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Mediating Ribosomal Competition by Splitting Pools

机译:通过分裂游泳池介导核糖体竞争

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Synthetic biology constructs often rely upon the introduction of “circuit” genes into host cells, in order to express novel proteins and thus endow the host with a desired behavior. The expression of these new genes “consumes” existing resources in the cell, such as ATP, RNA polymerase, amino acids, and ribosomes. Ribosomal competition among strands of mRNA may be described by a system of nonlinear ODEs called the Ribosomal Flow Model (RFM). The competition for resources between host and circuit genes can be ameliorated by splitting the ribosome pool by use of orthogonal ribosomes, where the circuit genes are exclusively translated by mutated ribosomes. In this work, the RFM system is extended to include orthogonal ribosome competition. This Orthogonal Ribosomal Flow Model (ORFM) is proven to be stable through the use of Robust Lyapunov Functions. The optimization problem of maximizing the weighted protein translation rate by adjusting allocation of ribosomal species is formulated.
机译:合成生物学构建体通常依赖于将“电路”基因的引入宿主细胞,以表达新的蛋白质,从而赋予主体具有所需的行为。这些新基因的表达“消耗”在细胞中的现有资源,例如ATP,RNA聚合酶,氨基酸和核糖体。 MRNA链中的核糖体竞争可以通过称为核糖体流动模型(RFM)的非线性杂物系统来描述。通过使用正交核糖体分离核糖体池可以改善宿主和电路基因之间的资源竞争,其中电路基因被突变的核糖体专门翻译。在这项工作中,RFM系统扩展到包括正交性核糖体竞争。通过使用强大的Lyapunov功能,证明这种正交的核糖体流动模型(ORFM)被证明是稳定的。制定了通过调节核糖体种类分配来最大化加权蛋白转化率的优化问题。

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