Exeter Biocatalysis Centre, Henry Wellcome Building for Biocatalysis, Biosciences, College of Life and Environmental Sciences, University of Exeter, Stocker Road, Exeter EX4 4QD, UK.
Biochem Soc Trans. 2011 Jan;39(1):155-8. doi: 10.1042/BST0390155.
Thermophilic enzymes have advantages for their use in commercial applications and particularly for the production of chiral compounds to produce optically pure pharmaceuticals. They can be used as biocatalysts in the application of 'green chemistry'. The thermophilic archaea contain enzymes that have already been used in commercial applications such as the L-aminoacylase from Thermococcus litoralis for the resolution of amino acids and amino acid analogues. This enzyme differs from bacterial L-aminoacylases and has similarities to carboxypeptidases from other archaeal species. An amidase/γ-lactamase from Sulfolobus solfataricus has been used for the production of optically pure γ-lactam, the building block for antiviral carbocyclic nucleotides. This enzyme has similarities to the bacterial signature amidase family. An alcohol dehydrogenase from Aeropyrum pernix has been used for the production of optically pure alcohols and is related to the zinc-containing eukaryotic alcohol dehydrogenases. A transaminase and a dehalogenase from Sulfolobus species have also been studied. The archaeal transaminase is found in a pathway for serine synthesis which is found only in eukaryotes and not in bacteria. It can be used for the asymmetric synthesis of homochiral amines of high enantioselective purity. The L-2-haloacid dehalogenase has applications both in biocatalysis and in bioremediation. All of these enzymes have increased thermostability over their mesophilic counterparts.
嗜热酶在商业应用中具有优势,特别是在生产手性化合物以生产光学纯药物方面。它们可以用作“绿色化学”应用中的生物催化剂。嗜热古菌含有已经在商业应用中使用的酶,例如来自 Thermococcus litoralis 的 L-氨基酸酰基酶,用于拆分氨基酸和氨基酸类似物。这种酶与细菌 L-氨基酸酰基酶不同,与来自其他古菌物种的羧肽酶相似。来自 Sulfolobus solfataricus 的酰胺酶/γ-内酰胺酶已用于生产光学纯的γ-内酰胺,这是抗病毒碳环核苷酸的构建块。这种酶与细菌特征酰胺酶家族相似。来自 Aeropyrum pernix 的醇脱氢酶已用于生产光学纯醇,与含锌的真核醇脱氢酶有关。来自 Sulfolobus 物种的转氨酶和脱卤酶也进行了研究。古菌转氨酶存在于仅在真核生物中而不在细菌中发现的丝氨酸合成途径中。它可用于手性胺的不对称合成,具有高对映选择性纯度。L-2-卤代酸脱卤酶在生物催化和生物修复中都有应用。所有这些酶的热稳定性都比其中温对应物高。