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pro vyhledávání: '"Donovan Adpressa"'
Autor:
John A. McIntosh, Zhijian Liu, Brian M. Andresen, Nastaran Salehi Marzijarani, Jeffrey C. Moore, Nicholas M. Marshall, Margie Borra-Garske, Jennifer V. Obligacion, Patrick S. Fier, Feng Peng, Jacob H. Forstater, Matthew S. Winston, Chihui An, Wonsuk Chang, Jongwon Lim, Mark A. Huffman, Steven P. Miller, Fuh-Rong Tsay, Michael D. Altman, Charles A. Lesburg, Dietrich Steinhuebel, B. Wesley Trotter, Jared N. Cumming, Alan Northrup, Xiaodong Bu, Benjamin F. Mann, Mirlinda Biba, Kaori Hiraga, Grant S. Murphy, Joshua N. Kolev, Amanda Makarewicz, Weilan Pan, Iman Farasat, Rachel S. Bade, Kevin Stone, Da Duan, Oscar Alvizo, Donovan Adpressa, Erik Guetschow, Erik Hoyt, Erik L. Regalado, Steve Castro, Nelo Rivera, Joseph P. Smith, Fengqiang Wang, Alejandro Crespo, Deeptak Verma, Stephanus Axnanda, Zachary E. X. Dance, Paul N. Devine, David Tschaen, Keith A. Canada, Paul G. Bulger, Benjamin D. Sherry, Matthew D. Truppo, Rebecca T. Ruck, Louis-Charles Campeau, David Jonathan Bennett, Guy R. Humphrey, Kevin R. Campos, Matthew L. Maddess
Publikováno v:
Nature. 603(7901)
The introduction of molecular complexity in an atom- and step-efficient manner remains an outstanding goal in modern synthetic chemistry. Artificial biosynthetic pathways are uniquely able to address this challenge by using enzymes to carry out multi