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通过环交换和铰链变异性探索(β/α)(8)桶酶的结构-功能循环适应性。

Exploring the Structure-Function Loop Adaptability of a (β/α)(8)-Barrel Enzyme through Loop Swapping and Hinge Variability.

机构信息

Departamento de Ingeniería Celular y Biocatálisis, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Avenida Universidad 2001, Cuernavaca, C.P. 62210, México.

出版信息

J Mol Biol. 2011 Aug 5;411(1):143-57. doi: 10.1016/j.jmb.2011.05.027. Epub 2011 May 27.

Abstract

Evolution of proteins involves sequence changes that are frequently localized at loop regions, revealing their important role in natural evolution. However, the development of strategies to understand and imitate such events constitutes a challenge to design novel enzymes in the laboratory. In this study, we show how to adapt loop swapping as semiautonomous units of functional groups in an enzyme with the (β/α)(8)-barrel and how this functional adaptation can be measured in vivo. To mimic the natural mechanism providing loop variability in antibodies, we developed an overlap PCR strategy. This includes introduction of sequence diversity at two hinge residues, which connect the new loops with the rest of the protein scaffold, and we demonstrate that this is necessary for a successful exploration of functional sequence space. This design allowed us to explore the sequence requirements to functional adaptation of each loop replacement that may not be sampled otherwise. Libraries generated following this strategy were evaluated in terms of their folding competence and their functional proficiency, an observation that was formalized as a Structure-Function Loop Adaptability value. Molecular details about the function and structure of some variants were obtained by enzyme kinetics and circular dichroism. This strategy yields functional variants that retain the original activity at higher frequencies, suggesting a new strategy for protein engineering that incorporates a more divergent sequence exploration beyond that limited to point mutations. We discuss how this approach may provide insights into the mechanism of enzyme evolution and function.

摘要

蛋白质的进化涉及频繁发生在环区的序列变化,这揭示了它们在自然进化中的重要作用。然而,开发理解和模拟这些事件的策略对于在实验室中设计新型酶仍然是一个挑战。在这项研究中,我们展示了如何将环交换作为具有(β/α)(8)桶的酶中的功能基团的半自主单元进行适应,以及如何在体内测量这种功能适应。为了模拟在抗体中提供环变异性的自然机制,我们开发了一种重叠 PCR 策略。这包括在两个铰链残基处引入序列多样性,这些铰链残基将新环与蛋白质支架的其余部分连接起来,我们证明这对于成功探索功能序列空间是必要的。这种设计使我们能够探索每个环替换的功能适应的序列要求,否则可能无法进行采样。根据该策略生成的文库在折叠能力和功能效率方面进行了评估,这一观察结果被正式定义为结构-功能环适应性值。通过酶动力学和圆二色性获得了一些变体的功能和结构的分子细节。该策略以更高的频率产生保留原始活性的功能变体,这表明了一种新的蛋白质工程策略,它包含了比点突变更具差异性的序列探索。我们讨论了这种方法如何为酶进化和功能的机制提供见解。

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