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Influence of intron and exon splicing enhancers on mammalian cell expression of a truncated spike protein of SARS-CoV and its implication for subunit vaccine development

机译:内含子和外显子剪接增强剂对SARS-COV截短穗蛋白哺乳动物细胞表达的影响及其对亚基疫苗发育的影响

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摘要

[[abstract]]The spike (S) protein of severe acute respiratory syndrome coronavirus (SARS-CoV) is important for vaccine development. A truncated S protein of the TW1 strain, S-TR2 (88 kDa), carrying three S fragments (S74-253, S294-739, and S1129-1255) was investigated to study the influences of intron and exon splicing enhancers to improve S-TR2 protein expression in mammalian cells. Our results showed that STR2 protein expression with the use of an 138 base-pair intron addition increased by 1.9-, 2.5-, and 4.1-fold in Vero E6, QBI-293A cells, and CHO/dhFr- cells (dihydrofolate reductase [dhfr] gene deficient CHO cells), respectively. Using the exon splicing enhancers, including a bidirectional splicing enhancer (BSE) or an exon splicing enhancer derived from the EDA alternative exon of the fibronectin gene (EDA ESE), were also found to increase STR2 protein expression in CHO/dhFr- cells by 1.7- and 2.6-fold. Nevertheless, combination of the intron and the exon splicing enhancers resulted in suppressing the intron-enhancing e STR2 protein expression in in CHO/dhFr- cells. Our studies also demonstrated the STR2 protein was mainly as the Endo H-sensitive glycoprotein (115 kDa) expressed in Vero E6, QBI-293A, and CHO/dhFr-cells. However, only a minor form of the Endo H-resistant glycoproteins (similar to 130 kDa) was detected in CHO/dhFr- cells. Taken together, our results indicated that intron had a better enhancing effect on STR2 protein expression than exon splicing enhancers, and the expression of similar to 130 kDa S-TR2 glycoprotein was enhanced by the intron addition into the expression vector construct. Results of the present study can provide an optimal strategy to enhance SARS-CoV S protein expression in mammalian cells and may contribute to the development of SARS-CoV subunit vaccine. (c) 2005 Elsevier Ltd. All rights reserved.
机译:严重急性呼吸综合征冠状病毒(SARS-COV)的[摘要]尖峰(S)蛋白是疫苗的发展很重要。的TW1菌株的截短的S蛋白,S-TR2(88 kDa)的,承载三个S片段(S74-253,S294-739和S1129-1255)进行了研究,研究内含子和外显子剪接增强子的影响,以提高小号在哺乳动物细胞中-TR2蛋白质表达。我们的研究结果表明,与使用一个138个碱基对的内含子加入蛋白质STR2表达增加了1.9〜,2.5V和在Vero E6,QBI-293A细胞和CHO / DHFR-细胞4.1倍(二氢叶酸还原酶[DHFR ]基因缺陷型CHO细胞)中。使用外显子剪接增强子,包括一双向剪接增强(BSE)或从纤连蛋白基因(EDA ESE)的EDA可变外显子衍生的外显子剪接增强子,还发现了1.7,以增加在CHO / DHFR-细胞STR2蛋白表达 - 和2.6倍。尽管如此,内含子和外显子剪接增强子的组合导致抑制在CHO / DHFR-细胞内含子增强ÊSTR2蛋白表达。我们的研究还证明了STR2蛋白主要是如在的Vero E6,QBI-293A,和CHO / DHFR-细胞中表达的内切酶H-敏感糖蛋白(115千道尔顿)。然而,在CHO / DHFR-细胞中仅检测到的Endo H-耐糖蛋白(类似于130 kDa的)的次要形式。总之,我们的结果表明,内含子对比外显子剪接增强子STR2蛋白表达更好的增强作用,并且类似于130 kDa的STR2糖蛋白是由内含子加入到表达载体构建增强的表达。本研究的结果可提供一个最佳的策略,以增强在哺乳动物细胞中SARS-CoV的S蛋白表达,并可能有助于SARS冠状病毒亚单位疫苗的开发。 (c)2005 Elsevier有限公司保留所有权利。

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    C CHANG; W HONG; P CHONG; S WU;

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  • 年度 2006
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