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Dive into the research topics where Laurent Schio is active.

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Featured researches published by Laurent Schio.


Nature Chemical Biology | 2014

A highly potent and selective Vps34 inhibitor alters vesicle trafficking and autophagy

Baptiste Ronan; Odile Flamand; Lionel Vescovi; Christine Dureuil; Laurence Durand; Florence Fassy; Marie-France Bachelot; Annabelle Lamberton; Magali Mathieu; Thomas Bertrand; Jean-Pierre Marquette; Youssef El-Ahmad; Bruno Filoche-Romme; Laurent Schio; Carlos Garcia-Echeverria; Hélène Goulaouic; Benoit Pasquier

Vps34 is a phosphoinositide 3-kinase (PI3K) class III isoform that has attracted major attention over the recent years because of its role in autophagy. Herein we describe the biological characterization of SAR405, which is a low-molecular-mass kinase inhibitor of Vps34 (KD 1.5 nM). This compound has an exquisite protein and lipid kinase selectivity profile that is explained by its unique binding mode and molecular interactions within the ATP binding cleft of human Vps34. To the best of our knowledge, this is the first potent and specific Vps34 inhibitor described so far. Our results demonstrate that inhibition of Vps34 kinase activity by SAR405 affects both late endosome-lysosome compartments and prevents autophagy. Moreover, we show that the concomitant inhibition of Vps34 and mTOR, with SAR405 and the US Food and Drug Administration-approved mTOR inhibitor everolimus, results in synergistic antiproliferative activity in renal tumor cell lines, indicating a potential clinical application in cancer.


Journal of Medicinal Chemistry | 2010

N-Heterocyclic Carbene-Amine Pt(II) Complexes, a New Chemical Space for the Development of Platinum-Based Anticancer Drugs

Myriem Skander; Pascal Retailleau; Bernard Bourrié; Laurent Schio; Patrick Mailliet; Angela Marinetti

N-Heterocyclic carbene (NHC) platinum complexes have been highlighted as a promising and original platform for building new cytotoxic drugs of the cisplatin series. Mixed NHC-amine Pt(II) complexes have been prepared via a facile and modular two step sequence leading to trans-configured square planar species. They have been characterized by spectroscopic methods and X-ray diffraction studies. Their efficiency against both cisplatin sensitive (CEM and H460) and resistant (A2780/DDP, CH1/DDP, and SK-OV-3) cell lines has been demonstrated by in vitro experiments.


Tetrahedron Letters | 2000

Tosylates in palladium-catalysed coupling reactions. Application to the synthesis of arylcoumarin inhibitors of gyrase B

Laurent Schio; Fabienne Chatreaux; Michel Klich

Abstract The palladium-catalysed coupling reaction between tosylate derivatives and organostannanes has been investigated as a methodology for carbon–carbon bond formation. Aryl substituents have been successfully incorporated even in highly functionalised coumarin structures to afford new analogues of the antibiotic novobiocin.


Journal of Organic Chemistry | 2013

Phosphine-Catalyzed Synthesis of 3,3-Spirocyclopenteneoxindoles from γ-Substituted Allenoates: Systematic Studies and Targeted Applications

Catherine Gomez; Maxime Gicquel; Jean-Christophe Carry; Laurent Schio; Pascal Retailleau; Arnaud Voituriez; Angela Marinetti

The phosphine-promoted [3 + 2] cyclizations between γ-substituted allenoates and arylideneoxindoles have been applied to the stereoselective synthesis of spiro(cyclopentene)oxindoles with trisubstituted cyclopentene units. It has been demonstrated that PPh(3) operates a very efficient control of the relative stereochemistry of the three stereogenic centers of the final spiranic products. Focused experiments have been carried out then so as to access carbocyclic analogues of an important series of anticancer agents inhibiting MDM2-p53 interactions.


Journal of Medicinal Chemistry | 2012

Discovery and optimization of new benzimidazole- and benzoxazole-pyrimidone selective PI3Kβ inhibitors for the treatment of phosphatase and TENsin homologue (PTEN)-deficient cancers.

