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Featured researches published by Stephane L. Bogen.


Antiviral Research | 2008

Characterization of resistance mutations against HCV ketoamide protease inhibitors

Xiao Tong; Stephane L. Bogen; Robert Chase; Viyyoor M. Girijavallabhan; Zhuyan Guo; F. George Njoroge; Andrew Prongay; Anil K. Saksena; Angela Skelton; Ellen Xia; Robert Ralston

An issue of clinical importance in the development of new antivirals for HCV is emergence of resistance. Several resistance loci to ketoamide inhibitors of the NS3/4A protease have been identified (residues V36, T54, R155, A156, and V170) by replicon and clinical studies. Using SCH 567312, a more potent protease inhibitor derived from SCH 503034 (boceprevir) series, we identified two new positions (Q41 and F43) that confer resistance to the ketoamide class. The catalytic efficiency of protease enzymes was not affected by most resistance mutations, whereas replicon fitness varied with specific mutations. SCH 503034 and another ketoamide inhibitor, VX-950 (telaprevir), showed moderate losses of activity against most resistance mutations (< or =10-fold); the highest resistance level was conferred by mutations at A156 locus. Although SCH 503034 and VX-950 bind similarly to the active site, differences in resistance level were observed with specific mutations. Changes at V36 and R155 had more severe impact on VX-950, whereas mutations at Q41, F43 and V170 conferred higher resistance to SCH 503034. Structural analysis of resistance mutations on inhibitor binding is discussed.


Journal of Biological Chemistry | 2006

Mutations conferring resistance to SCH6, a novel hepatitis C virus NS3/4A protease inhibitor: Reduced RNA replication fitness and partial rescue by second-site mutations

MinKyung Yi; Xiao Tong; Angela Skelton; Robert Chase; Tong Chen; Andrew Prongay; Stephane L. Bogen; Anil K. Saksena; F. George Njoroge; Ronald L. Veselenak; Richard B. Pyles; Nigel Bourne; Bruce A. Malcolm; Stanley M. Lemon

Drug resistance is a major issue in the development and use of specific antiviral therapies. Here we report the isolation and characterization of hepatitis C virus RNA replicons resistant to a novel ketoamide inhibitor of the NS3/4A protease, SCH6 (originally SCH446211). Resistant replicon RNAs were generated by G418 selection in the presence of SCH6 in a dose-dependent fashion, with the emergence of resistance reduced at higher SCH6 concentrations. Sequencing demonstrated remarkable consistency in the mutations conferring SCH6 resistance in genotype 1b replicons derived from two different strains of hepatitis C virus, A156T/A156V and R109K. R109K, a novel mutation not reported previously to cause resistance to NS3/4A inhibitors, conferred moderate resistance only to SCH6. Structural analysis indicated that this reflects unique interactions of SCH6 with P′-side residues in the protease active site. In contrast, A156T conferred high level resistance to SCH6 and a related ketoamide, SCH503034, as well as BILN 2061 and VX-950. Unlike R109K, which had minimal impact on NS3/4A enzymatic function, A156T significantly reduced NS3/4A catalytic efficiency, polyprotein processing, and replicon fitness. However, three separate second-site mutations, P89L, Q86R, and G162R, were capable of partially reversing A156T-associated defects in polyprotein processing and/or replicon fitness, without significantly reducing resistance to the protease inhibitor.


ACS Medicinal Chemistry Letters | 2010

Discovery of Narlaprevir (SCH 900518): A Potent, Second Generation HCV NS3 Serine Protease Inhibitor

Ashok Arasappan; Frank Bennett; Stephane L. Bogen; Srikanth Venkatraman; Melissa Blackman; Kevin X. Chen; Siska Hendrata; Yuhua Huang; Regina Huelgas; Latha G. Nair; Angela I. Padilla; Weidong Pan; Russell E. Pike; Patrick A. Pinto; Sumei Ruan; Mousumi Sannigrahi; Francisco Velazquez; Bancha Vibulbhan; Wanli Wu; Weiying Yang; Anil K. Saksena; Viyyoor M. Girijavallabhan; Neng-Yang Shih; Jianshe Kong; Tao Meng; Yan Jin; Jesse Wong; Paul McNamara; Andrew Prongay; Vincent S. Madison

Boceprevir (SCH 503034), 1, a novel HCV NS3 serine protease inhibitor discovered in our laboratories, is currently undergoing phase III clinical trials. Detailed investigations toward a second generation protease inhibitor culminated in the discovery of narlaprevir (SCH 900518), 37, with improved potency (∼10-fold over 1), pharmacokinetic profile and physicochemical characteristics, currently in phase II human trials. Exploration of synthetic sequence for preparation of 37 resulted in a route that required no silica gel purification for the entire synthesis.


