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Spurious regulatory connections dictate the expression‐fitness landscape of translation factors

机译:虚假的监管联系决定了翻译因子的表达式健身景观

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摘要

During steady‐state cell growth, individual enzymatic fluxes can be directly inferred from growth rate by mass conservation, but the inverse problem remains unsolved. Perturbing the flux and expression of a single enzyme could have pleiotropic effects that may or may not dominate the impact on cell fitness. Here, we quantitatively dissect the molecular and global responses to varied expression of translation termination factors (peptide release factors, RFs) in the bacterium Bacillus subtilis. While endogenous RF expression maximizes proliferation, deviations in expression lead to unexpected distal regulatory responses that dictate fitness reduction. Molecularly, RF depletion causes expression imbalance at specific operons, which activates master regulators and detrimentally overrides the transcriptome. Through these spurious connections, RF abundances are thus entrenched by focal points within the regulatory network, in one case located at a single stop codon. Such regulatory entrenchment suggests that predictive bottom‐up models of expression‐fitness landscapes will require near‐exhaustive characterization of parts.
机译:在稳态细胞生长期间,单个酶促助熔剂可以通过质量保护直接从生长速度推断出来,但逆问题仍未解决。扰动单个酶的助熔剂和表达可以具有抗血液效应,其可能或可能不会占据对细胞健身的影响。在这里,我们定量对细菌枯草芽孢杆菌中的翻译终止因子(肽释放因子,RFS)的不同表达的分子和全局反应疏忽。虽然内源性RF表达最大化增殖,但表达中的偏差导致意外的远端调节反应来决定健身。分子量,RF耗竭导致特定操纵子的表达不平衡,其激活母稳调节剂并劣地覆盖转录组。通过这些杂散连接,RF丰度因此由监管网络内的焦点而被束缚在一个位于单个止挡密码子的一个情况下。这种监管侵权表明,表达式健身景观的预测自下而上模型将需要近乎详尽的零件表征。

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