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Expression, cDNA cloning, and characterization of the antibacterial peptide cecropin D from Agrius convolvuli

机译:空心菜中抗菌肽天蚕素D的表达,cDNA克隆与鉴定

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Cecropins are basic antibacterial peptides that have potent activities against microorganisms. We have cloned and characterized a cecropin-like peptide of the lepidopteran insect Agrius convolvuli and analyzed its expression in Escherichia coli . The full-length cDNA of A. convolvuli cecropin D3 (AcCec) was 318 bp, containing a 5′ untranslated region (UTR) of 47 bp, a 3′ UTR of 82 bp with a poly (A) tail, and an open reading frame (ORF) of 189 bp encoding a polypeptide of 63 amino acids, including a 24 amino acid signal sequence and a 38 amino acid mature peptide (GenBank accession no. GQ888768). The mature peptide is highly similar to D-type cecropin. To understand the effect of C-terminal amidation, while overcoming the disadvantage of its lack in the prokaryote system, we added a lysine residue to AcCec (AcCec-K) and compared its antibacterial activity to the purified AcCec. The recombinant AcCec (rAcCec) and AcCec-K were expressed, respectively, in E. coli Rosetta cells using a pGEX-4T-1 expression vector, which contained the glutathione S-transferase (GST) gene for fusion partner, and the fusion proteins were induced by isopropyl-β-d-thiogalactopyranoside (IPTG). The recombinant proteins were purified by fast protein liquid chromatography (FPLC) using GSTrap FF and Resource RPC column. The result of the inhibition zone suggests that C-terminal lysine residue could increase the activity due to activated phosphorylation.
机译:天蚕素是基本的抗菌肽,对微生物具有有效的活性。我们已经克隆并鉴定了鳞翅目昆虫 Agrius convolvuli的天蚕素样肽,并分析了其在大肠杆菌中的表达。 A的全长cDNA。卷积天蚕素D3(AcCec)为318 bp,包含47 bp的5'非翻译区(UTR),82 bp的3'UTR和多聚(A)尾巴,以及编码189 bp的开放阅读框(ORF) 63个氨基酸的多肽,包括24个氨基酸的信号序列和38个氨基酸的成熟肽(GenBank登录号GQ888768)。成熟的肽与D型天蚕素高度相似。为了了解C末端酰胺化的影响,同时克服了原核生物系统缺乏C末端酰胺化的缺点,我们向AcCec(AcCec-K)添加了赖氨酸残基,并将其抗菌活性与纯化的AcCec进行了比较。重组AcCec(rAcCec)和AcCec-K分别在大肠杆菌中表达。使用pGEX-4T-1表达载体构建大肠杆菌Rosetta细胞,该载体含有谷胱甘肽S-转移酶(GST)基因作为融合伴侣,融合蛋白由异丙基-β-d-硫代吡喃半乳糖苷(IPTG)诱导。重组蛋白使用GSTrap FF和Resource RPC柱通过快速蛋白液相色谱(FPLC)进行纯化。抑制区的结果表明,由于活化的磷酸化,C-末端赖氨酸残基可以增加活性。

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