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Recombinant α- and β-tubulin from Echinococcus granulosus: expression purification and polymerization

机译:细粒棘球E的重组α-和β-微管蛋白的表达纯化和聚合

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摘要

Echinococcosis, which causes a high disease burden and is of great public health significance, is caused by the larval stage of Echinococcus species. It has been suggested that tubulin is the target of benzimidazoles, the only drugs for the treatment of echinococcosis. This study evaluated the characteristics of tubulins from Echinococcus granulosus. The full-length cDNAs of E. granulosus α- and β-tubulin isoforms were cloned by reverse transcription PCR from protoscolex RNA. Then, these two tubulin isoforms (α9 and β4) were recombinantly expressed as insoluble inclusion bodies in Escherichia coli. Nickel affinity chromatography was used to purify and refold the contents of these inclusion bodies as active proteins. The polymerization of tubulins was monitored by UV spectrophotometry (A350) and confirmed by confocal microscopy and transmission electron microscopy (TEM). Nucleotide sequence analysis revealed that E. granulosus 1356 bp α9-tubulin and 1332 bp β4-tubulin encode corresponding proteins of 451 and 443 amino acids. The average yields of α9- and β4-tubulin were 2.0–3.0 mg/L and 3.5–5.0 mg/L of culture, respectively. Moreover, recombinant α9- and β4-tubulin were capable of polymerizing into microtubule-like structures under appropriate conditions in vitro. These recombinant tubulins could be helpful for screening anti-Echinococcus compounds targeting the tubulins of E. granulosus.
机译:棘球co病是由棘球species虫种的幼虫期引起的,其引起很高的疾病负担并具有重大的公共卫生意义。已经提出,微管蛋白是苯并咪唑的靶标,苯并咪唑是唯一用于治疗棘球co虫病的药物。这项研究评估了细粒棘球E的微管蛋白的特性。通过逆转录PCR从原粘RNA中克隆出了大肠杆菌的α-和β-微管蛋白同工型的全长cDNA。然后,将这两种微管蛋白同工型(α9和β4)重组表达为大肠杆菌中的不溶性包涵体。镍亲和色谱法用于纯化和折叠这些包涵体的内容物,使其成为活性蛋白。微管蛋白的聚合通过紫外分光光度法(A350)进行监测,并通过共聚焦显微镜和透射电子显微镜(TEM)进行确认。核苷酸序列分析表明,粒状大肠杆菌1356bpα9-微管蛋白和1332bpβ4-微管蛋白编码相应的451和443个氨基酸的蛋白质。培养的α9-和β4-微管蛋白的平均产量分别为2.0-3.0 mg / L和3.5-5.0 mg / L。而且,重组α9-和β4-微管蛋白能够在适当条件下体外聚合成微管样结构。这些重组微管蛋白可能有助于筛选针对细粒肠球菌微管蛋白的抗棘球菌化合物。

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