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通过骨架与发色团之间的重新组装产生的荧光蛋白变体。

Fluorescent Protein Variants Generated by Reassembly between Skeleton and Chromophore.

作者信息

Sun Tingting, Li Tianpeng, Yi Ke, Yan Guoquan, Gao Xiaolian

机构信息

College of Food Science and Pharmaceutical Engineering, Zaozhuang University, Zaozhuang, Shandong 277160, China.

College of Civil and Architecture Engineering, Zaozhuang University, Zaozhuang, Shandong 277160, China.

出版信息

ACS Omega. 2021 Jan 19;6(4):2925-2933. doi: 10.1021/acsomega.0c05299. eCollection 2021 Feb 2.

Abstract

Fluorescent proteins (FPs) can be used as intrinsic molecular tags to track the dynamic activity in live cells. To obtain variants in an available and massive manner is always a challenge. Here, we adopted a computer-based microarray synthesis method to realize the reassembly between the chromophore and the skeleton. DNAWorks was used to segment the input FP templates into a set of overlapping oligonucleotides (20-43 mer) with a balanced annealing temperature, G + C content, and codon frequency. The constitution of the chromophore was kept in the same section by switching the divided sites during segmentation and the codon was optimized to further keep the balanced parameters. The designed oligonucleotides were synthesized on photo-programmable microfluidic arrays. Sequence analysis and the subsequent conditional induced expression of FPs revealed that oligonucleotides were highly reassembled. Spectra, photostability, and molecular size detection of randomly selected variants showed that they were distinct monomeric proteins that preserved photoactivity. Our study provides an effective means of obtaining FP variants based on a computer-designed parallel synthesis.

摘要

荧光蛋白(FPs)可作为内在分子标签来追踪活细胞中的动态活动。以可用且大量的方式获得变体一直是一项挑战。在此,我们采用基于计算机的微阵列合成方法来实现发色团与骨架之间的重新组装。DNAWorks用于将输入的荧光蛋白模板分割成一组具有平衡退火温度、G + C含量和密码子频率的重叠寡核苷酸(20 - 43聚体)。通过在分割过程中切换分割位点,使发色团的组成保持在同一部分,并对密码子进行优化以进一步保持平衡参数。设计的寡核苷酸在光可编程微流控阵列上合成。荧光蛋白的序列分析及随后的条件诱导表达表明寡核苷酸高度重新组装。对随机选择的变体进行光谱、光稳定性和分子大小检测表明,它们是保留光活性的不同单体蛋白。我们的研究提供了一种基于计算机设计的平行合成来获得荧光蛋白变体的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f49f/7860096/1593704cc893/ao0c05299_0002.jpg

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