Victor Certal; Frank Halley; Angela Virone-Oddos; Cécile Delorme; Andreas Karlsson; Alexey Rak; Fabienne Thompson; Bruno Filoche-Romme; Youssef El-Ahmad; Jean Christophe Carry; Pierre Yves Abecassis; Pascale Lejeune; Loic Vincent; Hélène Bonnevaux; Jean Paul Nicolas; Thomas Bertrand; Jean Pierre Marquette; Nadine Michot; Tsiala Benard; Peter Below; Isabelle Vade; Fabienne Chatreaux; Gilles Lebourg; Fabienne Pilorge; Odile Angouillant-Boniface; Audrey Louboutin; Christoph Lengauer; Laurent Schio

Most of the phosphoinositide-3 kinase (PI3K) kinase inhibitors currently in clinical trials for cancer treatment exhibit pan PI3K isoform profiles. Single PI3K isoforms differentially control tumorigenesis, and PI3Kβ has emerged as the isoform involved in the tumorigenicity of PTEN-deficient tumors. Herein we describe the discovery and optimization of a new series of benzimidazole- and benzoxazole-pyrimidones as small molecular mass PI3Kβ-selective inhibitors. Starting with compound 5 obtained from a one-pot reaction via a novel intermediate 1, medicinal chemistry optimization led to the discovery of compound 8, which showed a significant activity and selectivity for PI3Kβ and adequate in vitro pharmacokinetic properties. The X-ray costructure of compound 8 in PI3Kδ showed key interactions and structural features supporting the observed PI3Kβ isoform selectivity. Compound 8 achieved sustained target modulation and tumor growth delay at well tolerated doses when administered orally to SCID mice implanted with PTEN-deficient human tumor xenografts.


Journal of Medicinal Chemistry | 2014

Discovery and optimization of pyrimidone indoline amide PI3Kβ inhibitors for the treatment of phosphatase and tensin homologue (PTEN)-deficient cancers.

Victor Certal; Jean Christophe Carry; Frank Halley; Angela Virone-Oddos; Fabienne Thompson; Bruno Filoche-Romme; Youssef El-Ahmad; Andreas Karlsson; Véronique Charrier; Cécile Delorme; Alexey Rak; Pierre Yves Abecassis; Céline Amara; Loic Vincent; Hélène Bonnevaux; Jean Paul Nicolas; Magali Mathieu; Thomas Bertrand; Jean Pierre Marquette; Nadine Michot; Tsiala Benard; Marc Antoine Perrin; Olivier Lemaitre; Stéphane Guerif; Sébastien Perron; Sylvie Monget; Florence Gruss-Leleu; Gilles Doerflinger; Houlfa Guizani; Maurice Brollo

Compelling molecular biology publications have reported the implication of phosphoinositide kinase PI3Kβ in PTEN-deficient cell line growth and proliferation. These findings supported a scientific rationale for the development of PI3Kβ-specific inhibitors for the treatment of PTEN-deficient cancers. This paper describes the discovery of 2-[2-(2,3-dihydro-indol-1-yl)-2-oxo-ethyl]-6-morpholin-4-yl-3H-pyrimidin-4-one (7) and the optimization of this new series of active and selective pyrimidone indoline amide PI3Kβ inhibitors. 2-[2-(2-Methyl-2,3-dihydro-indol-1-yl)-2-oxo-ethyl]-6-morpholin-4-yl-3H-pyrimidin-4-one (28), identified following a carefully designed methyl scan, displayed improved physicochemical and in vitro pharmacokinetic properties. Structural biology efforts enabled the acquisition of the first X-ray cocrystal structure of p110β with the selective inhibitor compound 28 bound to the ATP site. The nonplanar binding mode described herein is consistent with observed structure-activity relationship for the series. Compound 28 demonstrated significant in vivo activity in a UACC-62 xenograft model in mice, warranting further preclinical investigation. Following successful development, compound 28 entered phase I/Ib clinical trial in patients with advanced cancer.


Blood | 2014

PIM inhibitors target CD25-positive AML cells through concomitant suppression of STAT5 activation and degradation of MYC oncogene

Zhuyan Guo; Anlai Wang; Weidong Zhang; Mikhail Levit; Qiang Gao; Claude Barberis; Michel Tabart; Jingxin Zhang; Dietmar Hoffmann; Dmitri Wiederschain; Jennifer Rocnik; Fangxian Sun; Josh Murtie; Christoph Lengauer; Stefan Gross; Bailin Zhang; Hong Cheng; Vinod F. Patel; Laurent Schio; Francisco Adrian; Marion Dorsch; Carlos Garcia-Echeverria; Shih Min A Huang

