翻译启动因子2的演化扩展链接启动与细菌应激反应的关系
bioRxiv : the preprint server for biology
|February 23, 2026
概括
转化启动因子2 (IF2) 蛋白的终端延伸对于细菌适应环境压力至关重要. 它们的进化多样化影响了压力依赖的翻译调节.
科学领域:
- 进化生物学是进化的生物学.
- 分子生物学分子生物学
- 生物化学 生物化学
背景情况:
- 终端扩展在蛋白质进化中很常见,经常调解环境适应和新功能.
- 翻译启动因子2 (IF2) 对于所有细胞中的蛋白质合成至关重要.
- 对于IF2终端扩展的演化历史和功能角色,人们还不太了解.
研究的目的:
- 研究IF2终端延伸在生命树上的进化多样化和功能意义.
- 创建IF2同类物种的全面进化地图.
- 确定IF2扩展的结构架构和功能角色.
主要方法:
- 对大约800个IF2同类的比较基因组学分析.
- 结构建模用于对IF2架构进行分类.
- 功能性试验评估N端和C端延伸对细菌生长和应激适应的影响.
主要成果:
- 重建了IF2的全面进化地图,揭示了基于延伸区域的七种不同的结构架构.
- IF2扩展以内在无序和促进相位分离的残留物丰富.
- 失去N端延伸会在温度和pH压力下影响细菌生长.
- 在*Escherichia coli* IF2.2中,C端延伸赋予了适应温度和无氧生物的能力.
结论:
- IF2终端扩展在保存的催化芯之外发挥着重要的功能作用.
- IF2扩展的进化多样化与压力依赖的翻译调节有关.
- 这些扩展对于细菌适应具有挑战性的环境条件至关重要.
相关概念视频
Stringent Response in E. coli
414
Bacterial growth is closely tied to nutrient availability, with cells proliferating exponentially under favorable conditions and entering a stationary phase when resources become scarce. This transition is mediated by a regulatory mechanism known as the stringent response, which allows bacteria to adapt to nutrient deprivation by modulating gene expression and metabolic activity.During nutrient scarcity, intracellular amino acid levels decline. It results in the accumulation of uncharged tRNAs...
414
Initiation of Translation
39.6K
Initiating translation is complex because it involves multiple molecules. Initiator tRNA, ribosomal subunits, and eukaryotic initiation factors (eIFs) are all required to assemble on the initiation codon of mRNA. This process consists of several steps that are mediated by different eIFs.
First, the initiator tRNA must be selected from the pool of elongator tRNAs by eukaryotic initiation factor 2 (eIF2). The initiator tRNA (Met-tRNAi) has conserved sequence elements including modified bases at...
First, the initiator tRNA must be selected from the pool of elongator tRNAs by eukaryotic initiation factor 2 (eIF2). The initiator tRNA (Met-tRNAi) has conserved sequence elements including modified bases at...
39.6K
Initiation of Translation
8.3K
8.3K
Coordination of Gene Expression Processes in Bacteria
740
The DNA replication, transcription, and translation processes are intricately coupled in bacteria, allowing efficient gene expression and rapid protein synthesis. While this physical and functional coordination is advantageous, it introduces challenges that bacteria overcome through specific regulatory mechanisms.Coupling of Replication, Transcription, and TranslationThe coupling of replication, transcription, and translation is a hallmark of bacterial gene expression. As the replisome unwinds...
740
Other Stress Responses in Bacteria
457
Bacteria have global regulatory systems that control several types of stress mechanisms. These include Pho regulon and the heat shock response, which are essential systems for environmental adaptation, such as nutrient limitation and proteotoxic stress. The Pho regulon and the heat shock response exemplify bacterial resilience, enabling rapid adaptation to fluctuating environmental conditions.Pho RegulonBacteria require phosphorus for essential cellular processes, including nucleic acid...
457
Translational Regulation
712
Translational regulation in prokaryotes ensures efficient protein synthesis by controlling ribosome access to mRNA. This regulation is mediated by secondary RNA structures, including translational riboswitches, RNA thermometers, and small RNAs (sRNAs), which respond to intracellular and environmental signals to modulate gene expression.Translational RiboswitchesRiboswitches in the leader region of mRNAs can regulate translation by altering the accessibility of the Shine-Dalgarno (SD) sequence,...
712


