Department of Chemistry, Binghamton University, State University of New York, 25 Murray Hill Rd, Vestal, NY, 13850, USA.
Department of Pharmaceutical Sciences, Binghamton University, State University of New York, 96 Corliss Ave, Johnson City, NY, 13790, USA.
Angew Chem Int Ed Engl. 2020 Aug 10;59(33):13814-13820. doi: 10.1002/anie.202001830. Epub 2020 Jun 3.
The substrate promiscuity of microbial transglutaminase (mTG) has been exploited in various applications in biotechnology, in particular for the attachment of alkyl amines to glutamine-containing peptides and proteins. Here, we expand the substrate repertoire to include hydrazines, hydrazides, and alkoxyamines, resulting in the formation of isopeptide bonds with varied susceptibilities to hydrolysis or exchange by mTG. Furthermore, we demonstrate that simple unsubstituted hydrazine and dihydrazides can be used to install reactive hydrazide handles onto the side chain of internal glutamine residues. The distinct hydrazide handles can be further coupled with carbonyls, including ortho-carbonylphenylboronic acids, to form site-specific and functional bioconjugates with tunable hydrolytic stability. The extension of the substrate scope of mTG beyond canonical amines thus substantially broadens the versatility of the enzyme, providing a new approach to facilitate novel applications.
微生物谷氨酰胺转胺酶(mTG)的底物广谱性已在生物技术的各种应用中得到了利用,特别是用于将烷基胺连接到含有谷氨酰胺的肽和蛋白质上。在这里,我们将底物范围扩大到包括肼、酰肼和烷氧基胺,从而形成对 mTG 的水解或交换具有不同敏感性的异肽键。此外,我们证明简单的未取代肼和二酰肼可用于在内部谷氨酰胺残基的侧链上安装反应性酰肼基。独特的酰肼基可以进一步与羰基(包括邻羰基苯硼酸)偶联,形成具有可调水解稳定性的位点特异性和功能性生物缀合物。mTG 的底物范围超出了经典胺,因此大大拓宽了该酶的多功能性,为促进新的应用提供了一种新方法。