, Density Functional Characterization of Methane Metathesis in ansa-[Bis(h5-2-indenyl)methane]ML Complexes [M = Sc, Y, Lu; L = CH3, CH2C(CH3)3], Cméta Ts), vol.129, issue.8

E. E. Astrup, ChemInform Abstract: AN INVESTIGATION OF THE MOLECULAR STRUCTURE AND CONFORMATION OF DIPROPYL ETHER, CH3-CH2-CH2-O-CH2-CH2-CH3, IN THE GAS PHASE, Chemischer Informationsdienst, vol.8, issue.25, pp.no-no, 1977.

M. Nagtegaal, R. Van-der-horst, J. Buisman, and M. Spaans, De Externe Monitor Tbs en de behandelduur van tbs-gestelden: waardevolle kennis vanuit het tbs-traject, Tijdschrift voor Criminologie, vol.58, issue.3, pp.20-41, 2016.

, Figure 4?figure supplement 1. NMR spectrometry of synthesized G-1., MeOH (4 mL) was added a solution of KOH (47 mg, 0.83 mmol, 2.00 eq) in MeOH (2 mL), vol.7

, INHALT: LIEFERUNG 69, tm - Technisches Messen, vol.61-72, issue.JG, 1936.

M. Nagtegaal, R. Van-der-horst, J. Buisman, and M. Spaans, De Externe Monitor Tbs en de behandelduur van tbs-gestelden: waardevolle kennis vanuit het tbs-traject, Tijdschrift voor Criminologie, vol.58, issue.3, pp.20-41, 2016.

, Conversion table for cholesterol concentration (mg/100 ml ? mmol/l), The Biology of Cholesterol and Related Steroids, p.xiv, 1981.

L. Chen, T. Uchimaru, S. Kutsuna, K. Tokuhashi, A. Sekiya et al., Kinetics of gas-phase reactions of CH3 OCH2 CF3 , CH3 OCH3 , CH3 OCH2 CH3 , CH3 CH2 OCH2 CH3 , and CHF2 CF2 OCH2 CF3 with NO3 radicals at 298 K, International Journal of Chemical Kinetics, vol.41, issue.7, pp.490-497, 2009.

, Coloration Problems in Animals, Nature, vol.131, issue.3312, pp.577-577, 1933.

, S-Methyl-5'-Thioadenosine Phosphorylase, 2020.

, Figure 7?figure supplement 2. Arrested brassicaceae seeds germinate after transfert to MS., MeOH (3.5 mL) was added 18 [22a] (200 mg, 0.46 mmol, 1.80 eq) and an ammonia solution (7 M in MeOH) (7.5 mL)

C. ,

, Bibliographie des travaux cités et consultés, Notion de personne et personnalisme chrétien, vol.150, pp.140-153, 1971.

Z. Dogson, Canary: c84fd7ba-4ceb-4176-a1c2-bfe03a1ce216, Journal of Test Deposits, vol.2020, issue.19, pp.1-3, 2020.

, Erratum, Radiology, vol.55, issue.6, pp.895-895, 1950.

, S-Methyl-5'-Thioadenosine Phosphorylase, 2020.

, Figure 1?figure supplement 2. Characterization of HPLC purified peptide F by LC-MS., The mixture of 19 and the by-product 5'-O-DMTr adenosine was treated with a solution of 80% acetic acid in water

. Hz, Figure 4?figure supplement 1. NMR spectrometry of synthesized G-1., vol.157

W. Ryu, New Emerging Viruses, Molecular Virology of Human Pathogenic Viruses, pp.289-302, 2017.

D. W. Leung, G. K. Amarasinghe, ;. E. Decroly, B. Canard, ;. Ringeard et al., Curr. Opin. Struct. Biol, vol.36, pp.500-504, 2016.

E. Decroly, F. Ferron, J. Lescar, and B. Canard, Conventional and unconventional mechanisms for capping viral mRNA, Nature Reviews Microbiology, vol.10, issue.1, pp.51-65, 2011.

B. Martin, B. Coutard, T. Guez, G. C. Paesen, B. Canard et al., The methyltransferase domain of the Sudan ebolavirus L protein specifically targets internal adenosines of RNA substrates, in addition to the cap structure, Nucleic Acids Research, vol.46, issue.15, pp.7902-7912, 2018.
URL : https://hal.archives-ouvertes.fr/inserm-02416986

E. Grimes, K. Decroly-;-b)-b.-coutard, J. Barral, B. Lichiere, B. Selisko et al., Nucleic Acids Res, vol.46, p.1002642, 2012.

). R. Zust, L. Cervantes-barragan, M. Habjan, R. Maier, B. W. Neuman et al., Proc. Natl. Acad. Sci. U S A, vol.12, pp.596-601, 2011.

S. Daffis, K. J. Szretter, J. Schriewer, J. Li, S. Youn et al., 2?-O methylation of the viral mRNA cap evades host restriction by IFIT family members, Nature, vol.468, issue.7322, pp.452-456, 2010.

