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The TOR Signaling Network in the Model Unicellular Green Alga Chlamydomonas reinhardtii

机译:单细胞绿藻莱茵衣藻模型中的TOR信号网络

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摘要

Cell growth is tightly coupled to nutrient availability. The target of rapamycin (TOR) kinase transmits nutritional and environmental cues to the cellular growth machinery. TOR functions in two distinct multiprotein complexes, termed TOR complex 1 (TORC1) and TOR complex 2 (TORC2). While the structure and functions of TORC1 are highly conserved in all eukaryotes, including algae and plants, TORC2 core proteins seem to be missing in photosynthetic organisms. TORC1 controls cell growth by promoting anabolic processes, including protein synthesis and ribosome biogenesis, and inhibiting catabolic processes such as autophagy. Recent studies identified rapamycin-sensitive TORC1 signaling regulating cell growth, autophagy, lipid metabolism, and central metabolic pathways in the model unicellular green alga Chlamydomonas reinhardtii. The central role that microalgae play in global biomass production, together with the high biotechnological potential of these organisms in biofuel production, has drawn attention to the study of proteins that regulate cell growth such as the TOR kinase. In this review we discuss the recent progress on TOR signaling in algae.
机译:细胞生长与养分利用率紧密相关。雷帕霉素(TOR)激酶的靶标将营养和环境线索传递给细胞生长机制。 TOR在两种不同的多蛋白复合物中起作用,称为TOR复合物1(TORC1)和TOR复合物2(TORC2)。尽管TORC1的结构和功能在所有真核生物(包括藻类和植物)中都高度保守,但TORC2核心蛋白似乎在光合生物中缺失。 TORC1通过促进合成代谢过程(包括蛋白质合成和核糖体生物发生)并抑制分解代谢过程(例如自噬)来控制细胞的生长。最近的研究确定了雷帕霉素敏感的TORC1信号调节模型单细胞绿藻莱茵衣藻中的细胞生长,自噬,脂质代谢和中央代谢途径。微藻类在全球生物量生产中发挥的核心作用,以及这些生物在生物燃料生产中的高生物技术潜力,已引起人们对调节细胞生长的蛋白质(例如TOR激酶)的关注。在这篇综述中,我们讨论了藻类中TOR信号传导的最新进展。

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