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Merck

Perspectives of biotechnological production of L-tyrosine and its applications.

Applied microbiology and biotechnology (2007-10-31)
Tina Lรผtke-Eversloh, Christine Nicole S Santos, Gregory Stephanopoulos
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The aromatic amino acid L-tyrosine is used as a dietary supplement and has promise as a valuable precursor compound for various industrial and pharmaceutical applications. In contrast to chemical production, biotechnological methods can produce L-tyrosine from biomass feedstocks under environmentally friendly and near carbon-free conditions. In this minireview, various strategies for synthesizing L-tyrosine by employing biocatalysts are discussed, including initial approaches as well as more recent advances. Whereas early attempts to engineer L-tyrosine-excreting microbes were based on auxotrophic and antimetabolite-resistant mutants, recombinant deoxyribonucleic acid technology and a vastly increasing knowledge of bacterial physiology allowed recently for more targeted genetic manipulations and strain improvements. As an alternative route, L-tyrosine can also be obtained from the conversion of phenol, pyruvate, and ammonia or phenol and serine in reactions catalyzed by the enzyme tyrosine phenol lyase.

MATERIALS
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Tyrosine, European Pharmacopoeia (EP) Reference Standard
Sigma-Aldrich
L-Tyrosine, from non-animal source, meets EP, USP testing specifications, suitable for cell culture, 99.0-101.0%
Supelco
L-Tyrosine, Pharmaceutical Secondary Standard; Certified Reference Material
Sigma-Aldrich
L-Tyrosine, BioUltra, โ‰ฅ99.0% (NT)
USP
L-Tyrosine, United States Pharmacopeia (USP) Reference Standard
SAFC
L-Tyrosine
Sigma-Aldrich
L-Tyrosine, FG
Supelco
L-Tyrosine, certified reference material, TraceCERTยฎ, Manufactured by: Sigma-Aldrich Production GmbH, Switzerland