Enzymatic assembly of carbon–carbon bonds via iron-catalysed sp3 C–H functionalization
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Frances H. Arnold | Hans Renata | F. Arnold | Kai‐Hong Chen | Xiong Huang | Xiongyi Huang | Ruijie K. Zhang | Kai Chen | Lena Wohlschlager | Lena Wohlschlager | Hans Renata | Ruijie K Zhang | Ruijie K Zhang
[1] H. Sajiki,et al. Chemoselective Control of Hydrogenation Among Aromatic Carbonyl and Benzyl Alcohol Derivatives Using Pd/C(en) Catalyst. , 2001 .
[2] K. Jitsukawa,et al. Wacker-type oxidation of internal olefins using a PdCl2/N,N-dimethylacetamide catalyst system under copper-free reaction conditions. , 2009, Angewandte Chemie.
[3] F. Arnold,et al. Directed evolution of cytochrome c for carbon–silicon bond formation: Bringing silicon to life , 2016, Science.
[4] Cheoljae Kim,et al. Entry to β-alkoxyacrylates via gold-catalyzed intermolecular coupling of alkynoates and allylic ethers. , 2013, Organic letters.
[5] J. Hartwig,et al. Undirected, Homogeneous C–H Bond Functionalization: Challenges and Opportunities , 2016, ACS central science.
[6] Martin D. Eastgate,et al. Decarboxylative Alkenylation , 2017, Nature.
[7] J. Zhou,et al. N,N-Dimethylformamide as Hydride Source in Nickel-Catalyzed Asymmetric Hydrogenation of α,β-Unsaturated Esters. , 2016, Organic letters.
[8] Erica L. Schwalm,et al. Mechanistic Diversity of Radical S-Adenosylmethionine (SAM)-dependent Methylation* , 2014, The Journal of Biological Chemistry.
[9] Michael J. Sweredoski,et al. Identification of Mechanism-Based Inactivation in P450-Catalyzed Cyclopropanation Facilitates Engineering of Improved Enzymes. , 2016, Journal of the American Chemical Society.
[10] D. G. Gibson,et al. Enzymatic assembly of DNA molecules up to several hundred kilobases , 2009, Nature Methods.
[11] Jimin Yang,et al. Iron-catalyzed arylation of α-aryl-α-diazoesters. , 2016, Organic & biomolecular chemistry.
[12] L. Huang,et al. Catalytic asymmetric synthesis of trisubstituted aziridines. , 2011, Journal of the American Chemical Society.
[13] D. Solé,et al. Palladium-catalyzed intramolecular nucleophilic substitution at the alkoxycarbonyl group. , 2007, Angewandte Chemie.
[14] L. Woo,et al. Catalytic C−H Insertions Using Iron(III) Porphyrin Complexes , 2008 .
[15] Hao Wei,et al. Enantioselective Rhodium-Catalyzed Dearomative Arylation or Alkenylation of Quinolinium Salts. , 2016, Angewandte Chemie.
[16] M. Alam,et al. Hell's Gate globin I: An acid and thermostable bacterial hemoglobin resembling mammalian neuroglobin , 2011, FEBS letters.
[17] F. Arnold,et al. Stereoselective Enzymatic Synthesis of Heteroatom-Substituted Cyclopropanes , 2018 .
[18] W. A. van der Donk,et al. Stereospecific Radical-Mediated B12-Dependent Methyl Transfer by the Fosfomycin Biosynthesis Enzyme Fom3. , 2018, Biochemistry.
[19] J. Yadav,et al. A new and efficient synthesis of 2,2-disubstituted-3,4-dihydro-2H-1-benzopyrans , 2000 .
[20] F. Arnold,et al. Diverse Engineered Heme Proteins Enable Stereodivergent Cyclopropanation of Unactivated Alkenes , 2018, ACS central science.
[21] B. Trumpower,et al. Simultaneous determination of hemes a, b, and c from pyridine hemochrome spectra. , 1987, Analytical biochemistry.
[22] Louis-Charles Campeau,et al. Nickel-Catalyzed Asymmetric Alkene Hydrogenation of α,β-Unsaturated Esters: High-Throughput Experimentation-Enabled Reaction Discovery, Optimization, and Mechanistic Elucidation. , 2016 .
[23] A. Katritzky,et al. The preparation of functionalized amines and amides using benzotriazole derivatives and organozinc reagents , 1998 .
[24] C. Liao,et al. Intra- and intermolecular hydrogen bonds enhance the fluoride-responsiveness of functionalized glycolipid-based gelators. , 2013, Journal of materials chemistry. B.
