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“Dark matter” worlds of unstable RNA and protein

机译:不稳定的RNA和蛋白质的“暗物质”世界

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Astrophysicists use the term “dark matter” to describe the majority of the matter and/or energy in the universe that is hidden from view, and biologists now apply it to the new families of RNA they are uncovering. We review evidence for an analogous hidden world containing peptides. The critical experiments involved pulse-labeling human cells with tagged amino acids for periods as short as five seconds. Results are extraordinary in two respects: both nucleus and cytoplasm become labeled, and most signals disappear with a half-life of less than one minute. Just as the synthesis of each mature mRNA is regulated by the abortive production of hundreds of shorter transcripts that are quickly degraded, it seems that the synthesis of each full-length protein in the stable proteome is regulated by an apparently wasteful production and degradation of shorter peptides. Some of the nuclear synthesis is probably a byproduct of nuclear ribosomes proofreading newly-made RNA for inappropriately-placed termination codons (a process that triggers “nonsense-mediated decay”). We speculate that some “dark-matter” peptides will play other important roles in the cell.
机译:天体物理学家使用术语“暗物质”来描述宇宙中看不见的大部分物质和/或能量,生物学家现在将其应用于他们正在发现的新的RNA家族。我们回顾了包含肽的类似隐藏世界的证据。关键实验涉及用标记的氨基酸对人类细胞进行脉冲标记,持续时间短至五秒钟。从两个方面来看,结果是非同寻常的:核和细胞质都被标记,大多数信号消失,半衰期少​​于一分钟。正如每个成熟mRNA的合成受成百上千个快速降解的较短转录产物的流产所调节一样,稳定蛋白质组中每个全长蛋白质的合成似乎也受到明显浪费的生产和较短的降解的调控。肽。一些核合成可能是核糖体的副产物,该核糖体校对了新生成的RNA,用于适当放置的终止密码子(该过程触发“无意义的介导的衰变”)。我们推测某些“暗物质”肽会在细胞中扮演其他重要角色。

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