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CONSTRUCTION, CLONING, AND EXPRESSION OF SYNTHETIC GENES ENCODING SPIDER DRAGLINE SILK

机译:蜘蛛血丝真丝合成基因的构建,克隆及表达

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Synthetic genes encoding recombinant spider silk proteins have been constructed, cloned, and expressed. Protein sequences were derived from Nephila clavipes dragline silk proteins and reverse-translated to the corresponding DNA sequences. Codon selection was chosen to maximize expression levels in Escherichia coil. DNA ''monomer'' sequences were multimerized to encode high molecular weight synthetic spider silks using a ''head-to-tail'' construction strategy. Multimers were cloned into a prokaryotic expression vector and the encoded silk proteins were expressed in E. coil upon induction with IPTG.(1) Four multimers, ranging in size from 14.7 to 41.3 kDa, were chosen for detailed analysis. These proteins were isolated by immobilized metal affinity chromatography and purified using reverse-phase HPLC. The composition and identity of the purified proteins were confirmed by amino acid composition analysis, N-terminal sequencing, laser desorption mass spectroscopy, and Western analysis using antibodies reactive to native spider dragline silk. Circular dichroism measurements indicate that the synthetic spider silks have substantial beta-sheet structure.
机译:已经构建,克隆和表达了编码重组蜘蛛丝蛋白的合成基因。蛋白质序列衍生自Nephila clavipes牵引线丝蛋白,并反向翻译为相应的DNA序列。选择密码子选择以使大肠杆菌中的表达水平最大化。使用“头到尾”构建策略,将DNA“单体”序列多聚化以编码高分子量合成蜘蛛丝。将多聚体克隆到原核表达载体中,用IPTG诱导后在大肠​​杆菌中表达编码的丝蛋白。(1)选择大小在14.7至41.3 kDa之间的四个多聚体进行详细分析。通过固定的金属亲和色谱分离这些蛋白质,并使用反相HPLC纯化。纯化的蛋白质的组成和身份通过氨基酸组成分析,N端测序,激光解吸质谱和使用与天然蜘蛛拉丝蚕丝具有反应性的抗体进行的Western分析确认。圆二色性测量表明,合成蜘蛛丝具有大量的β-折叠结构。

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