C端结构域(CTD)组成。本研究报告了野生型(Wt)与在基本培养基中全长CgtA缺失的霍乱弧菌蛋白质组和转录组的全局变化。通过比较转录组测序(RNA-Seq),随后进行比较蛋白质组分析,发现敲低CgtA显著改变了311种参与多种细胞活动的蛋白质的表达,其中许多与霍乱弧菌的存活有关。基于后续的验证实验,揭示了CgtA在霍乱弧菌生长、活力、运动性、形态和持留菌表型中的各种细胞内功能作用。此外,还观察到野生型霍乱弧菌在基本培养基中CgtA的mRNA表达模式比在丰富培养基中更持久,其中在对数生长期观察到CgtA的mRNA表达水平最高。因此,我们提出基本培养基相关的生长速率降低与CgtA缺失加剧了霍乱弧菌的细胞内应激,中断了重要的细胞过程。CgtA的CTD在霍乱弧菌中的功能作用尚未完全了解。因此,为了具体研究CgtA的57个氨基酸长的CTD的细胞内作用,删除了CgtA仅含CTD的部分。随后的蛋白质组学研究表明,CgtA(ΔCTD)突变体中有240种蛋白质的表达发生了改变,与全长CgtA缺失的情况有很大重叠。总体而言,我们的研究揭示了根据CgtA缺失的伴随后果,霍乱弧菌在营养下调期间生存机制的另一个方面。从多重耐药的人类致病生物如霍乱弧菌中寻找新的药物靶标蛋白非常重要。CgtA就是这样的潜在候选者之一,在此,我们报告了一些新发现的对霍乱弧菌生存很重要的CgtA的细胞作用。简而言之,我们敲低了全长CgtA基因,并从霍乱弧菌基因组中部分删除了该基因,随后进行了RNA-Seq和蛋白质组学研究。我们的研究结果显示,作为CgtA敲低实验的结果,几个已知和未知基因及蛋白质出现上调和下调。此外,我们还提出了一些与霍乱弧菌生长、活力、运动性、形态和持留菌表型相关的有趣观察结果。我们的研究提高了CgtA的重要性,并为基于我们提供的数据进行进一步探索铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1b5/10100748/b78500e79157/spectrum.03181-22-f001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验