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蛋白质组装与构建模块:超越乐高积木隐喻的局限

Protein Assembly and Building Blocks: Beyond the Limits of the LEGO Brick Metaphor.

作者信息

Levy Yaakov

机构信息

Department of Structural Biology, Weizmann Institute of Science , Rehovot 76100, Israel.

出版信息

Biochemistry. 2017 Sep 26;56(38):5040-5048. doi: 10.1021/acs.biochem.7b00666. Epub 2017 Aug 31.

DOI:10.1021/acs.biochem.7b00666
PMID:28809494
Abstract

Proteins, like other biomolecules, have a modular and hierarchical structure. Various building blocks are used to construct proteins of high structural complexity and diverse functionality. In multidomain proteins, for example, domains are fused to each other in different combinations to achieve different functions. Although the LEGO brick metaphor is justified as a means of simplifying the complexity of three-dimensional protein structures, several fundamental properties (such as allostery or the induced-fit mechanism) make deviation from it necessary to respect the plasticity, softness, and cross-talk that are essential to protein function. In this work, we illustrate recently reported protein behavior in multidomain proteins that deviates from the LEGO brick analogy. While earlier studies showed that a protein domain is often unaffected by being fused to another domain or becomes more stable following the formation of a new interface between the tethered domains, destabilization due to tethering has been reported for several systems. We illustrate that tethering may sometimes result in a multidomain protein behaving as "less than the sum of its parts". We survey these cases for which structure additivity does not guarantee thermodynamic additivity. Protein destabilization due to fusion to other domains may be linked in some cases to biological function and should be taken into account when designing large assemblies.

摘要

蛋白质与其他生物分子一样,具有模块化和层次化结构。各种构建模块用于构建具有高度结构复杂性和多样功能的蛋白质。例如,在多结构域蛋白质中,结构域以不同组合相互融合以实现不同功能。尽管乐高积木的比喻作为简化三维蛋白质结构复杂性的一种方式是合理的,但一些基本特性(如别构效应或诱导契合机制)使得有必要偏离这种比喻,以尊重对蛋白质功能至关重要的可塑性、柔性和相互作用。在这项工作中,我们阐述了最近报道的多结构域蛋白质中偏离乐高积木类比的蛋白质行为。虽然早期研究表明,一个蛋白质结构域通常不会因与另一个结构域融合而受到影响,或者在连接的结构域之间形成新界面后会变得更稳定,但已有报道称,在几个系统中,连接会导致结构域不稳定。我们表明,连接有时可能导致多结构域蛋白质的表现“小于其各部分之和”。我们考察了这些结构可加性不能保证热力学可加性的情况。在某些情况下,与其他结构域融合导致的蛋白质不稳定可能与生物学功能相关,在设计大型组件时应予以考虑。

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