Literature DB >> 1802240

Solid-phase synthesis of porcine cholecystokinin-33 in a new resin via FMOC-strategy.

B Penke1, L Nyerges.   

Abstract

Porcine cholecystokinin-33 has been synthesized on solid phase and characterized both chemically and biologically. In order to develop a successful synthetic strategy, a new anchor molecule (4-succinylamido-2,2',4'-trimethoxybenzhydrylamine) was designed and coupled to aminomethyl-polystyrene. The resulting 4-succinylamido-2,2',4'-trimethoxybenzhydrylamine resin was successfully used for the synthesis of cholecystokinin-33 using N-fluorenylmethoxycarbonyl amino acid symmetric anhydrides. Tyrosine-O-sulfate has been synthesized by direct sulfation of tyrosine with chlorosulfonic acid and incorporated into the peptide sequence by coupling as N-fluorenylmethoxy-O-sulfatotyrosine-pentafluorophenyl ester. Side chains of the trifunctional amino acids were protected mostly by t-butyl-type protecting groups. The guanidino function of arginine was protected by the 2,2,5,7,8-pentamethylchromane-6-sulfonyl group. After completion of the synthesis, the peptide was cleaved off the support with 50% trifluoroacetic acid (15 min); this treatment cleaved the side-chain protecting groups simultaneously. Preparative high-performance liquid chromatography resulted in pure cholecystokinin-33 of full biological activity. The structure of the peptide was proved by amino acid analysis, IR and UR spectroscopy, fast atomic bombardment mass spectroscopy and comparative high-performance liquid chromatography of the synthetic and native cholecystokinin-33.

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Year:  1991        PMID: 1802240

Source DB:  PubMed          Journal:  Pept Res        ISSN: 1040-5704


  3 in total

1.  Efficient expression of tyrosine-sulfated proteins in E. coli using an expanded genetic code.

Authors:  Chang C Liu; Susan E Cellitti; Bernhard H Geierstanger; Peter G Schultz
Journal:  Nat Protoc       Date:  2009       Impact factor: 13.491

2.  Total synthesis, purification, and characterization of human [Phe(p-CH2SO 3Na)52, Nle32,53,56, Nal55]-CCK20-58, [Tyr52, Nle32,53,56, Nal55]-CCK-58, and [Phe(p-CH2SO3Na)52, Nle32,53,56, Nal55]-CCK-58.

Authors:  M T Miranda; A G Craig; C Miller; R A Liddle; J E Rivier
Journal:  J Protein Chem       Date:  1993-10

3.  Regulation of chemokine recognition by site-specific tyrosine sulfation of receptor peptides.

Authors:  Levi S Simpson; John Z Zhu; Theodore S Widlanski; Martin J Stone
Journal:  Chem Biol       Date:  2009-02-27
  3 in total

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