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Research
We are exploring the discovery of new chemical reactions and synthetic strategies to develop a comprehensive, robust, and cost-effective methodology that will overcome the limits of biology and enable de novo chemical synthesis of any proteins found in nature or designed by humans. Combined with the technologies of in vivo functional analysis, structural biochemistry, and drug development, our chemical protein synthesis methodology will support the study of human biology and health from a unique perspective, and facilitate the development of precision diagnostics and therapeutics.
We are exploring the discovery of new chemical reactions and synthetic strategies to develop a comprehensive, robust, and cost-effective methodology that will overcome the limits of biology and enable de novo chemical synthesis of any proteins found in nature or designed by humans. Combined with the technologies of in vivo functional analysis, structural biochemistry, and drug development, our chemical protein synthesis methodology will support the study of human biology and health from a unique perspective, and facilitate the development of precision diagnostics and therapeutics.
研究兴趣
论文共 493 篇作者统计合作学者相似作者
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Journal of Biological Chemistryno. 1 (2024): 105539-105539
Nature structural & molecular biologypp.1-11, (2024)
Nature Communicationsno. 1 (2024): 1-13
Science China Chemistrypp.1-37, (2024)
Chem (2024)
Dong-Liang Huang, Wu-Chen Guo, Wei-Wei Shi, Yun-Pu Gao, Yong-Kang Zhou, Long-Jie Wang,Chen Wang,Shan Tang,Lei Liu,Ji-Shen Zheng
Science advancesno. 29 (2024): eado9413-eado9413
Nano Researchno. 4 (2024): 1-12
Huasong Ai,Zebin Tong,Zhiheng Deng,Qiang Shi, Shixian Tao, Jiawei Liang,Maoshen Sun, Xiangwei Wu,Qingyun Zheng,Lujun Liang,Jia-Bin Li,Shuai Gao,
biorxiv(2024)
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