词条 | Biomimetic synthesis |
释义 |
A more recent example is E.J. Corey's carbenium-mediated cyclization of an engineered linear polyene to provide a tetracyclic steroid ring system,[4] which built upon studies of cationic cyclizations of linear polyenes by the Albert Eschenmoser and Gilbert Stork,[5][6] and the extensive studies of the W.S. Johnson to define the requirements to initiate and terminate the cyclization, and to stabilize the cationic carbenium group during the cyclization (as nature accomplishes via enzymes during biosynthesis of steroids such as cholesterol).[7] In relation to the second definition, synthetic organic or inorganic catalysts applied to accomplish a chemical transformation accomplished in nature by a biocatalyst (e.g., a purely proteinaceous catalyst, a metal or other cofactor bound to an enzyme, or a ribozyme) can be said to be accomplishing a biomimetic synthesis, where design and characterization of such catalytic systems has been termed biomimetic chemistry.[8][9][10] Synthesis of proto-daphniphyllineProto-daphniphylline is a precursor in the biosynthesis of a family of alkaloids found in Daphniphyllum macropodum. It is of interest due to its complex molecular structure making it a challenging target for conventional organic synthesis methods due to the fused ring structure and the spiro carbon centre. Based on a proposed biosynthesis pathway of proto-daphniphylline from squalene, Clayton Heathcock and co-workers developed a remarkably elegant and short total synthesis of proto-daphniphylline from simple starting materials.[11] This is an example of how biomimetic synthesis can simplify the total synthesis of a complex natural product. The key step in Heathcock's synthetic route involves a cyclization of acyclic dialdehydes A or B to form proto-daphniphylline. Both dialdehydes (A or B) have carbon skeletons analogous to squalene and can be synthesized from simple starting materials. Treating A or B with a sequence of simple reagents containing potassium hydroxide, ammonia, and acetic acid led to the formation of proto-daphniphylline. Six σ-bonds and five rings were formed in this remarkable step. It was proposed in the original report that hydroxyldihydropyran intermediate C was first formed when the dialdehyde starting material (A) was treated with potassium hydroxide. A 2-aza-1, 3-diene intermediate (D) was generated from the reaction of intermediate C with ammonia. An acid-catalyzed Diels-Alder reaction formed intermediate E which was further converted to the final product under the reaction conditions. Examples of biomimetic syntheses in Wikipedia
Further literature examples of biomimetic syntheses
References1. ^1 {{Cite journal | author = Robinson R | title = LXIII. A Synthesis of Tropinone | journal = Journal of the Chemical Society, Transactions | volume = 111 | pages = 762–768 | year = 1917 | doi = 10.1039/CT9171100762 }} 2. ^{{cite journal |vauthors=de la Torre MC, Sierra MA | title = Comments on recent achievements in biomimetic organic synthesis | journal = Angew. Chem. Int. Ed. Engl. | volume = 43 | issue = 2 | pages = 160–81 |date=January 2004 | pmid = 14695603 | doi = 10.1002/anie.200200545 }} 3. ^{{cite book | author = van Tamelen EE | title = Biogenetic-type syntheses of natural products | journal = Fortschr. Chem. Org. Naturst. | year = 1961 | volume = 19 | pages = 242–290 | doi = 10.1007/978-3-7091-7156-1_5 | isbn = 978-3-7091-7158-5 }} 4. ^{{cite journal |vauthors=Corey EJ, Luo G, Lin LS | title = A simple enantioselective synthesis of the biologically active tetracyclic marine sesterterpene scalarenedial | journal = J. Am. Chem. Soc. | year = 1997 | volume = 119 | pages = 9927–28 | doi = 10.1021/ja972690l | issue = 41 }} 5. ^{{cite book |vauthors=Eschenmoser A, Felix D, Gut M, Meier J, Stadler P | chapter = Some aspects of acid-catalysed cyclizations of terpenoid polyenes | title = Ciba Foundation Symposium on the Biosynthesiis of Terpenes and Steroids | veditors = Wolstenholme GE, O'Conner M | publisher = J. & A. Churchill | location = London | year = 1959 | pages =217–230 | doi = 10.1002/9780470719121.ch14 | series = Novartis Foundation Symposia | isbn = 9780470719121 }} 6. ^{{cite journal |vauthors=Stork G, Burgstrahler AW | title = The stereochemistry of polyene cyclization | journal = J. Am. Chem. Soc. | year = 1955 | volume = 77 | pages = 5068–77 | doi = 10.1021/ja01624a038 | issue = 19 }} 7. ^{{cite journal |vauthors=Johnson WS, Marshall JA, Keana JF, Franck RW, Martin DG, Bauer JV | title = Steroid total synthesis—hydrochrysene approach—XVI: Racemic conessine, progesterone, cholesterol, and some related natural products | journal = Tetrahedron | year = 1966 | volume = 22 | pages = 541–601 | doi = 10.1016/S0040-4020(01)90961-5}} 8. ^{{cite journal | vauthors = Breslow R | author-link = Ronald Breslow | title = Biomimetic chemistry: biology as an inspiration | journal = The Journal of Biological Chemistry | volume = 284 | issue = 3 | pages = 1337–42 | date = January 2009 | pmid = 18784073 | doi = 10.1074/jbc.X800011200 }} 9. ^{{cite journal | vauthors = Lee SC, Holm RH | title = Speculative synthetic chemistry and the nitrogenase problem | journal = Proceedings of the National Academy of Sciences of the United States of America | volume = 100 | issue = 7 | pages = 3595–600 | date = April 2003 | pmid = 12642670 | pmc = 152967 | doi = 10.1073/pnas.0630028100 }} 10. ^{{cite journal | vauthors = Breslow R | author-link = Ronald Breslow | date = 1995 | title = Biomimetic chemistry and artificial enzymes: Catalysis by design. | journal = Accounts of Chemical Research | volume = 28 | issue = 3 | pages = 146–153 | doi = 10.1021/ar00051a008 }} 11. ^{{cite journal | vauthors = Piettre S, Heathcock CH | author-link2 = Clayton Heathcock | title = Biomimetic total synthesis of proto-daphniphylline | journal = Science | volume = 248 | issue = 4962 | pages = 1532–4 | date = June 1990 | pmid = 17818314 | doi = 10.1126/science.248.4962.1532 }} 12. ^{{cite book | vauthors = Gao S, Chen C | date = 2012 | chapter = Nakiterpiosin | title = Total Synthesis of Natural Products: At the Frontiers of Organic Chemistry | chapter-url = https://books.google.com/books?id=UT5EAAAAQBAJ&lpg=PP1&pg=PA25#v=onepage&q&f=false | pages = 25–38 | veditors = Li JJ, Corey EJ | editor-link2 = E. J. Corey | location = Berlin | publisher = Springer | isbn = 978-3-642-34065-9 }} 13. ^{{cite journal | vauthors = Heathcock CH, Hansen MM, Ruggeri RB, Kath JC | author-link1 = Clayton H. Heathcock| title = Daphniphyllum alkaloids. 11. Biomimetic total synthesis of methyl homosecodaphniphyllate. Development of the tetracyclization reaction | journal = Journal of Organic Chemistry | volume = 57 | issue = 9 | pages = 2544–53 | doi = 10.1021/jo00035a008 | year = 1992}} 14. ^{{cite journal | vauthors = Heathcock CH, Piettre S, Ruggeri RB, Ragan JA, Kath JC | author-link1 = Clayton H. Heathcock | title = Daphniphyllum alkaloids. 12. A proposed biosynthesis of the pentacylic skeleton. proto-Daphniphylline | journal = Journal of Organic Chemistry | volume = 57 | issue = 9 | pages = 2554–66 | doi = 10.1021/jo00035a009 | year = 1992 }} Further reading{{refbegin}}
1 : Chemical synthesis |
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