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Compartmentalization by directional gene expression

机译:通过定向基因表达进行区室化

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摘要

The coalescence of basic biochemical reactions into compartments is a major hallmark of a living cell. Using surface-bound DNA and a transcription reaction, we investigate the conditions for boundary-free compartmentalization. The DNA self-organizes into a dense and ordered phase with coding sequences aligned at well-defined distances and orientation relative to the surface, imposing directionality on transcription. Unique to the surface in comparison to dilute homogeneous DNA solution, the reaction slows down early, is inhibited with increased DNA density, is favorable for surface-oriented promoters, and is robust against DNA condensation. We interpret these results to suggest that macromolecules (RNA polymerase and RNA), but not solutes (ions and nucleotides), are partitioned between immobilized DNA and the reservoir. Without any physical barrier, a nonequilibrium directional DNA transaction forms macromolecular gradients that define a compartment, thus offering a boundary-free approach to the assembly of a synthetic cell.
机译:基本生化反应向隔室的结合是活细胞的主要标志。使用表面结合的DNA和转录反应,我们研究了无边界区划的条件。 DNA自组织成稠密且有序的相,编码序列在相对于表面的明确定义的距离和方向上对齐,从而使转录具有方向性。与稀释的均匀DNA溶液相比,该表面独特,该反应提早减慢速度,被增加的DNA密度抑制,有利于表面定向的启动子,并且对DNA凝结具有较强的抵抗力。我们解释这些结果,以表明大分子(RNA聚合酶和RNA)而不是溶质(离子和核苷酸)在固定的DNA和储库之间分配。在没有任何物理障碍的情况下,非平衡方向的DNA交易形成了界定隔室的大分子梯度,从而为合成细胞的组装提供了无边界的方法。

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