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Associate

Zunyi Yang

Education

  • BS in Chemistry. Northwest University, China (1997)
  • PhD in Chemistry. Shanghai Institute of Organic Chemistry (2002)
  • Postdoctoral Research Associate. University of Florida (2005)

Research summary

My research focuses on the development of an efficient and accurate method for the detection of multiple nucleic acids in biological sample. This innovative technology is the multiplexed amplification of DNA and RNA and the orthogonal capture of oligonucleotides tagged with non-standard nucleobases in such a fashion where close mismatches do not compete. My research includes: 1) Synthesis of two components of a non-standard nucleobase pair, dZ:dP, along with a demonstration that the stability of the dZ:dP base pair is stronger than G:C base pair. Furthermore, a demonstration to show the ability of each base to effectively discriminate against mismatches in short duplex DNA. 2) PCR amplification of DNA containing dZ:dP base pair with sufficient fidelity and development of the methodology for the measurement of enzyme fidelity. 3) Synthesis of a novel molecular beacon containing dZ and dP to detect the level of the expression of viral genes in cancer cell. 4) Development of the technology of multiplexed PCR and microarray of dZ and dP, by combining the enzymology and chemistry of non-standard nucleobases. The goal of my research is to reduce the cost of personalized DNA sequencing, revolutionize the diagnosis, management, and treatment of human disease.

Publications

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Nucleoside alpha-thiotriphosphates, polymerases and the exonuclease III analysis of oligonucleotides containing phosphorothioate linkages
Yang, ZY Sismour, AM Benner, SA
Nucl. Acids Res. 35 (9) 3118-3127 (2007)
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Enzymatic incorporation of a third nucleobase pair
Yang, ZY Sismour, AM Sheng, PP Puskar, NL Benner, SA
Nucl. Acids Res. 35 (13) 4238-4249 (2007)
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Artificially expanded genetic information system: a new base pair with an alternative hydrogen bonding pattern
Yang, ZY Hutter, D Sheng, PP Sismour, AM Benner, SA
Nucl. Acids Res. 34 (21) 6095-6101 (2006)
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One-pot glycosylation (OPG) for the chemical synthesis of oligosaccharides
Yu, B Yang, ZY Cao, HZ
Curr. Org. Chem. 9 (2) 179-194 (2005)
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1 -> 2 Migration and concurrent glycosidation of phenyl 1-thio-alpha-mannopyranosides via 2,3-O-cyclic dioxonium intermediates
Yang, ZY Cao, HZ Hu, J Shan, RL Yu, B
Tetrahedron 59 (2) 249-254 (2003)
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Stereoselective synthesis of 2-S-ethyl(phenyl)-2-thio-beta-glucopyranosides via 1,2-migration and concurrent glycosidation of ethyl(phenyl) 2,3-orthoester-1-thio-alpha-mannopyranosides
Yang, ZY Yu, B
Carbohydr. Res. 333 (2) 105-114 (2001)
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Stereoselective synthesis of 2-S-phenyl-2-deoxy-beta-glycosides using phenyl 2,3-O-thionocarbonyl-1-thioglycoside donors via 1,2-migration and concurrent glycosidation
Yu, B Yang, ZY
Org. Lett. 3 (3) 377-379 (2001)
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Rearrangement of sugar 1,2-orthoesters to glycosidic products: a mechanistic implication
Yang, ZY Lin, WB Yu, B
Carbohydr. Res. 329 (4) 879-884 (2000)
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A novel and expeditious approach to the stereoselective synthesis of 2-S-ethyl(phenyl)-2-deoxy-beta-glycosides, ready precursors to 2-deoxy-beta-glycosides
Yu, B Yang, ZY
Tet. Lett. 41 (16) 2961-2964 (2000)
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