Chandrasekar Jagadeeswaran, Wylder Adam C, Silverman Scott K
Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, United States.
J Am Chem Soc. 2015 Aug 5;137(30):9575-8. doi: 10.1021/jacs.5b06308. Epub 2015 Jul 27.
Dehydroalanine (Dha) is a nonproteinogenic electrophilic amino acid that is a synthetic intermediate or product in the biosynthesis of several bioactive cyclic peptides such as lantibiotics, thiopeptides, and microcystins. Dha also enables labeling of proteins and synthesis of post-translationally modified proteins and their analogues. However, current chemical approaches to introducing Dha into peptides have substantial limitations. Using in vitro selection, here we show that DNA can catalyze Zn(2+) or Zn(2+)/Mn(2+)-dependent formation of Dha from phosphoserine (pSer), i.e., exhibit pSer lyase activity, a fundamentally new DNA-catalyzed reaction. Two new pSer lyase deoxyribozymes, named Dha-forming deoxyribozymes 1 and 2 (DhaDz1 and DhaDz2), each function with multiple turnover on the model hexapeptide substrate that was used during selection. Using DhaDz1, we generated Dha from pSer within an unrelated linear 13-mer peptide. Subsequent base-promoted intramolecular cyclization of homocysteine into Dha formed a stable cystathionine (thioether) analogue of the complement inhibitor compstatin. These findings establish the fundamental catalytic ability of DNA to eliminate phosphate from pSer to form Dha and suggest that with further development, pSer lyase deoxyribozymes will have broad practical utility for site-specific enzymatic synthesis of Dha from pSer in peptide substrates.
脱氢丙氨酸(Dha)是一种非蛋白质ogenic亲电氨基酸,是几种生物活性环肽(如羊毛硫抗生素、硫肽和微囊藻毒素)生物合成中的合成中间体或产物。Dha还可用于蛋白质标记以及翻译后修饰蛋白质及其类似物的合成。然而,目前将Dha引入肽的化学方法存在很大局限性。通过体外筛选,我们在此表明DNA可以催化磷酸丝氨酸(pSer)形成Dha的锌(2+)或锌(2+)/锰(2+)依赖性反应,即表现出pSer裂解酶活性,这是一种全新的DNA催化反应。两种新的pSer裂解酶脱氧核酶,分别命名为脱氢丙氨酸形成脱氧核酶1和2(DhaDz1和DhaDz2),在筛选过程中使用的模型六肽底物上均具有多次周转功能。使用DhaDz1,我们在一种不相关的线性13聚体肽中由pSer生成了Dha。随后,同型半胱氨酸经碱促进的分子内环化形成Dha,形成了补体抑制剂compstatin的稳定胱硫醚(硫醚)类似物。这些发现确立了DNA从pSer中消除磷酸以形成Dha的基本催化能力,并表明随着进一步发展,pSer裂解酶脱氧核酶在从肽底物中的pSer进行Dha的位点特异性酶促合成方面将具有广泛的实际应用价值。