Department of Chemistry and Biochemistry, University of Toledo, Toledo, OH, USA.
Crit Rev Biochem Mol Biol. 2019 Dec;54(6):467-483. doi: 10.1080/10409238.2019.1708261. Epub 2020 Jan 6.
The paradigm that protein structure determines protein function has been clearly established. What is less clear is whether a specific protein structure is always required to carry out a specific function. Numerous cases are now known where there is no apparent connection between the biological function of a protein and the other members of its structural class, and where functionally related proteins can have quite diverse structures. A set of enzymes with these diverse properties, the ammonia-lyases, will be examined in this review. These are a class of enzymes that catalyze a relatively straightforward deamination reaction. However, the individual enzymes of this class possess a wide variety of different structures, utilize a diverse set of cofactors, and appear to catalyze this related reaction through a range of different mechanisms. This review aims to address a basic question: if there is not a specific protein structure and active site architecture that is both required and sufficient to define a catalyst for a given chemical reaction, then what factor(s) determine the structure and the mechanism that is selected to catalyze a particular reaction?
蛋白质结构决定蛋白质功能的范式已经得到明确确立。然而,一个特定的蛋白质结构是否总是需要执行一个特定的功能,这一点还不太清楚。现在已经有很多例子表明,蛋白质的生物学功能与其结构类别中的其他成员之间没有明显的联系,而且功能相关的蛋白质可能具有非常不同的结构。在这篇综述中,我们将研究一组具有这些不同特性的酶,即氨裂解酶。这些酶是一类能够催化相对简单脱氨反应的酶。然而,这个酶类中的各个酶具有多种多样的不同结构,利用一组不同的辅助因子,并通过一系列不同的机制来催化这一相关反应。本综述旨在探讨一个基本问题:如果没有一个特定的蛋白质结构和活性位点架构,既需要又足以定义给定化学反应的催化剂,那么哪些因素决定了选择哪种结构和机制来催化特定的反应?