Gordana Atallah
Novartis
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Publication
Featured researches published by Gordana Atallah.
ACS Medicinal Chemistry Letters | 2011
Matthew Burger; Sabina Pecchi; Allan S. Wagman; Zhi-Jie Ni; Mark Knapp; Thomas Hendrickson; Gordana Atallah; Keith B. Pfister; Yanchen Zhang; Sarah Bartulis; Kelly Frazier; Simon Ng; Aaron Smith; Joelle Verhagen; Joshua Haznedar; Kay Huh; Ed Iwanowicz; Xiaohua Xin; Daniel Menezes; Hanne Merritt; Isabelle Lee; Marion Wiesmann; Susan Kaufman; Kenneth Crawford; Michael Chin; Dirksen E. Bussiere; Kevin Shoemaker; Isabel Zaror; Sauveur-Michel Maira; Charles Voliva
Phosphoinositide-3-kinases (PI3Ks) are important oncology targets due to the deregulation of this signaling pathway in a wide variety of human cancers. Herein we describe the structure guided optimization of a series of 2-morpholino, 4-substituted, 6-heterocyclic pyrimidines where the pharmacokinetic properties were improved by modulating the electronics of the 6-position heterocycle, and the overall druglike properties were fine-tuned further by modification of the 4-position substituent. The resulting 2,4-bismorpholino 6-heterocyclic pyrimidines are potent class I PI3K inhibitors showing mechanism modulation in PI3K dependent cell lines and in vivo efficacy in tumor xenograft models with PI3K pathway deregulation (A2780 ovarian and U87MG glioma). These efforts culminated in the discovery of 15 (NVP-BKM120), currently in Phase II clinical trials for the treatment of cancer.
Bioorganic & Medicinal Chemistry Letters | 2011
Gisele Nishiguchi; Gordana Atallah; Cornelia Bellamacina; Matthew Burger; Yu Ding; Paul Feucht; Pablo Garcia; Wooseok Han; Liana M. Klivansky; Mika Lindvall
A series of novel 3,5-disubstituted indole derivatives as potent and selective inhibitors of all three members of the Pim kinase family is described. High throughput screen identified a pan-Pim kinase inhibitor with a promiscuous scaffold. Guided by structure-based drug design, SAR of the series afforded a highly selective indole chemotype that was further developed into a potent set of compounds against Pim-1, 2, and 3 (Pim-1 and Pim-3: IC(50)≤2nM and Pim-2: IC(50)≤100nM).
ACS Medicinal Chemistry Letters | 2013
Matthew Burger; Wooseok Han; Jiong Lan; Gisele Nishiguchi; Cornelia Bellamacina; Mika Lindval; Gordana Atallah; Yu Ding; Michelle Mathur; Christopher Mcbride; Elizabeth L. Beans; Kristine M. Muller; Victoriano Tamez; Yanchen Zhang; Kay Huh; Paul Feucht; Tatiana Zavorotinskaya; Yumin Dai; Jocelyn Holash; Joseph Castillo; John L. Langowski; Yingyun Wang; Min Y. Chen; Pablo Garcia
Proviral insertion of Moloney virus (PIM) 1, 2, and 3 kinases are serine/threonine kinases that normally function in survival and proliferation of hematopoietic cells. As high expression of PIM1, 2, and 3 is frequently observed in many human malignancies, including multiple myeloma, non-Hodgkins lymphoma, and myeloid leukemias, there is interest in determining whether selective PIM inhibition can improve outcomes of these human cancers. Herein, we describe our efforts toward this goal. The structure guided optimization of a singleton high throughput screening hit in which the potency against all three PIM isoforms was increased >10,000-fold to yield compounds with pan PIM K is < 10 pM, nanomolar cellular potency, and in vivo activity in an acute myeloid leukemia Pim-dependent tumor model is described.