[25] Guosheng Liu,et al. Scope and mechanism of allylic C-H amination of terminal alkenes by the palladium/PhI(OPiv)2 catalyst system: insights into the effect of naphthoquinone. , 2010, Journal of the American Chemical Society.
[26] R. Lahti,et al. (S)-(-)-4-[4-[2-(isochroman-1-yl)ethyl]-piperazin-1-yl] benzenesulfonamide, a selective dopamine D4 antagonist. , 1996, Journal of medicinal chemistry.
[27] A. Demonceau,et al. Rhodium(II) carboxylate-catalysed reactions of diazoesters: evidence for an equilibrium between free carbene and a metal-carbene complex , 1990 .
[28] W. P. Boone,et al. Electronic and steric control in carbon-hydrogen insertion reactions of diazoacetoacetates catalyzed by dirhodium(II) carboxylates and carboxamides , 1993 .
[29] Frances H. Arnold,et al. Olefin Cyclopropanation via Carbene Transfer Catalyzed by Engineered Cytochrome P450 Enzymes , 2013, Science.
[30] T. Williams,et al. Intermolecular dienyl Pauson-Khand reaction. , 2004, Angewandte Chemie.
[31] Frances H. Arnold,et al. Enantioselective Enzyme-Catalyzed Aziridination Enabled by Active-Site Evolution of a Cytochrome P450 , 2015, ACS central science.
[32] G. C. Fu,et al. Boronic acids: new coupling partners in room-temperature Suzuki reactions of alkyl bromides. Crystallographic characterization of an oxidative-addition adduct generated under remarkably mild conditions. , 2002, Journal of the American Chemical Society.
[33] Durga Prasad Hari,et al. Enantioselective Copper-Catalyzed Oxy-Alkynylation of Diazo Compounds. , 2017, Journal of the American Chemical Society.
[34] Frances H Arnold,et al. Enantioselective, intermolecular benzylic C-H amination catalysed by an engineered iron-haem enzyme. , 2017, Nature chemistry.
[35] L. Hamann,et al. Late-stage C–H functionalization of complex alkaloids and drug molecules via intermolecular rhodium-carbenoid insertion , 2015, Nature Communications.
[36] jin-quan yu,et al. Enantioselective C(sp3)‒H bond activation by chiral transition metal catalysts , 2018, Science.
[37] J. Menéndez,et al. Advances in the chemistry of tetrahydroquinolines. , 2011, Chemical reviews.
[38] Jennifer R. Griffin,et al. Catalytic C(sp3)-H Alkylation via an Iron Carbene Intermediate. , 2017, Journal of the American Chemical Society.
[39] P. Frey,et al. Enzymatic Reaction Mechanisms , 2007 .
[40] Guoqiang Yang,et al. Palladium-catalyzed allylic alkylation of simple ketones with allylic alcohols and its mechanistic study. , 2014, Angewandte Chemie.
[41] X. Zhang,et al. Enantioselective Radical Cyclization for Construction of 5-Membered Ring Structures by Metalloradical C-H Alkylation. , 2018, Journal of the American Chemical Society.
[42] D. Musaev,et al. Site-selective and stereoselective functionalization of non-activated tertiary C–H bonds , 2017, Nature.
[43] Manfred T Reetz,et al. Reducing codon redundancy and screening effort of combinatorial protein libraries created by saturation mutagenesis. , 2013, ACS synthetic biology.
[44] D. Musaev,et al. Iridium(iii)-bis(imidazolinyl)phenyl catalysts for enantioselective C–H functionalization with ethyl diazoacetate† †Electronic supplementary information (ESI) available: Experimental procedures and computational details are provided. CCDC 1408224. For ESI and crystallographic data in CIF or other el , 2016, Chemical science.
[45] Dominik Koszelewski,et al. Dynamic Kinetic Resolution of 3-Aryl-4-pentenoic Acids , 2016 .
[46] Frances H. Arnold,et al. A Serine-Substituted P450 Catalyzes Highly Efficient Carbene Transfer to Olefins In Vivo , 2013, Nature chemical biology.
[47] P. Knochel,et al. Direct aminoalkylation of arenes, heteroarenes, and alkenes via Ni-catalyzed Negishi cross-coupling reactions. , 2011, The Journal of organic chemistry.
