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1.
Nature ; 532(7600): 484-8, 2016 Apr 28.
Artigo em Inglês | MEDLINE | ID: mdl-27088605

RESUMO

In the classic Diels-Alder [4 + 2] cycloaddition reaction, the overall degree of unsaturation (or oxidation state) of the 4π (diene) and 2π (dienophile) pairs of reactants dictates the oxidation state of the newly formed six-membered carbocycle. For example, in the classic Diels-Alder reaction, butadiene and ethylene combine to produce cyclohexene. More recent developments include variants in which the number of hydrogen atoms in the reactant pair and in the resulting product is reduced by, for example, four in the tetradehydro-Diels-Alder (TDDA) and by six in the hexadehydro-Diels-Alder (HDDA) reactions. Any oxidation state higher than tetradehydro (that is, lacking more than four hydrogens) leads to the production of a reactive intermediate that is more highly oxidized than benzene. This increases the power of the overall process substantially, because trapping of the reactive intermediate can be used to increase the structural complexity of the final product in a controllable and versatile manner. Here we report an unprecedented overall 4π + 2π cycloaddition reaction that generates a different, highly reactive intermediate known as an α,3-dehydrotoluene. This species is in the same oxidation state as a benzyne. Like benzynes, α,3-dehydrotoluenes can be captured by various trapping agents to produce structurally diverse products that are complementary to those arising from the HDDA process. We call this new cycloisomerization process a pentadehydro-Diels-Alder (PDDA) reaction-a nomenclature chosen for chemical taxonomic reasons rather than mechanistic ones. In addition to alkynes, nitriles (RC≡N), although non-participants in aza-HDDA reactions, readily function as the 2π component in PDDA cyclizations to produce, via trapping of the α,3-(5-aza)dehydrotoluene intermediates, pyridine-containing products.


Assuntos
Reação de Cicloadição , Hidrogênio/química , Tolueno/análogos & derivados , Benzeno/química , Ciclização , Di-Inos/química , Hidrogenação , Isomerismo , Nitrilas/química , Oxirredução , Piridinas/química , Terminologia como Assunto , Tolueno/síntese química , Tolueno/química
2.
J Am Chem Soc ; 141(50): 19575-19580, 2019 12 18.
Artigo em Inglês | MEDLINE | ID: mdl-31789026

RESUMO

The generation of pyridynes from diyne nitriles is reported. These cyano-containing precursors are analogues of the triyne substrates typically used for the hexadehydro-Diels-Alder (HDDA) cycloisomerization reactions that produce ring-fused benzynes. Hence, the new processes described represent aza-HDDA reactions. Depending on the location of the nitrile, either 3,4-pyridynes (from 1,3-diynes containing a tethered cyano group) or 2,3-pyridynes (from 1-cyanoethyne derivatives containing a tethered alkyne) are produced. In situ trapping of these reactive intermediates leads to highly substituted and functionalized pyridine derivatives. In several instances, unprecedented pyridyne trapping reactions are seen. Differences in reaction energetics between the aza-HDDA substrates and that of their analogous HDDA (triyne) substrates are discussed.


Assuntos
Compostos Aza/química , Nitrilas/química , Teoria da Densidade Funcional , Modelos Moleculares , Conformação Molecular
3.
Nature ; 547(7664): 410-411, 2017 07 26.
Artigo em Inglês | MEDLINE | ID: mdl-28748936
4.
Expert Opin Ther Pat ; 31(12): 1189-1204, 2021 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-34253125

RESUMO

Introduction: Up to 30% of all human cancers are driven by the overactivation of RAS signaling. Son of Sevenless 1 (SOS1) is a central node in RAS signaling pathways and modulation of SOS1-mediated RAS activation represents a unique opportunity for treating RAS-addicted cancers. Several recent publications and patent documents have demonstrated the ability of small molecules to affect the activation of RAS by SOS1 and have shown their potential for the treatment of cancers driven by RAS mutants.Areas covered: Documents focusing on both small-molecule inhibitors and activators of the SOS1:RAS interaction and their potential use as cancer therapeutics are covered. A total of 10 documents from 4 applicants are evaluated with discussion focusing on structural modifications of these compounds as well as relevant preclinical data.Expert opinion: The last decade has seen a significant increase in research and disclosures in the development of small-molecule SOS1 inhibitors. Considering the promising data that have been disclosed, interest in this area of research will likely remain strong for the foreseeable future. With the first SOS1 inhibitor currently in phase I clinical trials, the outcome of these trials will likely influence future development of SOS1 inhibitors for treatment of RAS-driven cancers.


Assuntos
Neoplasias/tratamento farmacológico , Proteína SOS1/antagonistas & inibidores , Proteínas ras/genética , Animais , Antineoplásicos/química , Antineoplásicos/farmacologia , Desenvolvimento de Medicamentos , Humanos , Mutação , Neoplasias/genética , Patentes como Assunto , Proteína SOS1/metabolismo , Transdução de Sinais
5.
Org Lett ; 18(11): 2584-7, 2016 06 03.
Artigo em Inglês | MEDLINE | ID: mdl-27214494

RESUMO

Unfavorable thermodynamics often render furans reluctant to engage in high-yielding Diels-Alder (DA) cycloaddition reactions. Here, we report the highly efficient conversion of the biosourced reactants itaconic anhydride (IA) and furfuryl alcohol (FA) to a single DA adduct. The free energy advantages provided by anhydride ring opening and crystal lattice energy of the product overcome the loss of aromaticity of the furanoid diene. Detailed (1)H NMR studies provided valuable insights about relevant kinetic and thermodynamic features.


Assuntos
Furanos/química , Lactonas/síntese química , Succinatos/química , Anidridos/química , Catálise , Reação de Cicloadição , Cinética , Termodinâmica
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