Cloning, Expression and Purification of Recombinant Forms of Full Length and Extracellular Domain EBOV Glycoprotein within Mammalian Cell-Lines

M. Wayengera, Peace Babirye, Carol Musubika, S. Kirimunda, M. Joloba
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Abstract

Background: Full length Ebolavirus glycoprotein (GP) intersperses the outer most lipid membrane to form spikes, where it mediates virus-host cell interaction. A secretory form of GP (sGP) is also produced by all 5 known Ebolavirus species. These attributes make GP an ideal target for research and development (R and D) of Ebolavirus and possibly pan-filovirus targeted Rapid Diagnostic Tests (RDTs), bio-therapeutics and vaccines. Prior cloning of recombinant Zaire ebolavirus (EBOV) GP has majorly used insect (baculovirus ) expression systems. We report the cloning, expression and purification of the full length and extracellular domain (ECD) forms of recombinant EBOV GP in mammalian cell-lines. Methods and results: 2034 and 1956 base-pair (bp) coding DNA sequences corresponding to the 669 and 643 amino acids (aa) residues of full length and ECD forms of EBOV GP were sub-cloned into the pTGE plasmids. Recombinant pTGE-plasmids were used to transfect 293-6E HEK mammalian cells grown in serum-free FreeStyleTM 293 Expression Medium. Cell lysates and or culture supernatants were used to obtain purified protein, followed by analysis on SDS-PAGE and Western blot. Purified full length GP was detected as membrane bound protein in cell lysates with estimated molecular weight of ~100 kDa (Cal.M.W.~71.67 kDa) on Western blot; and 0.02 mg GP (Concentration: 0.2 mg/mL, Purity: ~50%) derived. On the contrary, ECD GP was detected in supernatants of cell culture broth with estimated molecular weights of ~116 kDa based on SDS-PAGE and Western blot; and 1.6 mg (Concentration: 0.4 mg/ml, Purity: ~70%) of GP_ECD was obtained. Conclusion: Within mammalian cells, recombinant full length EBOV GP is predominantly expressed as transmembrane protein (tGP), while ECD GP is eluted into the culture medium. Both recombinant forms of GP are critical for the R and D of rapid diagnostic tests (RDTs).
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哺乳动物EBOV全长和胞外结构域糖蛋白重组形式的克隆、表达和纯化
背景:全长埃博拉病毒糖蛋白(GP)散布在最外层的脂质膜上形成刺突,在那里介导病毒与宿主细胞的相互作用。所有5种已知的埃博拉病毒也产生一种分泌型GP (sGP)。这些特性使GP成为埃博拉病毒以及可能的泛丝状病毒靶向快速诊断检测、生物疗法和疫苗研发的理想目标。先前克隆重组扎伊尔埃博拉病毒(EBOV) GP主要使用昆虫(杆状病毒)表达系统。我们报道了在哺乳动物细胞系中克隆、表达和纯化重组EBOV GP全长和胞外结构域(ECD)形式。方法和结果:将EBOV GP全长型和ECD型的669和643个氨基酸(aa)残基对应的2034和1956个碱基对(bp)编码DNA序列亚克隆到pTGE质粒中。利用重组ptge质粒转染无血清FreeStyleTM 293表达培养基中培养的293- 6e HEK哺乳动物细胞。细胞裂解液和/或培养上清液获得纯化蛋白,然后进行SDS-PAGE和Western blot分析。纯化的全长GP在细胞裂解液中以膜结合蛋白的形式存在,Western blot估计分子量为~100 kDa (Cal.M.W.~71.67 kDa);提取GP 0.02 mg(浓度:0.2 mg/mL,纯度:~50%)。相反,细胞培养液上清中检测到ECD GP, SDS-PAGE和Western blot估计分子量为~116 kDa;得到GP_ECD 1.6 mg(浓度0.4 mg/ml,纯度~70%)。结论:在哺乳动物细胞内,重组全长EBOV GP主要以跨膜蛋白(tGP)表达,而ECD GP则被洗脱到培养基中。这两种重组形式的GP对于快速诊断测试(RDTs)的研发至关重要。
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