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Gene expression regulation at the translational level: contribution of marine organisms.

机译:翻译水平的基因表达调控:海洋生物的贡献。

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摘要

Gene expression regulation is crucial for organism survival. Each step has to be regulated, from the gene to the protein. mRNA can be stored in the cell without any direct translation. This process is used by the cell to control protein synthesis rapidly at the right place, at the right time. Protein synthesis costs a lot of energy for the cell, so that a precise control of this process is required. Translation initiation represents an important step to regulate gene expression. Many factors that can bind mRNA and recruit different partners are involved in the inhibition or stimulation of protein synthesis. Oceans contain an important diversity of organisms that are used as important models to analyse gene expression at the translational level. These are useful to study translational control in different physiological processes for instance cell cycle (meiosis during meiotic maturation of starfish oocytes, mitosis following fertilization of sea urchin eggs) or to understand nervous system mechanisms (aplysia). All these studies will help finding novel actors involved in translational control and will thus be useful to discover new targets for therapeutic treatments against human diseases.
机译:基因表达调控对于生物生存至关重要。从基因到蛋白质,每个步骤都必须受到调控。 mRNA可以直接存储在细胞中。细胞使用此过程在正确的位置,正确的时间快速控制蛋白质的合成。蛋白质合成会消耗细胞大量的能量,因此需要对该过程进行精确控制。翻译起始代表调节基因表达的重要步骤。可以结合mRNA并招募不同伴侣的许多因素都参与了蛋白质合成的抑制或刺激。海洋包含重要的生物多样性,这些生物被用作在翻译水平分析基因表达的重要模型。这些对于研究不同生理过程中的翻译控制很有用,例如细胞周期(海星卵母细胞减数分裂成熟期间的减数分裂,海胆卵受精后的有丝分裂)或了解神经系统机制(失眠)。所有这些研究将有助于找到参与翻译控制的新演员,因此将有助于发现针对人类疾病的治疗方法的新靶标。

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