Journal of Medicinal Chemistry | 2009

Discovery and structure-activity relationship of P1-P3 ketoamide derived macrocyclic inhibitors of hepatitis C virus NS3 protease.

Srikanth Venkatraman; Francisco Velazquez; Wu W; Melissa Blackman; Kevin X. Chen; Stephane L. Bogen; Latha G. Nair; Xiao Tong; Robert Chase; Hart A; Sony Agrawal; John Pichardo; Andrew Prongay; Kuo-Chi Cheng; Girijavallabhan; John J. Piwinski; Neng-Yang Shih; Njoroge Fg

Hepatitis C virus (HCV) infection is the major cause of chronic liver disease, leading to cirrhosis and hepatocellular carcinoma, and affects more than 200 million people worldwide. Although combination therapy of interferon-alpha and ribavirin is reasonably successful in treating majority of genotypes, its efficacy against the predominant genotype (genotype 1) is moderate at best, with only about 40% of the patients showing sustained virological response. Herein, the SAR leading to the discovery of a series of ketoamide derived P(1)-P(3) macrocyclic inhibitors that are more potent than the first generation clinical candidate, boceprevir (1, Sch 503034), is discussed. The optimization of these macrocyclic inhibitors identified a P(3) imide capped analogue 52 that was 20 times more potent than 1 and demonstrated good oral pharmacokinetics in rats. X-ray structure of 52 bound to NS3 protease and biological data are also discussed.


Journal of Medicinal Chemistry | 2010

Cyclic Sulfones as Novel P3-Caps for Hepatitis C Virus NS3/4A (HCV NS3/4A) Protease Inhibitors: Synthesis and Evaluation of Inhibitors with Improved Potency and Pharmacokinetic Profiles

Francisco Velazquez; Mousumi Sannigrahi; Frank Bennett; Raymond G. Lovey; Ashok Arasappan; Stephane L. Bogen; Latha G. Nair; Srikanth Venkatraman; Melissa Blackman; Siska Hendrata; Yuhua Huang; Regina Huelgas; Patrick A. Pinto; Kuo-Chi Cheng; Xiao Tong; Andrew T. McPhail; F. George Njoroge

HCV infection affects more than 170 million people worldwide and many of those patients will reach the end stage complications of the disease which include hepatocarcinoma and liver failure. The success rate for treatment of patients infected with genotype-1 is about 40%. Therefore, novel treatments are needed to combat the infection. The HCV NS3 protease inhibitor Boceprevir (1) was reported by our research group and efforts continue for the discovery of more potent compounds with improved pharmacokinetic profiles. A new series of HCV NS3 protease inhibitors having a cyclic sulfone P3-cap have been discovered. Compounds 43 and 44 showed K(i)* values in the single-digit nM range and their cellular potency was improved by 10-fold compared to 1. The pharmacokinetic profiles of 43 and 44 in rats and monkeys were also improved to achieve higher plasma levels after oral administration.


Bioorganic & Medicinal Chemistry Letters | 2010

The introduction of P4 substituted 1-methylcyclohexyl groups into Boceprevir®: A change in direction in the search for a second generation HCV NS3 protease inhibitor

Frank Bennett; Yuhua Huang; Siska Hendrata; Raymond G. Lovey; Stephane L. Bogen; Weidong Pan; Zhuyan Guo; Andrew Prongay; Kevin X. Chen; Ashok Arasappan; Srikanth Venkatraman; Francisco Velazquez; Latha G. Nair; Mousumi Sannigrahi; Xiao Tong; John Pichardo; K.-C. Cheng; Viyyoor M. Girijavallabhan; Anil K. Saksena; F.G. Njoroge

In the search for a second generation HCV protease inhibitor, molecular modeling studies of the X-ray crystal structure of Boceprevir1 bound to the NS3 protein suggest that expansion into the S4 pocket could provide additional hydrophobic Van der Waals interactions. Effective replacement of the P4 tert-butyl with a cyclohexylmethyl ligand led to inhibitor 2 with improved enzyme and replicon activities. Subsequent modeling and SAR studies led to the pyridine 38 and sulfone analogues 52 and 53 with vastly improved PK parameters in monkeys, forming a new foundation for further exploration.


