Development and Applications of Ligation-Desulfurization-Desulfurization Strategy in Protein Chemical Synthesis

被引:0
作者
Xu, Ling [1 ]
Yin, Panpan [1 ]
Lu, Xianfu [1 ]
Li, Yiming [2 ]
机构
[1] Anhui Med Univ, Dept Anesthesiol, Affiliated Hosp 1, Hefei 230022, Peoples R China
[2] Hefei Univ Technol, Engn Res Ctr Bioproc, Sch Food & Biol Engn, Minist Educ, Hefei 230009, Peoples R China
来源
CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE | 2024年 / 45卷 / 08期
基金
中国国家自然科学基金;
关键词
Native chemical ligation; Peptide hydrazide ligation; Desulfurization; Protein chemical synthesis; Thioamino acid; PEPTIDE LIGATION; ALPHA-SYNUCLEIN; POSTTRANSLATIONAL MODIFICATIONS; UBIQUITIN CHAINS; HISTONE H2A; BETA; SEMISYNTHESIS; GLYCOPROTEIN; GLYCOPEPTIDE; CYSTEINE;
D O I
10.7503/cjcu20240196
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Protein chemical synthesis plays a crucial role in preparing protein with specific sequences and structures. Traditional solid-phase peptide synthesis encounters limitations due to the efficiency of stepwise amino acid coupling and deprotection reactions, , posing challenges for synthesizing longer proteins in a single synthesis. Native chemical ligation and peptide hydrazide ligation have significantly facilitated protein synthesis by efficiently connecting unprotected peptide fragments. However, , these ligation strategies rely on the relatively low abundance of cysteine in proteins, , rendering them unsuitable for synthesizing proteins lacking cysteines or with inappropriate cysteine positions for ligation. The development of protein ligation-desulfurization-desulfurization has surmounted this hurdle by extending ligation sites to alanine and introducing thioamino acids. This innovation liberates protein synthesis from strict ligation site requirements. Moreover, , advancements like VA044-based-based radical desulfurization and emerging desulfurization technologies such as photochemical desulfurization, , P-B desulfurization, , and iron-catalyzed desulfurization provide diverse options for protein chemical synthesis and expand its application scope. Overall, , the chemical methods of protein ligation-desulfurization-desulfurization have undergone continuous evolution and innovation. This not only enriches synthetic methodology but also empowers in-depth-depth investigations in protein engineering and chemical biology. This review provides a comprehensive overview of the development of ligation-desulfurization-desulfurization chemistry approaches in protein chemical synthesis in a timeline format. From the early native chemical ligation and peptide hydrazide ligation based on cysteine sites, , to the breakthrough development of ligation-desulfurization-desulfurization strategies, , to the exploration of thioamino acids and diversified desulfurization strategies, , these techniques have not only enriched the strategies for peptide synthesis, , but also demonstrated their broad application and development potential in protein synthesis. We expect that this review will provide insightful and valuable information for researchers in the field of protein chemical synthesis and stimulate further exploration and innovation in this field.
引用
收藏
页数:20
相关论文
共 140 条
  • [31] Transformation of rho-Vinyl-acryl acids into Diamino-valerian acids.
    Fischer, E
    Haske, K
    [J]. BERICHTE DER DEUTSCHEN CHEMISCHEN GESELLSCHAFT, 1905, 38 : 3607 - 3612
  • [32] Monomer/Oligomer Quasi-Racemic Protein Crystallography
    Gao, Shuai
    Pan, Man
    Zheng, Yong
    Huang, Yichao
    Zheng, Qingyun
    Sun, Demeng
    Lu, Lining
    Tan, Xiaodan
    Tan, Xianglong
    Lan, Huan
    Wang, Jiaxing
    Wang, Tian
    Wang, Jiawei
    Liu, Lei
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (43) : 14497 - 14502
  • [33] Visible-Light-Induced Specific Desulfurization of Cysteinyl Peptide and Glycopeptide in Aqueous Solution
    Gao, Xiao-Fei
    Du, Jing-Jing
    Liu, Zheng
    Guo, Jun
    [J]. ORGANIC LETTERS, 2016, 18 (05) : 1166 - 1169
  • [34] Chemical Synthesis of Alpha-Synuclein Proteins via Solid-Phase Peptide Synthesis and Native Chemical Ligation
    Gatzemeier, Luisa Maria
    Meyer, Franc
    Diederichsen, Ulf
    Outeiro, Tiago Fleming
    [J]. CHEMISTRY-A EUROPEAN JOURNAL, 2023, 29 (33)
  • [35] Total Synthesis of Human Galanin-Like Peptide through an Aspartic Acid Ligation
    Guan, Xiaoyang
    Drake, Matthew R.
    Tan, Zhongping
    [J]. ORGANIC LETTERS, 2013, 15 (24) : 6128 - 6131
  • [36] Split Intein: a Versatile Tool for Traceless Peptide Segment Ligation
    Han, Dongyang
    Ren, Yuxiang
    Yang, Ziyi
    Huang, He
    Zheng, Jishen
    [J]. CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2023, 44 (10):
  • [37] Hanna CC, 2022, ANGEW CHEM INT EDIT, V61, DOI [10.1002/anie.202111266, 10.1002/ange.202111266]
  • [38] Protein chemical synthesis by α-ketoacid-hydroxylamine ligation
    Harmand, Thibault J.
    Murar, Claudia E.
    Bode, Jeffrey W.
    [J]. NATURE PROTOCOLS, 2016, 11 (06) : 1130 - 1147
  • [39] Protein Synthesis Assisted by Native Chemical Ligation at Leucine
    Harpaz, Ziv
    Siman, Peter
    Kumar, K. S. Ajish
    Brik, Ashraf
    [J]. CHEMBIOCHEM, 2010, 11 (09) : 1232 - 1235
  • [40] Synthesis of proteins by automated flow chemistry
    Hartrampf, N.
    Saebi, A.
    Poskus, M.
    Gates, Z. P.
    Callahan, A. J.
    Cowfer, A. E.
    Hanna, S.
    Antilla, S.
    Schissel, C. K.
    Quartararo, A. J.
    Ye, X.
    Mijalis, A. J.
    Simon, M. D.
    Loas, A.
    Liu, S.
    Jessen, C.
    Nielsen, T. E.
    Pentelute, B. L.
    [J]. SCIENCE, 2020, 368 (6494) : 980 - +