Literature DB >> 14755557

Characterization of the cellular uptake and metabolic conversion of acetylated N-acetylmannosamine (ManNAc) analogues to sialic acids.

Mark B Jones1, Howard Teng, Jun Kyu Rhee, Nicholas Lahar, Gautam Baskaran, Kevin J Yarema.   

Abstract

"Sialic acid engineering" refers to the strategy where cell surface carbohydrates are modified by the biosynthetic incorporation of metabolic intermediates, such as non-natural N-acetylmannosamine (ManNAc) analogues, into cellular glycoconjugates. While this technology has promising research, biomedical, and biotechnological applications due to its ability to endow the cell surface with novel physical and chemical properties, its adoption on a large scale is hindered by the inefficient metabolic utilization of ManNAc analogues. We address this limitation by proposing the use of acetylated ManNAc analogues for sialic acid engineering applications. In this paper, the metabolic flux of these "second-generation" compounds into a cell, and, subsequently, into the target sialic acid biosynthetic pathway is characterized in detail. We show that acetylated ManNAc analogues are metabolized up to 900-fold more efficiently than their natural counterparts. The acetylated compounds, however, decrease cell viability under certain culture conditions. To determine if these toxic side effects can be avoided, we developed an assay to measure the cellular uptake of acetylated ManNAc from the culture medium and its subsequent flux into sialic acid biosynthetic pathway. This assay shows that the majority ( > 80%) of acetylated ManNAc is stored in a cellular "reservoir" capable of safely sequestering this analogue. These results provide conditions that, from a practical perspective, enable the acetylated analogues to be used safely and efficaciously and therefore offer a general strategy to facilitate metabolic substrate-based carbohydrate engineering efforts. In addition, these results provide fundamental new insights into the metabolic processing of non-natural monosaccharides. Copyright 2004 Wiley Periodicals, Inc.

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Year:  2004        PMID: 14755557     DOI: 10.1002/bit.10901

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  47 in total

1.  Development of delivery methods for carbohydrate-based drugs: controlled release of biologically-active short chain fatty acid-hexosamine analogs.

Authors:  Udayanath Aich; M Adam Meledeo; Srinivasa-Gopalan Sampathkumar; Jie Fu; Mark B Jones; Christopher A Weier; Sung Yun Chung; Benjamin C Tang; Ming Yang; Justin Hanes; Kevin J Yarema
Journal:  Glycoconj J       Date:  2010-05-11       Impact factor: 2.916

2.  Metabolic flux increases glycoprotein sialylation: implications for cell adhesion and cancer metastasis.

Authors:  Ruben T Almaraz; Yuan Tian; Rahul Bhattarcharya; Elaine Tan; Shih-Hsun Chen; Matthew R Dallas; Li Chen; Zhen Zhang; Hui Zhang; Konstantinos Konstantopoulos; Kevin J Yarema
Journal:  Mol Cell Proteomics       Date:  2012-03-28       Impact factor: 5.911

3.  Metabolic oligosaccharide engineering with N-Acyl functionalized ManNAc analogs: cytotoxicity, metabolic flux, and glycan-display considerations.

Authors:  Ruben T Almaraz; Udayanath Aich; Hargun S Khanna; Elaine Tan; Rahul Bhattacharya; Shivam Shah; Kevin J Yarema
Journal:  Biotechnol Bioeng       Date:  2011-11-21       Impact factor: 4.530

4.  Metabolism of diazirine-modified N-acetylmannosamine analogues to photo-cross-linking sialosides.

Authors:  Michelle R Bond; Haochi Zhang; Jaekuk Kim; Seok-Ho Yu; Fan Yang; Steven M Patrie; Jennifer J Kohler
Journal:  Bioconjug Chem       Date:  2011-08-25       Impact factor: 4.774

5.  Targeting pro-invasive oncogenes with short chain fatty acid-hexosamine analogues inhibits the mobility of metastatic MDA-MB-231 breast cancer cells.

Authors:  Christopher T Campbell; Udayanath Aich; Christopher A Weier; Jean J Wang; Sean S Choi; Mary M Wen; Katharina Maisel; Srinivasa-Gopalan Sampathkumar; Kevin J Yarema
Journal:  J Med Chem       Date:  2008-12-25       Impact factor: 7.446

6.  Glycoengineering of Esterase Activity through Metabolic Flux-Based Modulation of Sialic Acid.

Authors:  Mohit P Mathew; Elaine Tan; Jason W Labonte; Shivam Shah; Christopher T Saeui; Lingshu Liu; Rahul Bhattacharya; Patawut Bovonratwet; Jeffrey J Gray; Kevin J Yarema
Journal:  Chembiochem       Date:  2017-04-20       Impact factor: 3.164

Review 7.  Metabolic glycoengineering bacteria for therapeutic, recombinant protein, and metabolite production applications.

Authors:  Christopher T Saeui; Esteban Urias; Lingshu Liu; Mohit P Mathew; Kevin J Yarema
Journal:  Glycoconj J       Date:  2015-05-01       Impact factor: 2.916

8.  Metabolically incorporated photocrosslinking sialic acid covalently captures a ganglioside-protein complex.

Authors:  Michelle R Bond; Chad M Whitman; Jennifer J Kohler
Journal:  Mol Biosyst       Date:  2010-07-13

9.  Extracellular and intracellular esterase processing of SCFA-hexosamine analogs: implications for metabolic glycoengineering and drug delivery.

Authors:  Mohit P Mathew; Elaine Tan; Shivam Shah; Rahul Bhattacharya; M Adam Meledeo; Jun Huang; Freddy A Espinoza; Kevin J Yarema
Journal:  Bioorg Med Chem Lett       Date:  2012-09-13       Impact factor: 2.823

10.  Moderate strength (0.23-0.28 T) static magnetic fields (SMF) modulate signaling and differentiation in human embryonic cells.

Authors:  Zhiyun Wang; Anshu Sarje; Pao-Lin Che; Kevin J Yarema
Journal:  BMC Genomics       Date:  2009-08-04       Impact factor: 3.969

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