Journal of Medicinal Chemistry | 2009

Design, Synthesis, and Evaluation of Oxygen-Containing Macrocyclic Peptidomimetics as Inhibitors of HCV NS3 Protease

Francisco Velazquez; Srikanth Venkatraman; Melissa Blackman; Patrick A. Pinto; Stephane L. Bogen; Mousumi Sannigrahi; Kevin Chen; John Pichardo; Andrea Hart; Xiao Tong; Viyyoor M. Girijavallabhan; F. George Njoroge

HCV infection is considered a silent epidemic because most people infected do not develop acute symptoms. Instead, the disease progresses to a chronic state leading to cirrhosis and hepatocarcinoma. Novel therapies are needed to combat this major health threat. The HCV NS3 serine protease has been the target of continuous investigation because of its pivotal role in viral replication. Herein, we present the P1-P3 macrocyclization approach followed for identification of HCV NS3 inhibitors as potential backup candidates to our first generation drug candidate, Sch 503034 (1). Different P1-P3 linkers were investigated to identify novel macrocyclic scaffolds. SAR exploration of P3-caps in the macrocyclic cores allowed the identification of l-serine derived macrocycle 32 (Ki* = 3 nM, EC90 = 30 nM) and allo-threonine derived macrocycle 36 (Ki* = 3 nM, EC90 = 30 nM) as potent HCV NS3 protease inhibitors.


Bioorganic & Medicinal Chemistry | 2009

Discovery of novel P3 sulfonamide-capped inhibitors of HCV NS3 protease. Inhibitors with improved cellular potencies

Srikanth Venkatraman; Mellissa Blackman; Wanli Wu; Latha G. Nair; Ashok Arasappan; Angela I. Padilla; Stephane L. Bogen; Frank Bennett; Kevin X. Chen; John Pichardo; Xiao Tong; Andrew Prongay; Kuo-Chi Cheng; Viyyoor M. Girijavallabhan; F. George Njoroge

Hepatitis C Virus (HCV) infection is the major cause of chronic liver disease, leading to cirrhosis and hepatocellular carcinoma, which affects more than 200 million people worldwide. Currently the only therapeutic regimens are subcutaneous interferon-alpha or PEG-interferon alone or in combination with oral ribavirin. Although combination therapy is reasonably successful with the majority of genotypes, its efficacy against the predominant genotype (genotype 1) is moderate at best, with only approximately 50% of the patients showing sustained virological response. We recently disclosed the discovery of Boceprevir, SCH 503034 (1), which is a novel, potent, selective, orally bioavailable NS3 protease inhibitor that has been shown to be efficacious in humans and is currently undergoing clinical trials. As second generation compounds, we have further explored various novel structures with the aim of improving enzyme and cellular binding activities of 1. Herein, we disclose our efforts toward the identification of a novel P(3) sulfonamide-capped inhibitor that demonstrated improved binding and cellular activity compared to 1. X-ray structure of one of these inhibitors bound to the enzyme revealed a hydrogen bond of the P(3) sulfonamide group to Cys-159 which resulted in improved binding and cellular potency.


Bioorganic & Medicinal Chemistry Letters | 2008

Hepatitis C virus NS3-4A serine protease inhibitors: SAR of new P1 derivatives of SCH 503034.

Stephane L. Bogen; Ashok Arasappan; Weidong Pan; Sumei Ruan; Angela I. Padilla; Anil K. Saksena; Viyyoor M. Girijavallabhan; F.G. Njoroge

Substitutions on the P(1) cyclobutyl side chain of SCH 503034 were studied by introduction of hydroxyl and fluoro substituents. Additionally, effects of fluoro substitution on other P1 moieties were evaluated.


Tetrahedron Letters | 2003

[3+2] Cycloaddition of trimethylenemethane (TMM) to α,β-unsaturated γ-lactam. Preparation of 5,5-fused proline surrogates

Edwin Jao; Stephane L. Bogen; Anil K. Saksena; Viyyoor M. Girijavallabhan

Abstract Unsaturated lactam derived from ( S )-pyroglutaminol undergoes a totally stereoselective cycloaddition reaction with (2-(acetoxymethyl)-3-allyl)trimethylsilane in the presence of Pd(P(O i Pr) 3 ) 4 in refluxing toluene. This step was efficiently used to introduced the 5,5-fused framework desired for the preparation of novel proline surrogates.

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