Pliss Artem, Kuzmin Andrey N, Kachynski Aliaksandr V, Baev Alexander, Berezney Ronald, Prasad Paras N
Institute for Lasers, Photonics and Biophotonics and the Department of Chemistry, University at Buffalo, the State University of New York, Buffalo, NY 14260, USA.
Integr Biol (Camb). 2015 Jun;7(6):681-92. doi: 10.1039/c5ib00008d.
Ribosomal RNA (rRNA) sequences are synthesized at exceptionally high rates and, together with ribosomal proteins (r-proteins), are utilized as building blocks for the assembly of pre-ribosomal particles. Although it is widely acknowledged that tight regulation and coordination of rRNA and r-protein production are fundamentally important for the maintenance of cellular homeostasis, still little is known about the real-time kinetics of the ribosome component synthesis in individual cells. In this communication we introduce a label-free MicroRaman spectrometric approach for monitoring rRNA synthesis in live cultured cells. Remarkably high and rapid fluctuations of rRNA production rates were revealed by this technique. Strikingly, the changes in the rRNA output were synchronous for ribosomal genes located in separate nucleoli of the same cell. Our findings call for the development of new concepts to elucidate the coordination of ribosomal components production. In this regard, numerical modeling further demonstrated that the production of rRNA and r-proteins can be coordinated, regardless of the fluctuations in rRNA synthesis. Overall, our quantitative data reveal a spectacular interplay of inherently stochastic rates of RNA synthesis and the coordination of gene expression.
核糖体RNA(rRNA)序列以极高的速率合成,并与核糖体蛋白(r蛋白)一起作为组装前核糖体颗粒的构建块。尽管人们普遍认识到rRNA和r蛋白生产的严格调控与协调对于维持细胞内稳态至关重要,但对于单个细胞中核糖体成分合成的实时动力学仍知之甚少。在本通讯中,我们介绍了一种无标记的显微拉曼光谱方法,用于监测活培养细胞中的rRNA合成。该技术揭示了rRNA生产率极高且快速的波动。令人惊讶的是,位于同一细胞不同核仁中的核糖体基因的rRNA输出变化是同步的。我们的发现呼吁开发新的概念来阐明核糖体成分生产的协调。在这方面,数值模拟进一步证明,无论rRNA合成的波动如何,rRNA和r蛋白的生产都可以协调。总体而言,我们的定量数据揭示了RNA合成固有随机速率与基因表达协调之间的惊人相互作用。