Postchemotherapy relapse presents a major unmet medical need in acute myeloid leukemia (AML), where treatment options are limited. CD25 is a leukemic stem cell marker and a conspicuous prognostic marker for overall/relapse-free survival in AML. Rare occurrence of genetic alterations among PIM family members imposes a substantial hurdle in formulating a compelling patient stratification strategy for the clinical development of selective PIM inhibitors in cancer. Here we show that CD25, a bona fide STAT5 regulated gene, is a mechanistically relevant predictive biomarker for sensitivity to PIM kinase inhibitors. Alone or in combination with tyrosine kinase inhibitors, PIM inhibitors can suppress STAT5 activation and significantly shorten the half-life of MYC to achieve substantial growth inhibition of high CD25-expressing AML cells. Our results highlight the importance of STAT5 and MYC in rendering cancer cells sensitive to PIM inhibitors. Because the presence of a CD25-positive subpopulation in leukemic blasts correlates with poor overall or relapse-free survival, our data suggest that a combination of PIM inhibitors with chemotherapy and tyrosine kinase inhibitors could improve long-term therapeutic outcomes in CD25-positive AML.


Bioorganic & Medicinal Chemistry Letters | 2012

Preparation and optimization of new 4-(morpholin-4-yl)-(6-oxo-1,6-dihydropyrimidin-2-yl)amide derivatives as PI3Kβ inhibitors.

Victor Certal; Frank Halley; Angela Virone-Oddos; Fabienne Thompson; Bruno Filoche-Romme; Youssef El-Ahmad; Jean Christophe Carry; Cécile Delorme; Andreas Karlsson; Pierre Yves Abecassis; Loic Vincent; Hélène Bonnevaux; Jean Paul Nicolas; Renaud Morales; Nadine Michot; Isabelle Vade; Audrey Louboutin; Sébastien Perron; Gilles Doerflinger; Bernadette Tric; Sylvie Monget; Christoph Lengauer; Laurent Schio

From a HTS campaign, a new series of pyrimidone anilides exemplified by compound 1 has been identified with good inhibitory activity for the PI3Kβ isoform. The structure of compound 1 in PI3Kγ was solved revealing a binding mode in agreement with the SAR observed on PI3Kβ. These compounds displayed inhibition in the nanomolar range in the biochemical assay and were also potent p-Akt inhibitors in a PTEN-deficient PC3 prostate cancer cell line. Optimization of in vitro pharmocokinetic properties led to compound 25 exhibiting 52% bioavailability in mice and target engagement in an acute PK/PD study.


Journal of Organometallic Chemistry | 1989

New synthesis and reactions of a functionalized (η4-butadienyl)tricarbonyliron complexed phosphonate

Patrice Pinsard; Jean-Paul Lellouche; Jean-Pierre Beaucour; Loïc Toupet; Laurent Schio; René Grée

Abstract The reaction of the isolated (η5-pentadienyl)tricarbonyliron cation 2 with trimethylphosphite gives not only the (η4-butadienyl)tricarbonyliron phosphates 1 and 6 but also the σ-π allyl derivative 7; the unusual regioselectivity of this nucleophilic addition is attributed to the presence of the ester group in 2. A new and efficient synthesis of 1 has been devised based upon the in situ trapping of a transient (η5-pentadienyl) complexed cation by P(OMe)3. The reactions of 1 with two aldehydes have been studied. Low temperature bond-shift isomerizations of the initially-produced trienes complexed by Fe(CO)3 are observed in several cases.


Journal of Chemical Information and Modeling | 2016

Differential Water Thermodynamics Determine PI3K-Beta/Delta Selectivity for Solvent-Exposed Ligand Modifications

Daniel D. Robinson; Thomas Bertrand; Jean-Christophe Carry; Frank Halley; Andreas Karlsson; Magali Mathieu; Hervé Minoux; Marc-Antoine Perrin; B. Robert; Laurent Schio; Woody Sherman

Phosphoinositide 3-kinases (PI3Ks) are involved in important cellular functions and represent desirable targets for drug discovery efforts, especially related to oncology; however, the four PI3K subtypes (α, β, γ, and δ) have highly similar binding sites, making the design of selective inhibitors challenging. A series of inhibitors with selectivity toward the β subtype over δ resulted in compound 3(S), which has entered a phase I/Ib clinical trial for patients with advanced PTEN-deficient cancer. Interestingly, X-ray crystallography revealed that the modifications making inhibitor 3(S) and related compounds selective toward the β-isoform do not interact directly with either PI3Kβ or PI3Kδ, thereby confounding rationalization of the SAR. Here, we apply explicit solvent molecular dynamics and solvent thermodynamic analysis using WaterMap in an effort to understand the unusual affinity and selectivity trends. We find that differences in solvent energetics and water networks, which are modulated upon binding of different ligands, explain the experimental affinity and selectivity trends. This study highlights the critical role of water molecules in molecular recognition and the importance of considering water networks in drug discovery efforts to rationalize and improve selectivity.

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