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Construction, expression, and characterization of AG1 1?843 and AG1 1?1581

机译:AG1 1?843 和AG1 1?1581

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AG1, a member of the DUF1220 protein family, exhibits the most extreme human lineage-specific copy number expansion of any protein-coding sequence in the genome. These variations in copy number have been linked to both brain evolution among primates and brain size in humans. Unfortunately, our current understanding of the structure and function of these proteins is limited because current cloning and expression techniques fail to consistently produce recombinant protein for in vitro studies. The present work describes a method for amino acid and DNA sequence optimization and synthesis, recombinant protein expression and analysis of two AG1 fragments, AG11?843and AG11?1581. It was first necessary to modify the nucleotide sequence, while holding the GC content at 52.9%. The genes were then sectionally synthesized by overlap PCR. The resulting segments were cloned into the pET-15?b-sumo expression vector and subsequently transformed into BL21 (DE3) cells. After inducing their expression, the AG11?843and AG11?1581proteins were isolated and purified. Furthermore, using dynamic light scattering and gel filtration analysis, AG11?843and AG11?1581were shown to be present in tetrameric and dimeric forms in solution. To our knowledge, this is the first study to synthesize and express fragments of the DUF1220 protein family for in vitro analysis. Taken together, the proven utility and versatility of this method indicate that it can be used as an effective technique to construct and express other proteins with complicated sequences, thus providing the means to study their function and structure in vitro.
机译:AG1是DUF1220蛋白家族的成员,在基因组中的任何蛋白质编码序列中,它表现出最极端的人类谱系特异性拷贝数扩展。这些拷贝数的变化既与灵长类动物的大脑进化有关,也与人类的大脑大小有关。不幸的是,我们目前对这些蛋白质的结构和功能的理解是有限的,因为目前的克隆和表达技术无法持续生产用于体外研究的重组蛋白质。本工作描述了一种氨基酸和DNA序列优化、合成、重组蛋白表达和分析两个AG1片段AG11?的方法?843和AG11?首先需要修改核苷酸序列,同时将GC含量保持在52.9%。然后通过重叠PCR分段合成这些基因。产生的片段被克隆到pET-15?b-sumo表达载体,随后转化为BL21(DE3)细胞。诱导表达后,AG11?843和AG11?分离纯化了1581个蛋白质。此外,使用动态光散射和凝胶过滤分析,AG11?843和AG11?1581在溶液中以四聚体和二聚体形式存在。据我们所知,这是第一项合成和表达DUF1220蛋白家族片段用于体外分析的研究。综上所述,这种方法的实用性和多功能性表明,它可以作为一种有效的技术来构建和表达其他具有复杂序列的蛋白质,从而为体外研究其功能和结构提供了手段。

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