J. Zhang and Y. G. Zheng, SAM/SAH Analogs as Versatile Tools for SAM-Dependent Methyltransferases, ACS Chemical Biology, vol.11, issue.3, pp.583-597, 2015.

L. Halby, Y. Menon, E. Rilova, D. Pechalrieu, V. Masson et al., Rational Design of Bisubstrate-Type Analogues as Inhibitors of DNA Methyltransferases in Cancer Cells, Journal of Medicinal Chemistry, vol.60, issue.11, pp.4665-4679, 2017.

N. David-cordonnier, Y. Novosad, A. Aussagues, L. Samson, F. Lacroix et al., J. Med. Chem, vol.60, pp.4665-4679, 2017.

B. Masjost, P. Ballmer, E. Borroni, G. Zürcher, F. K. Winkler et al., Org. Biomol. Chem, vol.6, pp.42-49, 2000.

J. Dowden, W. Hong, R. V. Parry, R. A. Pike, and S. G. Ward, Bioorg. Med. Chem. Lett, vol.20, pp.549-560, 2010.

N. Babault, A. Allali-hassani, F. Li, J. Fan, A. Yue et al., Discovery of Bisubstrate Inhibitors of Nicotinamide N-Methyltransferase (NNMT), Journal of Medicinal Chemistry, vol.61, issue.4, pp.1541-1551, 2018.

L. Halby, N. Marechal, D. Pechalrieu, V. Cura, D. Franchini et al., Hijacking DNA methyltransferase transition state analogues to produce chemical scaffolds for PRMT inhibitors, Philosophical Transactions of the Royal Society B: Biological Sciences, vol.373, issue.1748, p.20170072, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02094589

E. Benghiat, P. A. Crooks, R. Goodwin, and F. Rottman, Inhibition of Vaccinia RNA Guanine 7?Methyltransferase by Compounds Designed as Multisubstrate Adducts, Journal of Pharmaceutical Sciences, vol.75, issue.2, pp.142-145, 1986.

C. Atdjian, L. Iannazzo, E. Braud, and M. Ethève-quelquejeu, Synthesis of SAM-Adenosine Conjugates for the Study of m6 A-RNA Methyltransferases, European Journal of Organic Chemistry, vol.2018, issue.32, pp.4411-4425, 2018.

S. Oerum, M. Catala, C. Atdjian, F. Brachet, L. Ponchon et al., Structure of E.coli RlmJ in complex with a bisubstrate analogue (BA2), RNA Biology, vol.2019, pp.1-11, 2019.

S. H. Kawai, D. Wang, P. A. Giannaris, M. J. Damha, G. Just-;-b et al., Angew. Chem. Int. Ed, vol.21, pp.3967-3973, 1993.

F. Gao, X. Yan, O. Zahr, A. Larsen, K. Vong et al., Synthesis and use of sulfonamide-, sulfoxide-, or sulfone-containing aminoglycoside?CoA bisubstrates as mechanistic probes for aminoglycoside N-6?-acetyltransferase, Bioorganic & Medicinal Chemistry Letters, vol.18, issue.20, pp.5518-5522, 2008.

D. Mandalapu, X. Ji, and Q. Zhang, Reductive Cleavage of Sulfoxide and Sulfone by Two Radical S-Adenosyl-l-methionine Enzymes, Biochemistry, vol.58, issue.1, pp.36-39, 2018.

B. Musicki, T. S. Widlanski-;-b)-d, B. Wang, M. J. Meng, G. Damha et al., Nucleosides & Nucleotides, vol.32, pp.1961-1984, 1991.

R. Petrelli, Y. Y. Sham, L. Chen, K. Felczak, E. Bennett et al., Selective inhibition of nicotinamide adenine dinucleotide kinases by dinucleoside disulfide mimics of nicotinamide adenine dinucleotide analogues, Bioorganic & Medicinal Chemistry, vol.17, issue.15, pp.5656-5664, 2009.

F. Gauthier, F. Beltran, A. Biscans, F. Debart, C. Dupouy et al., A 2?,2?-disulfide-bridged dinucleotide conformationally locks RNA hairpins, Organic & Biomolecular Chemistry, vol.16, issue.17, pp.3181-3188, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02197157

M. Pignot, G. Pljevaljcic, E. Weinhold, ;. Guillerm, D. Guillerm et al., Bioorg. Med. Chem. Lett, vol.13, pp.1649-1652, 2000.

S. Jin, C. V. Miduturu, D. C. Mckinney, and S. K. Silverman, Synthesis of Amine- and Thiol-Modified Nucleoside Phosphoramidites for Site-Specific Introduction of Biophysical Probes into RNA, The Journal of Organic Chemistry, vol.70, issue.11, pp.4284-4299, 2005.

C. Dalhoff, M. Hüben, T. Lenz, P. Poot, E. Nordhoff et al., Synthesis of S-Adenosyl-L-homocysteine Capture Compounds for Selective Photoinduced Isolation of Methyltransferases, ChemBioChem, vol.11, issue.2, pp.256-265, 2010.