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首页> 外文期刊>Journal of Molecular Biology >Systematic exploration of ubiquitin sequence, E1 activation efficiency, and experimental fitness in yeast
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Systematic exploration of ubiquitin sequence, E1 activation efficiency, and experimental fitness in yeast

机译:酵母中泛素序列,E1激活效率和实验适应性的系统研究

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The complexity of biological interaction networks poses a challenge to understanding the function of individual connections in the overall network. To address this challenge, we developed a high-throughput reverse engineering strategy to analyze how thousands of specific perturbations (encompassing all point mutations in a central gene) impact both a specific edge (interaction to a directly connected node) and an overall network function. We analyzed the effects of ubiquitin mutations on activation by the E1 enzyme and compared these to effects on yeast growth rate. Using this approach, we delineated ubiquitin mutations that selectively impacted the ubiquitin-E1 edge. We find that the elasticity function relating the efficiency of ubiquitin-E1 interaction to growth rate is non-linear and that a greater than 50-fold decrease in E1 activation efficiency is required to reduce growth rate by 2-fold. Despite the robustness of fitness to decreases in E1 activation efficiency, the effects of most ubiquitin mutations on E1 activation paralleled the effects on growth rate. Our observations indicate that most ubiquitin mutations that disrupt E1 activation also disrupt other functions. The structurally characterized ubiquitin-E1 interface encompasses the interfaces of ubiquitin with most other known binding partners, and we propose that this enables E1 in wild-type cells to selectively activate ubiquitin protein molecules capable of binding to other partners from the cytoplasmic pool of ubiquitin protein that will include molecules with chemical damage and/or errors from transcription and translation.
机译:生物相互作用网络的复杂性给理解整个网络中各个连接的功能带来了挑战。为了应对这一挑战,我们开发了一种高通量逆向工程策略,以分析成千上万的特定扰动(包括中心基因中的所有点突变)如何影响特定边缘(与直接连接的节点的交互)和整个网络功能。我们分析了泛素突变对E1酶激活的影响,并将其与对酵母生长速率的影响进行了比较。使用这种方法,我们描述了选择性影响泛素E1边缘的泛素突变。我们发现,将泛素-E1相互作用的效率与生长速度相关的弹性函数是非线性的,并且需要将E1激活效率降低大于50倍才能将生长速度降低2倍。尽管适合降低E1激活效率,但大多数泛素突变对E1激活的影响与对生长速率的影响不相上下。我们的观察结果表明,大多数破坏E1激活的泛素突变也破坏了其他功能。结构特征化的泛素-E1界面涵盖了泛素与大多数其他已知结合配偶体的界面,我们建议这使野生型细胞中的E1能够选择性激活能够结合泛素蛋白胞质池中其他伴侣的泛素蛋白分子包括具有化学损伤和/或转录和翻译错误的分子。

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