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1.
Chem Commun (Camb) ; 59(28): 4221-4224, 2023 Apr 04.
Article in English | MEDLINE | ID: mdl-36939749

ABSTRACT

Inspired by the unique ability of nucleic acids to template chemical transformations that are otherwise impossible in solution, we embarked on the generalisation of our DNA-templated [2+2] photo-induced homo- and heterodimerization of aplysinopsins. Our process ensures a straightforward access to cyclobutane containing natural products and analogues thereof. Most importantly, this conceptual biomimetic achievement presents interesting arguments to build a biosynthetic scenario.


Subject(s)
DNA , Nucleic Acids , DNA Replication
2.
J Comput Chem ; 43(10): 692-703, 2022 04 15.
Article in English | MEDLINE | ID: mdl-35218219

ABSTRACT

Multi-parameter optimization (MPO) is a major challenge in new chemical entity (NCE) drug discovery. Recently, promising results were reported for deep learning generative models applied to de novo molecular design, but, to our knowledge, until now no report was made of the value of this new technology for addressing MPO in an actual drug discovery project. In this study, we demonstrate the benefit of applying AI technology in a real drug discovery project. We evaluate the potential of a ligand-based de novo design technology using deep learning generative models to accelerate the obtention of lead compounds meeting 11 different biological activity objectives simultaneously. Using the initial dataset of the project, we built QSAR models for all the 11 objectives, with moderate to high performance (precision between 0.67 and 1.0 on an independent test set). Our DL-based AI de novo design algorithm, combined with the QSAR models, generated 150 virtual compounds predicted as active on all objectives. Eleven were synthetized and tested. The AI-designed compounds met 9.5 objectives on average (i.e., 86% success rate) versus 6.4 (i.e., 58% success rate) for the initial molecules measured on all objectives. One of the AI-designed molecules was active on all 11 measured objectives, and two were active on 10 objectives while being in the error margin of the assay for the last one. The AI algorithm designed compounds with functional groups, which, although being rare or absent in the initial dataset, turned out to be highly beneficial for the MPO.


Subject(s)
Drug Design , Drug Discovery , Algorithms , Drug Discovery/methods , Ligands
3.
Chemistry ; 26(57): 12936-12940, 2020 Oct 09.
Article in English | MEDLINE | ID: mdl-32726504

ABSTRACT

Camellimidazoles A-C were recently reported as natural substances in Keemun black tea. Although a "biosynthetic" route to these intriguing imidazole dimers was proposed from caffeine by the authors in this seminal report, we envisioned that a artefactual scenario, consisting of alkaline hydrolysis of caffeine and spontaneous cascade reactions with a methylene donor such as formaldehyde or methylene chloride, could also have led to their formation. To capture the diversity of molecules obtained under these conditions (i.e. alkaline treatment of caffeine/formaldehyde), an in silico MetWork-based pipeline was implemented, highlighting the sought-after camellimidazoles B and C. A wealth of further compounds were also tagged, notably comprising the herein newly described and unnatural camellimidazoles D-F that were subsequently confirmed as anticipated in silico upon extensive spectroscopic analyses. Likewise, camellimidazoles B and C could also be obtained using methylene chloride as an alternative methylene donor which may also have occurred in the initial phytochemical pipeline that implied this solvent. The current investigation emphasizes the fitness of MetWork tagging to extend the logic of in silico anticipation of metabolic pathways to organic chemistry reactions.


Subject(s)
Caffeine/chemistry , Chemistry, Organic , Computer Simulation , Hydrolysis , Imidazoles , Metabolic Networks and Pathways
4.
Angew Chem Int Ed Engl ; 57(36): 11786-11791, 2018 09 03.
Article in English | MEDLINE | ID: mdl-29989287

ABSTRACT

Biosynthetic considerations inspired us to harness the templating properties offered by DNA to promote a [2+2] photoinduced cycloaddition. The method was developed based on the dimerization of (E)-aplysinopsin, which was previously shown to be unproductive in solution. In sharp contrast, exposure of this tryptophan-derived olefin to light in the presence of salmon testes DNA (st-DNA) reproducibly afforded the corresponding homo-dimerized spiro-fused cyclobutane in excellent yields. DNA provides unique templating interactions enabling a singular mimic of the solid-state aggregation necessary for the [2+2] photocycloaddition to occur. This method was ultimately used to promote the prerequisite dimerizations leading to both dictazole B and tubastrindole B, thus constituting the first example of a DNA-mediated transformation to be applied to the total synthesis of a natural product.

5.
Nat Prod Rep ; 33(7): 820-42, 2016 Jul 28.
Article in English | MEDLINE | ID: mdl-27220412

ABSTRACT

Covering: up to 2016Dictazoles and sceptrins are singular metabolites of marine origin. The present dichotomic case study provides a comprehensive perspective on these cyclobutane-centered alkaloids and their respective families. Indeed, their upstream and downstream chemistry are both treated herein. Relevant isolation reports and bio-inspired total syntheses are used to decipher the currently admitted biosynthetic hypotheses as well as the emergence of diversity in the two series. This review proposes a transversal vision of the topic, where most aspects of natural product chemistry have a critical importance.


Subject(s)
Biological Products/chemistry , Cyclobutanes/chemistry , Indole Alkaloids/chemistry , Marine Biology , Pyrroles/chemistry , Biosynthetic Pathways , Molecular Structure
6.
Org Lett ; 16(19): 4980-3, 2014 Oct 03.
Article in English | MEDLINE | ID: mdl-25222547

ABSTRACT

Applying a biomimetic approach, the first total synthesis of (±)-tubastrindole B is reported herein. This work features a ring-expansion cascade of a dictazole-type precursor into cycloaplysinopsin-type congeners. Moreover, the isolation of a transient biogenetic intermediate represents a milestone in the biosynthetic understanding of this family of marine alkaloids.


Subject(s)
Indoles/chemical synthesis , Alkaloids/chemical synthesis , Alkaloids/chemistry , Animals , Indoles/chemistry , Marine Biology , Molecular Structure , Porifera/chemistry , Stereoisomerism , Tryptophan/analogs & derivatives , Tryptophan/chemistry
7.
Angew Chem Int Ed Engl ; 53(25): 6419-24, 2014 Jun 16.
Article in English | MEDLINE | ID: mdl-24817607

ABSTRACT

Guided by biosynthetic considerations, the total synthesis of dictazole B is reported for the first time. Experimental evidence for an easy access to challenging cyclobutane alkaloids of marine origin, which are often postulated to be biosynthetic precursors of more complex structures, is provided.


Subject(s)
Biomimetics , Cyclobutanes/chemical synthesis , Indole Alkaloids/chemical synthesis , Sunlight , Cyclobutanes/chemistry , Dimerization , Indole Alkaloids/chemistry , Molecular Structure
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