Formation of amide bond catalyzed by lipase in aqueous phase for peptide synthesis

被引:5
|
作者
Kuo, Chia-Hung [1 ]
Lin, Jer-An [2 ]
Chien, Ching-Ming [2 ]
Tsai, Chang-Han [3 ]
Liu, Yung-Chuan [3 ]
Shieh, Chwen-Jen [2 ]
机构
[1] Natl Kaohsiung Marine Univ, Dept Seafood Sci, 142 Haijhuan Rd, Kaohsiung 81157, Taiwan
[2] Natl Chung Hsing Univ, Ctr Biotechnol, 250 Kuo Kuang Rd, Taichung 402, Taiwan
[3] Natl Chung Hsing Univ, Dept Chem Engn, 250 Kuo Kuang Rd, Taichung 402, Taiwan
关键词
Enzymatic peptide synthesis; Amidation; Porcine pancreatic lipase; N-Acetyl-L-phenylalanyl-L-tyrosinamide; Kinetics; CONVERTING-ENZYME; ALPHA-CHYMOTRYPSIN; PROTEASE; TRANSESTERIFICATION; BIODIESEL;
D O I
10.1016/j.molcatb.2016.03.010
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A dipeptide N-acetyl-L-phenylalanyl-L-tyrosinamide (N-Ac-Phe-Tyr-NH2), with angiotensin I converting enzyme (ACE) inhibitor activity, was synthesized via porcine pancreatic lipase catalyzed amidation of N-acetyl-phenylalanine ethyl ester with L-tyrosinamide in an aqueous phase. Response surface methodology was employed to evaluate the effects of synthesis parameters. The optimum synthesis conditions obtained an 84.45% yield of N-Ac-Phe-Tyr-NH2 with a reaction time of 3.8 min, a temperature of 20.9 degrees C, an enzyme amount of 6.5 U, and a substrate molar ratio of 2.5:1 (Tyr:Phe). The kinetics of lipase and alpha-chymotrypsin catalyzed amidation was compared using the Ping-Pong mechanism. The lipase showed a lower apparent kinetic constant than a-chymotrypsin indicating that the acyl lipase intermediate had a higher affinity toward tyrosinamide in the amidation. In addition, because the lipase can avoid the secondary hydrolysis of synthesized peptide, it is expected to be an effective method for obtaining a good yield of dipeptide. (C) 2016 Published by Elsevier B.V.
引用
收藏
页码:15 / 20
页数:6
相关论文
共 50 条
  • [31] Synthesis and use of new semispecific substrates for trypsin-catalyzed peptide bond formation
    Braun, K
    Mitin, YV
    Salchert, K
    Schmidt, T
    Kuhl, P
    BIOCATALYSIS AND BIOTRANSFORMATION, 2000, 18 (06) : 427 - 441
  • [32] Peptide bond formation catalyzed by α-chymotrypsin in ionic liquids
    Xing, Guo-wen
    Li, Feng-yun
    Ming, Cong
    Ran, Li-nan
    TETRAHEDRON LETTERS, 2007, 48 (24) : 4271 - 4274
  • [33] Investigation of the synthesis of oxazolines through amide bond formation
    Stobart, Carsyn
    Grote, Robin
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [34] A Review of Amide Bond Formation in Microwave Organic Synthesis
    Lukasik, Natalia
    Wagner-Wysiecka, Ewa
    CURRENT ORGANIC SYNTHESIS, 2014, 11 (04) : 592 - 604
  • [35] Nickel-Catalyzed Amide Bond Formation from Methyl Esters
    Ben Halima, Taoufik
    Masson-Makdissi, Jeanne
    Newman, Stephen G.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (39) : 12925 - 12929
  • [36] AMIDE PROTECTION AND AMIDE SUPPORTS IN SOLID-PHASE PEPTIDE SYNTHESIS
    PIETTA, PG
    MARSHALL, GR
    JOURNAL OF THE CHEMICAL SOCIETY D-CHEMICAL COMMUNICATIONS, 1970, (11): : 650 - &
  • [37] Phosphorus pentoxide for amide and peptide bond formation with minimal by-products
    Erapalapati, Venkataramana
    Hale, Umatai A.
    Madhavan, Nandita
    TETRAHEDRON LETTERS, 2019, 60 (49)
  • [38] Solid-phase, Pd-catalyzed silicon-aryl carbon bond formation. Synthesis of sansalvamide A peptide
    Gu, WX
    Liu, SX
    Silverman, RB
    ORGANIC LETTERS, 2002, 4 (23) : 4171 - 4174
  • [39] Novel Disulfide Bond Formation Strategies in Solid-Phase Peptide Synthesis
    Postma, T. M.
    Gongora-Benitez, M.
    Tulla-Puche, J.
    Giesecke, U.
    Bruckdorfer, T.
    Albericio, F.
    BIOPOLYMERS, 2013, 100 (03) : 241 - 241
  • [40] Efficient kinetic resolution of amino acids catalyzed by lipase AS 'Amano' via cleavage of an amide bond
    Wang, Bo
    Liu, Yanfeng
    Zhang, Dela
    Feng, Yuhong
    Li, Jiacheng
    TETRAHEDRON-ASYMMETRY, 2012, 23 (18-19) : 1338 - 1342