Difference between revisions of "Maeda Lab:Publications"
From Maeda Lab
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<li>'''Schenck C.A.''', '''Men Y.''' and '''Maeda H.A.*''' (2017) Conserved Molecular Mechanism of TyrA Dehydrogenase Substrate Specificity Underlying Alternative Tyrosine Biosynthetic Pathways in Plants and Microbes [https://www.frontiersin.org/articles/10.3389/fmolb.2017.00073 '''''Frontiers Mol. Biosci.''''' ''online''] | <li>'''Schenck C.A.''', '''Men Y.''' and '''Maeda H.A.*''' (2017) Conserved Molecular Mechanism of TyrA Dehydrogenase Substrate Specificity Underlying Alternative Tyrosine Biosynthetic Pathways in Plants and Microbes [https://www.frontiersin.org/articles/10.3389/fmolb.2017.00073 '''''Frontiers Mol. Biosci.''''' ''online''] | ||
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<li>'''Schenck C.A.''', Holland C.K., '''Schneider M.''', '''Men Y.''', Lee S.G., Jez J. and '''Maeda H.A.*''' (2017) Molecular Basis of the Evolution of Alternative Tyrosine Biosynthetic Routes in Plants. [http://www.nature.com/doifinder/10.1038/nchembio.2414 '''''Nature Chem. Biol.''''' 13, 1029-1035] [http://rdcu.be/tIbB ''Free view-only version''] | <li>'''Schenck C.A.''', Holland C.K., '''Schneider M.''', '''Men Y.''', Lee S.G., Jez J. and '''Maeda H.A.*''' (2017) Molecular Basis of the Evolution of Alternative Tyrosine Biosynthetic Routes in Plants. [http://www.nature.com/doifinder/10.1038/nchembio.2414 '''''Nature Chem. Biol.''''' 13, 1029-1035] [http://rdcu.be/tIbB ''Free view-only version''] | ||
Featured in [http://news.wisc.edu/peanut-family-secret-for-making-chemical-building-blocks-revealed/ ''UW News''] and [https://www.nature.com/articles/s41477-017-0047-z ''Nature Plants'']. | Featured in [http://news.wisc.edu/peanut-family-secret-for-making-chemical-building-blocks-revealed/ ''UW News''] and [https://www.nature.com/articles/s41477-017-0047-z ''Nature Plants'']. | ||
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<li>'''Wang M.''', '''Toda K.''', '''Maeda H.A.*''' (2016) Biochemical Properties and Subcellular Localization of Tyrosine Aminotransferases from ''Arabidopsis thaliana''. [https://www.ncbi.nlm.nih.gov/pubmed/27726859 '''''Phytochemistry''''', 132, 16–25] | <li>'''Wang M.''', '''Toda K.''', '''Maeda H.A.*''' (2016) Biochemical Properties and Subcellular Localization of Tyrosine Aminotransferases from ''Arabidopsis thaliana''. [https://www.ncbi.nlm.nih.gov/pubmed/27726859 '''''Phytochemistry''''', 132, 16–25] | ||
− | <li>'''Maeda H.A.*''' (2016) Lignin biosynthesis: Tyrosine shortcut in grasses. [http://www.nature.com./articles/nplants201680 '''''Nature Plants''''' 2, 16080] DOI: 10.1038/NPLANTS.2016.80 | + | <li>'''Maeda H.A.*''' (2016) Lignin biosynthesis: Tyrosine shortcut in grasses. [http://www.nature.com./articles/nplants201680 '''''Nature Plants''''' 2, 16080] DOI: 10.1038/NPLANTS.2016.80 |
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<li>'''Schenck C.A.''', '''Chen S.''', Siehl D., '''Maeda H.A.*''' (2015) Non-plastidic, Tyrosine-Insensitive Prephenate Dehydrogenases from Legumes. [http://www.nature.com/nchembio/journal/vaop/ncurrent/full/nchembio.1693.html '''''Nature Chem. Biol. ''''' 11, 52-57] *Featured on the [http://www.nature.com/nchembio/journal/v11/n1/covers/index.html Cover]. | <li>'''Schenck C.A.''', '''Chen S.''', Siehl D., '''Maeda H.A.*''' (2015) Non-plastidic, Tyrosine-Insensitive Prephenate Dehydrogenases from Legumes. [http://www.nature.com/nchembio/journal/vaop/ncurrent/full/nchembio.1693.html '''''Nature Chem. Biol. ''''' 11, 52-57] *Featured on the [http://www.nature.com/nchembio/journal/v11/n1/covers/index.html Cover]. | ||
:<font color="#404040"> ''L-Tyrosine (Tyr) and its plant-derived natural products are essential in both plants and humans. In plants, Tyr is generally assumed to be synthesized in the plastids via arogenate dehydrogenase (ADH) that is strictly inhibited by Tyr. Here we identified non-plastidic Tyr-insensitive prephenate dehydrogenases (PDHs) uniquely present in legumes, providing molecular evidence for the diversification of primary metabolic Tyr pathway via an alternative cytosolic PDH pathway in plants. Also, the Tyr-insensitive property of the identified PDH enzymes has immediate impacts on metabolic engineering to improve the production of Tyr and Tyr-derived natural products.'' </font> | :<font color="#404040"> ''L-Tyrosine (Tyr) and its plant-derived natural products are essential in both plants and humans. In plants, Tyr is generally assumed to be synthesized in the plastids via arogenate dehydrogenase (ADH) that is strictly inhibited by Tyr. Here we identified non-plastidic Tyr-insensitive prephenate dehydrogenases (PDHs) uniquely present in legumes, providing molecular evidence for the diversification of primary metabolic Tyr pathway via an alternative cytosolic PDH pathway in plants. Also, the Tyr-insensitive property of the identified PDH enzymes has immediate impacts on metabolic engineering to improve the production of Tyr and Tyr-derived natural products.'' </font> |
Revision as of 16:25, 8 January 2018
Publications (*corresponding author)Google Scholar citations
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