Literature DB >> 15386265

O-N intramolecular acyl migration reaction in the development of prodrugs and the synthesis of difficult sequence-containing bioactive peptides.

Youhei Sohma1, Yoshio Hayashi, Mariusz Skwarczynski, Yoshio Hamada, Masato Sasaki, Tooru Kimura, Yoshiaki Kiso.   

Abstract

N-Ointramolecular acyl migration in Ser- or Thr-containing peptides is a well-known side reaction in peptide chemistry. It results in the mutual conversion of ester and amide bonds. Our medicinal chemistry study focused on the fact that the O-acyl product can be readily converted to the original N-acyl form under neutral or slightly basic conditions in an aqueous buffer and the liberated ionized amino group enhances the water solubility of O-acyl products. Because of this, we have developed a novel class of "O-N intramolecular acyl migration"-type water-soluble prodrugs of HIV-1 protease inhibitors. These prodrugs released the parent drugs via a simple chemical mechanism with no side reaction. In this study, we applied this strategy to important cancer chemotherapeutic agents, paclitaxel and its derivatives, to develop water-soluble taxoid prodrugs, and found that these prodrugs, 2'-O-isoform of taxoids, showed promising results with higher water solubility and proper kinetics in their parent drug formation by a simple pH-dependent chemical mechanism with O-N intramolecular acyl migration. These results suggest that this strategy would be useful in toxicology and medical economics. After the successful application of O-N intramolecular acyl migration in medicinal chemistry, this concept was recently used in peptide chemistry for the synthesis of "difficult sequence-containing peptides." The strategy was based on hydrophilic O-acyl isopeptide synthesis followed by the O-N intramolecular acyl migration reaction, leading to the desired peptide. In a model study with small, difficult sequence-containing peptides, synthesized "O-acyl isopeptides" not only improved the solubility in various media and efficiently performed the high performance liquid chromatography purification, but also altered the nature of the difficult sequence during SPPS, resulting in the efficient synthesis of O-acyl isopeptides with no complications. The subsequent O-N intramolecular acyl migration of purified O-acyl isopeptides afforded the desired peptides as precipitates with high yield and purity. Further study of the synthesis of a larger difficult sequence-containing peptide, Alzheimer's disease-related peptide (A beta 1-42), surprisingly showed that only one insertion of the O-acyl group drastically improved the unfavorable nature of the difficult sequence in A beta 1-42, and achieved efficient synthesis of 26-O-acyl isoA beta 1-42 and subsequent complete conversion to A beta 1-42 via the O-N intramolecular acyl migration reaction of 26-O-acyl isoA beta 1-42. This suggests that our new method based on O-N intramolecular acyl migration is an important method for the synthesis of difficult sequence-containing bioactive peptides.

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Year:  2004        PMID: 15386265     DOI: 10.1002/bip.20136

Source DB:  PubMed          Journal:  Biopolymers        ISSN: 0006-3525            Impact factor:   2.505


  8 in total

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Authors:  Jing Pan; Yi Qian; Xiaodong Zhou; Andrew Pazandak; Sarah B Frazier; Peter Weiser; Hong Lu; Lijuan Zhang
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3.  New sialyl Lewis(x) mimic containing an alpha-substituted beta(3)-amino acid spacer.

Authors:  Silvana Pedatella; Mauro De Nisco; Beat Ernst; Annalisa Guaragna; Beatrice Wagner; Robert J Woods; Giovanni Palumbo
Journal:  Carbohydr Res       Date:  2007-10-07       Impact factor: 2.104

4.  Solid-Phase Synthesis of Difficult Purine-Rich PNAs through Selective Hmb Incorporation: Application to the Total Synthesis of Cell Penetrating Peptide-PNAs.

Authors:  Julien Tailhades; Hotake Takizawa; Michael J Gait; Don A Wellings; John D Wade; Yoshitsugu Aoki; Fazel Shabanpoor
Journal:  Front Chem       Date:  2017-10-17       Impact factor: 5.221

5.  Synthetic Collagen-like Polymer That Undergoes a Sol-Gel Transition Triggered by O-N Acyl Migration at Physiological pH.

Authors:  Shinichiro F Ichise; Takaki Koide
Journal:  Int J Mol Sci       Date:  2022-01-29       Impact factor: 5.923

6.  Total Synthesis and Structure Correction of the Cyclic Lipodepsipeptide Orfamide A.

Authors:  Yuko Bando; Yu Hou; Lydia Seyfarth; Jannik Probst; Sebastian Götze; Marta Bogacz; Ute A Hellmich; Pierre Stallforth; Maria Mittag; Hans-Dieter Arndt
Journal:  Chemistry       Date:  2022-03-09       Impact factor: 5.020

7.  Chemical synthesis of membrane proteins: a model study on the influenza virus B proton channel.

Authors:  A C Baumruck; D Tietze; L K Steinacker; A A Tietze
Journal:  Chem Sci       Date:  2018-01-22       Impact factor: 9.825

8.  Poly(amino acids) as a potent self-adjuvanting delivery system for peptide-based nanovaccines.

Authors:  Mariusz Skwarczynski; Guangzu Zhao; Jennifer C Boer; Victoria Ozberk; Armira Azuar; Jazmina Gonzalez Cruz; Ashwini Kumar Giddam; Zeinab G Khalil; Manisha Pandey; Mohini A Shibu; Waleed M Hussein; Reshma J Nevagi; Michael R Batzloff; James W Wells; Robert J Capon; Magdalena Plebanski; Michael F Good; Istvan Toth
Journal:  Sci Adv       Date:  2020-01-29       Impact factor: 14.136

  8 in total

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