Solid-Phase Peptide Synthesis and 2D NMR Analysis of Unknown Tripeptides: An Advanced Undergraduate Synthesis and Spectroscopy Laboratory

被引:1
作者
Moreno, Mariur Rodriguez [1 ]
Johnson, Nye C. [1 ]
Stewart, Christopher B. [1 ]
Setelin, Mary L. [1 ]
Wayment, Adam X. [1 ]
Felix, Braxton M. [1 ]
Burt, Scott R. [1 ]
Michaelis, David J. [1 ]
机构
[1] Brigham Young Univ, Dept Chem & Biochem, Provo, UT 84602 USA
关键词
Upper-Division Undergraduate; Organic Chemistry; Laboratory Instruction; Hands-On Learning; NMRSpectroscopy; Peptides; CHEMISTRY; DISCOVERY; MICROWAVE; DESIGN;
D O I
10.1021/acs.jchemed.3c01188
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We describe a three-day advanced organic laboratory experience that includes the solid-phase synthesis of an unknown three amino acid polypeptide for junior/senior undergraduate chemistry majors. Students conduct a series of 1D and 2D NMR experiments (HSQC, HMBC, TOCSY) and analyze the data to identify the side chain residues of the peptide and the order in which they are coupled. Students gain important experience in solid-phase synthesis and in the use of advanced NMR techniques to identify the structure and order of amino acids in a polypeptide. Students demonstrate improved capacity to use 2D NMR spectra to identify unknown peptide structures and sequences. A green solid-phase synthesis procedure is also presented using nonsensitizing coupling reagents and green solvents. We also provide primary data for >45 tripeptides that can be used to support the solid-phase synthesis lab at universities that do not have advanced 2D NMR capabilities.
引用
收藏
页码:2059 / 2064
页数:6
相关论文
共 37 条
[1]   Methods and Protocols of modern solid phase peptide synthesis [J].
Amblard, M ;
Fehrentz, JA ;
Martinez, J ;
Subra, G .
MOLECULAR BIOTECHNOLOGY, 2006, 33 (03) :239-254
[2]   Green chemistry and the role of analytical methodology development [J].
Anastas, PT .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 1999, 29 (03) :167-175
[3]   Introducing 2D NMR Spectroscopy to Second-Year Undergraduate Chemistry Majors Using a Building-Up Approach [J].
Anderson-Wile, Amelia M. .
JOURNAL OF CHEMICAL EDUCATION, 2016, 93 (04) :699-703
[4]   Solid-phase synthesis of difficult peptide sequences at elevated temperatures:: A critical comparison of microwave and conventional heating technologies [J].
Bacsa, Bernadett ;
Horvati, Kata ;
Bosze, Szilvia ;
Andreae, Fritz ;
Kappe, C. Oliver .
JOURNAL OF ORGANIC CHEMISTRY, 2008, 73 (19) :7532-7542
[5]   Facile Amide Bond Formation with TCFH-NMI in an Organic Laboratory Course [J].
Baldwin, Oliver W. M. ;
Conrad-Marut, Linden H. ;
Beutner, Gregory L. ;
Vosburg, David A. .
JOURNAL OF CHEMICAL EDUCATION, 2022, :3747-3751
[6]   Advances in Fmoc solid-phase peptide synthesis [J].
Behrendt, Raymond ;
White, Peter ;
Offer, John .
JOURNAL OF PEPTIDE SCIENCE, 2016, 22 (01) :4-27
[7]   TCFH-NMI: Direct Access to N-Acyl Imidazoliums for Challenging Amide Bond Formations [J].
Beutner, Gregory L. ;
Young, Ian S. ;
Davies, Merrill L. ;
Hickey, Matthew R. ;
Park, Hyunsoo ;
Stevens, Jason M. ;
Ye, Qingmei .
ORGANIC LETTERS, 2018, 20 (14) :4218-4222
[8]   A Discovery-Oriented Approach to Solid-Phase Peptide Synthesis [J].
Bockman, Matthew R. ;
Miedema, Christopher J. ;
Brennan, Brian B. .
JOURNAL OF CHEMICAL EDUCATION, 2012, 89 (11) :1470-1473
[9]  
Bruice P. Y., 2019, ORGANIC CHEM
[10]  
Byrne FP, 2016, Sustain Chem Processes, V4, P7, DOI [10.1186/s40508-016-0051-z, DOI 10.1186/S40508-016-0051-Z]