Sialic acid metabolism and sialyltransferases: natural functions and applications

被引:224
作者
Li, Yanhong [1 ]
Chen, Xi [1 ]
机构
[1] Univ Calif Davis, Dept Chem, Davis, CA 95616 USA
关键词
Carbohydrate; Metabolism; Sialic acid; Sialoside; Sialyltransferase; SIALATE-O-ACETYLTRANSFERASE; N-ACETYLNEURAMINIC ACID; ALPHA/BETA-GALACTOSIDE ALPHA-2,3-SIALYLTRANSFERASE; EFFICIENT CHEMOENZYMATIC SYNTHESIS; SURFACE-PLASMON RESONANCE; LARGE-SCALE PRODUCTION; ESCHERICHIA-COLI K1; PASTEURELLA-MULTOCIDA SIALYLTRANSFERASE; LUMINOUS MARINE BACTERIUM; HUMAN XENO-AUTOANTIBODIES;
D O I
10.1007/s00253-012-4040-1
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Sialic acids are a family of negatively charged monosaccharides which are commonly presented as the terminal residues in glycans of the glycoconjugates on eukaryotic cell surface or as components of capsular polysaccharides or lipooligosaccharides of some pathogenic bacteria. Due to their important biological and pathological functions, the biosynthesis, activation, transfer, breaking down, and recycle of sialic acids are attracting increasing attention. The understanding of the sialic acid metabolism in eukaryotes and bacteria leads to the development of metabolic engineering approaches for elucidating the important functions of sialic acid in mammalian systems and for large-scale production of sialosides using engineered bacterial cells. As the key enzymes in biosynthesis of sialylated structures, sialyltransferases have been continuously identified from various sources and characterized. Protein crystal structures of seven sialyltransferases have been reported. Wild-type sialyltransferases and their mutants have been applied with or without other sialoside biosynthetic enzymes for producing complex sialic acid-containing oligosaccharides and glycoconjugates. This mini-review focuses on current understanding and applications of sialic acid metabolism and sialyltransferases.
引用
收藏
页码:887 / 905
页数:19
相关论文
共 215 条
[1]   High-throughput screening methodology for the directed evolution of glycosyltransferases [J].
Aharoni, Amir ;
Thieme, Karena ;
Chiu, Cecilia P. C. ;
Buchini, Sabrina ;
Lairson, Luke L. ;
Chen, Hongming ;
Strynadka, Natalie C. J. ;
Wakarchuk, Warren W. ;
Withers, Stephen G. .
NATURE METHODS, 2006, 3 (08) :609-614
[2]   PURIFICATION, CRYSTALLIZATION AND CHARACTERIZATION OF N-ACETYLNEURAMINATE LYASE FROM ESCHERICHIA-COLI [J].
AISAKA, K ;
IGARASHI, A ;
YAMAGUCHI, K ;
UWAJIMA, T .
BIOCHEMICAL JOURNAL, 1991, 276 :541-546
[3]   Insights into the evolution of sialic acid catabolism among bacteria [J].
Almagro-Moreno, Salvador ;
Boyd, E. Fidelma .
BMC EVOLUTIONARY BIOLOGY, 2009, 9
[4]   System-wide genomic and biochemical comparisons of sialic acid biology among primates and rodents -: Evidence for two modes of rapid evolution [J].
Altheide, Tasha K. ;
Hayakawa, Toshiyuki ;
Mikkelsen, Tarjei S. ;
Diaz, Sandra ;
Varki, Nissi ;
Varki, Ajit .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (35) :25689-25702
[5]   Structural insights into the catalytic mechanism of Trypanosoma cruzi trans-sialidase [J].
Amaya, MF ;
Watts, AG ;
Damager, I ;
Wehenkel, A ;
Nguyen, T ;
Buschiazzo, A ;
Paris, G ;
Frasch, AC ;
Withers, SG ;
Alzari, PM .
STRUCTURE, 2004, 12 (05) :775-784
[6]   Chemical diversity in the sialic acids and related α-keto acids:: An evolutionary perspective [J].
Angata, T ;
Varki, A .
CHEMICAL REVIEWS, 2002, 102 (02) :439-469
[7]   Biosynthesis of KDN (2-keto-3-deoxy-D-glycero-D-galacto-nononic acid) -: Identification and characterization of a KDN-9-phosphate synthetase activity from trout testis [J].
Angata, T ;
Nakata, D ;
Matsuda, T ;
Kitajima, K ;
Troy, FA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (33) :22949-22956
[8]   Synthesis of neoglycoconjugates containing deaminated neuraminic acid (KDN) using rat liver α2,6-sialyltransferase [J].
Angata, T ;
Matsuda, T ;
Kitajima, K .
GLYCOBIOLOGY, 1998, 8 (03) :277-284
[9]   IDENTIFICATION, CHARACTERIZATION, AND DEVELOPMENTAL EXPRESSION OF A NOVEL ALPHA-2-]8-KDN-TRANSFERASE WHICH TERMINATES ELONGATION OF ALPHA-2-]8-LINKED OLIGO-POLYSIALIC ACID CHAIN SYNTHESIS IN TROUT EGG POLYSIALOGLYCOPROTEINS [J].
ANGATA, T ;
KITAZUME, S ;
TERADA, T ;
KITAJIMA, K ;
INOUE, S ;
TROY, FA ;
INOUE, Y .
GLYCOCONJUGATE JOURNAL, 1994, 11 (05) :493-499
[10]   Biosynthesis and production of polysialic acids in bacteria [J].
Angel Ferrero, Miguel ;
Rodriguez Aparicio, Leandro .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2010, 86 (06) :1621-1635