2-Methoxy-4-methylsulfinylbenzyl: A Backbone Amide Safety-Catch Protecting Group for the Synthesis and Purification of Difficult Peptide Sequences

被引:18
作者
Paradis-Bas, Marta [1 ,2 ]
Tulla-Puche, Judit [1 ,2 ]
Albericio, Fernando [1 ,2 ,3 ,4 ]
机构
[1] Inst Res Biomed IRB Barcelona, Barcelona 08028, Spain
[2] CIBER BBN, Networking Ctr Bioengn Biomat & Nanomed, Barcelona 08028, Spain
[3] Univ Barcelona, Dept Organ Chem, E-08028 Barcelona, Spain
[4] Univ Kwazulu Natal, Sch Chem & Phys, ZA-4001 Durban, South Africa
关键词
peptides; protecting groups; solid-phase synthesis; synthesis design; synthetic methods; SOLID-PHASE SYNTHESIS; COUPLING REAGENTS; DEPSIPEPTIDE TECHNIQUE; STRATEGY; LINKER; BOND;
D O I
10.1002/chem.201403668
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The use of 2-methoxy-4-methylsulfinylbenzyl (Mmsb) as a new backbone amide-protecting group that acts as a safety-catch structure is proposed. Mmsb, which is stable during the elongation of the sequence and trifluoroacetic acid-mediated cleavage from the resin, improves the synthetic process as well as the properties of the quasi-unprotected peptide. Mmsb offers the possibility of purifying and characterizing complex peptide sequences, and renders the target peptide after NH4I/TFA treatment and subsequent ether precipitation to remove the cleaved Mmsb moiety. First, the difficult peptide sequence H-(Ala)(10)-NH2 was selected as a model to optimize the new protecting group strategy. Second, the complex, bioactive Ac-(RADA)(4)-NH2 sequence was chosen to validate this methodology. The improvements in solid-phase peptide synthesis combined with the enhanced solubility of the quasi-unprotected peptides, as compared with standard sequences, made it possible to obtain purified Ac-(RADA)(4)-NH2. To extend the scope of the approach, the challenging A(1-42) peptide was synthesized and purified in a similar manner. The proposed Mmsb strategy opens up the possibility of synthesizing other challenging small proteins.
引用
收藏
页码:15031 / 15039
页数:9
相关论文
共 52 条
  • [1] Solid-phase peptide synthesis using acetonitrile as a solvent in combination with PEG-based resins
    Acosta, Gerardo A.
    del Fresno, Montserrat
    Paradis-Bas, Marta
    Rigau-DeLlobet, Maria
    Cote, Simon
    Royo, Miriam
    Albericio, Fernando
    [J]. JOURNAL OF PEPTIDE SCIENCE, 2009, 15 (10) : 629 - 633
  • [2] Recent development in peptide coupling reagents
    Al-Warhi, Tarfah I.
    Al-Hazimi, Hassan M. A.
    El-Faham, Ayman
    [J]. JOURNAL OF SAUDI CHEMICAL SOCIETY, 2012, 16 (02) : 97 - 116
  • [3] Albericio F, 1997, METHOD ENZYMOL, V289, P104
  • [4] Atherton E., 1989, SOLID PHASE PEPTIDE
  • [5] BEDFORD J, 1992, INT J PEPT PROT RES, V40, P300
  • [6] Synthesis of 'difficult' peptide sequences:: application of a depsipeptide technique to the Jung-Redemann 10- and 26-mers and the amyloid peptide Aβ(1-42)
    Carpino, LA
    Krause, E
    Sferdean, CD
    Schümann, M
    Fabian, H
    Bienert, M
    Beyermann, M
    [J]. TETRAHEDRON LETTERS, 2004, 45 (40) : 7519 - 7523
  • [8] Synthesis and secondary structural studies of penta(acetyl-Hmb)Aβ(1-40)
    Clippingdale, AB
    Macris, M
    Wade, JD
    Barrow, CJ
    [J]. JOURNAL OF PEPTIDE RESEARCH, 1999, 53 (06): : 665 - 672
  • [9] The depsipeptide technique applied to peptide segment condensation: Scope and limitations
    Coin, Irene
    Schmieder, Peter
    Bienert, Michael
    Beyermann, Michael
    [J]. JOURNAL OF PEPTIDE SCIENCE, 2008, 14 (03) : 299 - 306
  • [10] Cote S., 2005, Patent, Patent No. 2005012277