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神经系统中的合成消融术。

Synthetic ablations in the nervous system.

作者信息

Towlson Emma K, Barabási Albert-László

机构信息

Network Science Institute and Department of Physics, Northeastern University, Boston, MA, USA.

出版信息

Netw Neurosci. 2020 Mar 1;4(1):200-216. doi: 10.1162/netn_a_00115. eCollection 2020.

Abstract

Synthetic lethality, the finding that the simultaneous knockout of two or more individually nonessential genes leads to cell or organism death, has offered a systematic framework to explore cellular function, and also offered therapeutic applications. Yet the concept lacks its parallel in neuroscience-a systematic knowledge base on the role of double or higher order ablations in the functioning of a neural system. Here, we use the framework of network control to systematically predict the effects of ablating neuron pairs and triplets on the gentle touch response. We find that surprisingly small sets of 58 pairs and 46 triplets can reduce muscle controllability in this context, and that these sets are localized in the nervous system in distinct groups. Further, they lead to highly specific experimentally testable predictions about mechanisms of loss of control, and which muscle cells are expected to experience this loss.

摘要

合成致死性是指同时敲除两个或更多个单独并非必需的基因会导致细胞或生物体死亡,这一发现为探索细胞功能提供了一个系统框架,也带来了治疗应用。然而,这一概念在神经科学中却缺乏类似物——关于双重或更高阶消融在神经系统功能中的作用,缺乏一个系统的知识库。在此,我们使用网络控制框架来系统地预测消融神经元对和三联体对轻触反应的影响。我们发现,在这种情况下,令人惊讶的是,仅58对和46个三联体这样少量的组合就能降低肌肉可控性,而且这些组合在神经系统中以不同的组群形式定位。此外,它们还能对控制丧失的机制以及预计会经历这种丧失的肌肉细胞产生高度具体的、可通过实验验证的预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edaa/7055645/edbff6c075ed/netn-04-200-g001.jpg

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