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可调超敏感性:功能解耦与生物学见解

Tunable ultrasensitivity: functional decoupling and biological insights.

作者信息

Wang Guanyu, Zhang Mengshi

机构信息

Department of Biology, South University of Science and Technology of China, Shenzhen, Guangdong 518055, China.

出版信息

Sci Rep. 2016 Feb 5;6:20345. doi: 10.1038/srep20345.

Abstract

Sensitivity has become a basic concept in biology, but much less is known about its tuning, probably because allosteric cooperativity, the best known mechanism of sensitivity, is determined by rigid conformations of interacting molecules and is thus difficult to tune. Reversible covalent modification (RCM), owing to its systems-level ingenuity, can generate concentration based, tunable sensitivity. Using a mathematical model of regulated RCM, we find sensitivity tuning can be decomposed into two orthogonal modes, which provide great insights into vital biological processes such as tissue development and cell cycle progression. We find that decoupling of the two modes of sensitivity tuning is critical to fidelity of cell fate decision; the decoupling is thus important in development. The decomposition also allows us to solve the 'wasteful degradation conundrum' in budding yeast cell cycle checkpoint, which further leads to discovery of a subtle but essential difference between positive feedback and double negative feedback. The latter guarantees revocability of stress-induced cell cycle arrest; while the former does not. By studying concentration conditions in the system, we extend applicability of ultrasensitivity and explain the ubiquity of reversible covalent modification.

摘要

敏感性已成为生物学中的一个基本概念,但对于其调节却知之甚少,这可能是因为变构协同作用(最著名的敏感性机制)由相互作用分子的刚性构象决定,因此难以调节。可逆共价修饰(RCM)因其系统层面的精巧设计,能够产生基于浓度的、可调节的敏感性。通过使用调节性RCM的数学模型,我们发现敏感性调节可分解为两种正交模式,这为诸如组织发育和细胞周期进程等重要生物学过程提供了深刻见解。我们发现,两种敏感性调节模式的解耦对于细胞命运决定的保真度至关重要;因此,这种解耦在发育过程中很重要。这种分解还使我们能够解决芽殖酵母细胞周期检查点中的“浪费性降解难题”,这进一步导致发现正反馈和双负反馈之间一个微妙但至关重要的差异。后者保证了应激诱导的细胞周期停滞的可撤销性;而前者则不能。通过研究系统中的浓度条件,我们扩展了超敏感性的适用性,并解释了可逆共价修饰的普遍性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45af/4742884/251bd6fa0ee3/srep20345-f1.jpg

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