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Toward Automated Enzymatic Synthesis of Oligosaccharides.
Wen, Liuqing; Edmunds, Garrett; Gibbons, Christopher; Zhang, Jiabin; Gadi, Madhusudhan Reddy; Zhu, Hailiang; Fang, Junqiang; Liu, Xianwei; Kong, Yun; Wang, Peng George.
Afiliação
  • Wen L; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
  • Edmunds G; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
  • Gibbons C; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
  • Zhang J; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
  • Gadi MR; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
  • Zhu H; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
  • Fang J; National Glycoengineering Research Center and State Key Laboratory of Microbial Technology , Shandong University , Jinan 250100 , China.
  • Liu X; National Glycoengineering Research Center and State Key Laboratory of Microbial Technology , Shandong University , Jinan 250100 , China.
  • Kong Y; National Glycoengineering Research Center and State Key Laboratory of Microbial Technology , Shandong University , Jinan 250100 , China.
  • Wang PG; Department of Chemistry , Georgia State University , Atlanta , Georgia 30303 , United States.
Chem Rev ; 118(17): 8151-8187, 2018 09 12.
Article em En | MEDLINE | ID: mdl-30011195
ABSTRACT
Oligosaccharides together with oligonucleotides and oligopeptides comprise the three major classes of natural biopolymers. Automated systems for oligonucleotide and oligopeptide synthesis have significantly advanced developments in biological science by allowing nonspecialists to rapidly and easily access these biopolymers. Researchers have endeavored for decades to develop a comparable general automated system to synthesize oligosaccharides. Such a system would have a revolutionary impact on the understanding of the roles of glycans in biological systems. The main challenge to achieving automated synthesis is the lack of general synthetic methods for routine synthesis of glycans. Currently, the two main methods to access homogeneous glycans and glycoconjugates are chemical synthesis and enzymatic synthesis. Enzymatic glycosylation can proceed stereo- and regiospecifically without protecting group manipulations. Moreover, the reaction conditions of enzyme-catalyzed glycosylations are extremely mild when compared to chemical glycosylations. Over the past few years methodology toward the automated chemical synthesis of oligosaccharides has been developed. Conversely, while automated enzymatic synthesis is conceptually possible, it is not as well developed. The goal of this survey is to provide a foundation on which continued technological advancements can be made to promote the automated enzymatic synthesis of oligosaccharides.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oligossacarídeos / Automação / Glicoconjugados / Glicosiltransferases / Técnicas de Química Sintética Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oligossacarídeos / Automação / Glicoconjugados / Glicosiltransferases / Técnicas de Química Sintética Idioma: En Ano de publicação: 2018 Tipo de documento: Article