Nocentini Alessio, Supuran Claudiu T, Capasso Clemente
Department of NEUROFARBA, Section of Pharmaceutical and Nutraceutical Sciences, University of Florence, Firenze, Italy.
Department of Biology, Agriculture and Food Sciences, Institute of Biosciences and Bioresources, CNR, Napoli, Italy.
J Enzyme Inhib Med Chem. 2021 Dec;36(1):1988-1995. doi: 10.1080/14756366.2021.1972995.
Carbonic anhydrases (CAs, EC 4.2.1.1) have been studied for decades and have been classified as a superfamily of enzymes which includes, up to date, eight gene families or classes indicated with the Greek letters α, β, γ, δ, ζ, η, θ, ι. This versatile enzyme superfamily is involved in multiple physiological processes, catalysing a fundamental reaction for all living organisms, the reversible hydration of carbon dioxide to bicarbonate and a proton. Recently, the ι-CA (LCIP63) from the diatom and a bacterial ι-CA (BteCAι) identified in the genome of were characterised. The recombinant BteCAι was observed to act as an excellent catalyst for the physiologic reaction. Very recently, the discovery of a novel ι-CAs (COG4337) in the eukaryotic microalga and the cyanobacterium PCC7120 has brought to light an unexpected feature for this ancient superfamily: this ι-CAs was catalytically active without a metal ion cofactor, unlike the previous reported ι-CAs as well as all known CAs investigated so far. This review reports recent investigations on ι-CAs obtained in these last three years, highlighting their peculiar features, and hypothesising that possibly this new CA family shows catalytic activity without the need of metal ions.
碳酸酐酶(CAs,EC 4.2.1.1)已被研究数十年,并被归类为一个酶超家族,迄今为止,该超家族包括用希腊字母α、β、γ、δ、ζ、η、θ、ι表示的八个基因家族或类别。这个多功能的酶超家族参与多种生理过程,催化对所有生物体都至关重要的反应,即二氧化碳可逆水合形成碳酸氢根和一个质子。最近,对硅藻中的ι-碳酸酐酶(LCIP63)以及在[具体物种]基因组中鉴定出的一种细菌ι-碳酸酐酶(BteCAι)进行了表征。观察到重组BteCAι对该生理反应具有出色的催化作用。就在最近,在真核微藻[具体物种]和蓝细菌集胞藻PCC7120中发现了一种新型ι-碳酸酐酶(COG4337),这为这个古老的超家族揭示了一个意想不到的特征:与之前报道的ι-碳酸酐酶以及迄今为止研究的所有已知碳酸酐酶不同,这种ι-碳酸酐酶在没有金属离子辅因子的情况下具有催化活性。本综述报道了过去三年中对ι-碳酸酐酶的最新研究,突出了它们的独特特征,并推测这个新的碳酸酐酶家族可能在不需要金属离子的情况下显示催化活性。