Zhang Huanhuan, Gao Zhe, Li Cong, Xu Jun
State Key Laboratory of Microbial Metabolism, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.
School of Oceanography, Shanghai Jiao Tong University, Shanghai, China.
Environ Microbiol. 2025 May;27(5):e70105. doi: 10.1111/1462-2920.70105.
Cold shock proteins (Csps) play a crucial role in facilitating cellular growth at suboptimal temperatures. In this study, we identified and characterised two Csps, PyCsp and PyTRAM, in the hyperthermophilic archaeon Pyrococcus yayanosii A1. Using bio-layer interferometry (BLI) and molecular beacon assays, we demonstrated that both proteins exhibit RNA binding and unfolding activities in vitro. Heterologously expressed PyCsp and PyTRAM exhibited transcription anti-termination activity in Escherichia coli RL211 and could restore the growth of the cold-sensitive E. coli BX04 at 22°C. Knockout of the coding genes of either PyCsp or PyTRAM impaired the growth of P. yayanosii A1 at 85°C, a comparatively lower temperature to the optimal 95°C. Gene knockout and cross-complementation analyses of the coding genes for these two proteins suggest that PyCsp and PyTRAM functionally complement each other at low temperatures. PyTRAM contains the conserved TRAM domain, which is a typical characteristic of archaeal RNA chaperones. Notably, PyCsp shows low similarity to known archaeal RNA chaperones. Deletion of PYCH_0765, the gene encoding PyCsp, led to 27.5% changes in the transcriptome. This work highlights PyCsp as a non-TRAM class RNA chaperone that globally alters the transcriptome of P. yayanosii under cold shock conditions.
冷休克蛋白(Csps)在促进细胞在非最适温度下生长方面发挥着关键作用。在本研究中,我们在嗜热古菌嗜压热球菌A1中鉴定并表征了两种Csps,即PyCsp和PyTRAM。通过生物层干涉术(BLI)和分子信标分析,我们证明这两种蛋白质在体外均表现出RNA结合和解折叠活性。异源表达的PyCsp和PyTRAM在大肠杆菌RL211中表现出转录抗终止活性,并能恢复冷敏感型大肠杆菌BX04在22°C时的生长。敲除PyCsp或PyTRAM的编码基因会损害嗜压热球菌A1在85°C(相对于最佳的95°C而言是较低温度)下的生长。对这两种蛋白质编码基因的基因敲除和交叉互补分析表明,PyCsp和PyTRAM在低温下功能上相互补充。PyTRAM包含保守的TRAM结构域,这是古菌RNA伴侣的典型特征。值得注意的是,PyCsp与已知的古菌RNA伴侣相似度较低。编码PyCsp的基因PYCH_0765的缺失导致转录组发生27.5%的变化。这项工作突出了PyCsp作为一种非TRAM类RNA伴侣,在冷休克条件下可全局改变嗜压热球菌的转录组。