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首页> 外文期刊>Journal of Molecular Biology >Optimization of the antibody c(h)3 domain by residue frequency analysis of IgG sequences.
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Optimization of the antibody c(h)3 domain by residue frequency analysis of IgG sequences.

机译:通过IgG序列的残基频率分析优化抗体c(h)3结构域。

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In an attempt to enhance the overall assembly, yield and half-life of recombinant antibody proteins, we have cloned and expressed several IgG1 C(H)3 domains and examined their folding/refolding characteristics. We utilized a cytoplasmic bacterial expression system with a thioredoxin reductase knock-out strain of BL21(DE3) to produce bovine, murine and human C(H)3. Under identical conditions, expression of bovine C(H)3 resulted consistently in the highest yields of properly folded/oxidized protein. Circular dichroism and fluorescence experiments demonstrate that oxidized bovine and murine C(H)3 have surprisingly similar structures and stabilities, considering the marginal sequence conservation between the two molecules. Residue frequency analysis using a limited data set of 36 unique Fc sequences originating from 19 different mammalian species targeted five specific sites for optimization within bovine C(H)3. Combination of three of these mutants increased the thermal stability of the molecule to 86 degrees C. Comparison of this approach to similar studies using larger sequence databases and/or different selection criteria suggests sequence database design can increase the success rate for identifying residue sites worth optimizing. This optimized C(H)3 domain can be used as a particularly stable platform for functional design and can be grafted into full-length antibody sequences to enhance their thermodynamic parameters and shelf-life.
机译:为了增强重组抗体蛋白的整体组装,产量和半衰期,我们已经克隆并表达了几个IgG1 C(H)3结构域,并研究了它们的折叠/重折叠特性。我们利用带有硫氧还蛋白还原酶敲除菌株BL21(DE3)的细胞质细菌表达系统来生产牛,鼠和人C(H)3。在相同条件下,牛C(H)3的表达始终导致正确折叠/氧化蛋白质的最高产量。圆二色性和荧光实验表明,考虑到两个分子之间的边际保守性,氧化的牛和鼠C(H)3具有惊人的相似结构和稳定性。使用来自19个不同哺乳动物物种的36个独特Fc序列的有限数据集进行残基频率分析,靶向5个特定位点以在牛C(H)3中进行优化。这些突变体中的三个突变体的组合将分子的热稳定性提高到86摄氏度。将该方法与使用较大序列数据库和/或不同选择标准的类似研究进行比较,表明序列数据库设计可以提高鉴定值得优化残基位点的成功率。这种优化的C(H)3结构域可以用作功能设计的特别稳定平台,并且可以嫁接到全长抗体序列中以增强其热力学参数和保质期。

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