[48] Steven J. Malcolmson,et al. Design and stereoselective preparation of a new class of chiral olefin metathesis catalysts and application to enantioselective synthesis of quebrachamine: catalyst development inspired by natural product synthesis. , 2009, Journal of the American Chemical Society.
[49] Craig M. Williams,et al. Asymmetric [4 + 3] cycloadditions between vinylcarbenoids and dienes: application to the total synthesis of the natural product (-)-5-epi-vibsanin E. , 2009, Journal of the American Chemical Society.
[50] J. Hartwig,et al. Ir-Catalyzed Enantioselective, Intramolecular Silylation of Methyl C-H Bonds. , 2017, Journal of the American Chemical Society.
[51] H. Davies,et al. Catalytic Asymmetric C−H Activation of Alkanes and Tetrahydrofuran , 2000 .
[52] C. Che,et al. Remarkably stable iron porphyrins bearing nonheteroatom-stabilized carbene or (alkoxycarbonyl)carbenes: isolation, X-ray crystal structures, and carbon atom transfer reactions with hydrocarbons. , 2002, Journal of the American Chemical Society.
[53] T. Soós,et al. Auto-Tandem Catalysis with Frustrated Lewis Pairs for Reductive Etherification of Aldehydes and Ketones. , 2017, Angewandte Chemie.
[54] D. Lupton,et al. N-heterocyclic carbene cascade catalysis: Dual Brønsted/Lewis base rearrangement of cyclopropyl enol esters to dihydropyranones , 2012 .
[55] S. You. Asymmetric Functionalization of C-H Bonds , 2015 .
[56] Ignacio Colomer,et al. Orthogonally Protected 1,2-Diols from Electron-Rich Alkenes Using Metal-Free Olefin syn-Dihydroxylation. , 2016, Organic letters.
[57] L. Gentilucci,et al. Endomorphin-1 Analogues Containing β-Proline Are μ-Opioid Receptor Agonists and Display Enhanced Enzymatic Hydrolysis Resistance , 2002 .
[58] T. Poulos,et al. The Domain Architecture of Cytochrome P450BM-3* , 1997, The Journal of Biological Chemistry.
[59] T. Poulos. Heme enzyme structure and function. , 2014, Chemical reviews.
[60] Bin Xu,et al. Catalytic Asymmetric Arylation of α-Aryl-α-diazoacetates with Aniline Derivatives. , 2015, Journal of the American Chemical Society.
[61] J. Broderick,et al. Glycyl radical activating enzymes: structure, mechanism, and substrate interactions. , 2014, Archives of biochemistry and biophysics.
[62] F. Arnold,et al. Highly Stereoselective Biocatalytic Synthesis of Key Cyclopropane Intermediate to Ticagrelor. , 2016, ACS catalysis.
[63] Eric V. Anslyn,et al. Modern Physical Organic Chemistry , 2005 .
[64] Frances H Arnold,et al. Exploiting and engineering hemoproteins for abiological carbene and nitrene transfer reactions. , 2017, Current opinion in biotechnology.
[65] Jie Chen,et al. Total synthesis of malyngamides K, L, and 5''-epi-C and absolute configuration of malyngamide L. , 2011, The Journal of organic chemistry.
[66] Paweł Dydio,et al. Abiological catalysis by artificial haem proteins containing noble metals in place of iron , 2016, Nature.
[67] Wei‐Jing Lu,et al. Highly Enantioselective Iridium-Catalyzed Hydrogenation of Trisubstituted Olefins, α,β-Unsaturated Ketones and Imines with Chiral Benzylic Substituted P,N Ligands , 2010 .
[68] D. Herschlag,et al. Fundamental Challenges in Mechanistic Enzymology: Progress toward Understanding the Rate Enhancements of Enzymes General Historical Overview of Understanding Enzy- Matic Rate Enhancements. Very Early Ideas about How , 2022 .
[69] K. Yokoyama,et al. C-C bond forming radical SAM enzymes involved in the construction of carbon skeletons of cofactors and natural products. , 2018, Natural product reports.
[70] M. Mellon,et al. Silver-Catalyzed C-C Bond Formation Between Methane and Ethyl Diazoacetate in Supercritical CO2 , 2011, Science.
[71] Lili Lin,et al. Direct Synthesis of Chiral Allenoates from the Asymmetric C-H Insertion of α-Diazoesters into Terminal Alkynes. , 2015, Angewandte Chemie.
[72] Shaolin Zhou,et al. Mild and Selective Cobalt-Catalyzed Chemodivergent Transfer Hydrogenation of Nitriles. , 2016, Angewandte Chemie.