ACS Medicinal Chemistry Letters | 2011
Matthew Burger; Mark Knapp; Allan S. Wagman; Zhi-Jie Ni; Thomas Hendrickson; Gordana Atallah; Yanchen Zhang; Kelly Frazier; Joelle Verhagen; Keith B. Pfister; Simon Ng; Aaron Smith; Sarah Bartulis; Hanne Merrit; Marion Weismann; Xiaohua Xin; Joshua Haznedar; Charles Voliva; Ed Iwanowicz; Sabina Pecchi
Phospoinositide-3-kinases (PI3K) are important oncology targets due to the deregulation of this signaling pathway in a wide variety of human cancers. A series of 2-morpholino, 4-substituted, 6-(3-hydroxyphenyl) pyrimidines have been reported as potent inhibitors of PI3Ks. Herein, we describe the structure-guided optimization of these pyrimidines with a focus on replacing the phenol moiety, while maintaining potent target inhibition and improving in vivo properties. A series of 2-morpholino, 4-substituted, 6-heterocyclic pyrimidines, which potently inhibit PI3K, were discovered. Within this series a compound, 17, was identified with suitable pharmacokinetic (PK) properties, which allowed for the establishment of a PI3K PK/pharmacodynamic-efficacy relationship as determined by in vivo inhibition of AKT(Ser473) phosphorylation and tumor growth inhibition in a mouse A2780 tumor xenograft model.
Journal of Medicinal Chemistry | 2015
Matthew Burger; Gisele Nishiguchi; Wooseok Han; Jiong Lan; R Simmons; Gordana Atallah; Yu Ding; Tamez; Y Zhang; Michelle Mathur; K Muller; Cornelia Bellamacina; M.K Lindvall; R Zang; Kay Huh; Paul Feucht; T Zavorotinskaya; Y Dai; S Basham; J Chan; E Ginn; A Aycinena; J Holash; J Castillo; J.L Langowski; Y Wang; M.Y Chen; A Lambert; C Fritsch; A Kauffmann
Pan proviral insertion site of Moloney murine leukemia (PIM) 1, 2, and 3 kinase inhibitors have recently begun to be tested in humans to assess whether pan PIM kinase inhibition may provide benefit to cancer patients. Herein, the synthesis, in vitro activity, in vivo activity in an acute myeloid leukemia xenograft model, and preclinical profile of the potent and selective pan PIM kinase inhibitor compound 8 (PIM447) are described. Starting from the reported aminopiperidyl pan PIM kinase inhibitor compound 3, a strategy to improve the microsomal stability was pursued resulting in the identification of potent aminocyclohexyl pan PIM inhibitors with high metabolic stability. From this aminocyclohexyl series, compound 8 entered the clinic in 2012 in multiple myeloma patients and is currently in several phase 1 trials of cancer patients with hematological malignancies.
Journal of Medicinal Chemistry | 2015
Rama Jain; Michelle Mathur; Jiong Lan; Abran Costales; Gordana Atallah; Savithri Ramurthy; Sharadha Subramanian; Lina Setti; Paul Feucht; Bob Warne; Laura Doyle; Stephen E. Basham; Anne B. Jefferson; Mika Lindvall; Brent A. Appleton; Cynthia Shafer
While the p90 ribosomal S6 kinase (RSK) family has been implicated in multiple tumor cell functions, the full understanding of this kinase family has been restricted by the lack of highly selective inhibitors. A bis-phenol pyrazole was identified from high-throughput screening as an inhibitor of the N-terminal kinase of RSK2. Structure-based drug design using crystallography, conformational analysis, and scaffold morphing resulted in highly optimized difluorophenol pyridine inhibitors of the RSK kinase family as demonstrated cellularly by the inhibition of YB1 phosphorylation. These compounds provide for the first time in vitro tools with an improved selectivity and potency profile to examine the importance of RSK signaling in cancer cells and to fully evaluate RSK as a therapeutic target.
Bioorganic & Medicinal Chemistry Letters | 2014
Abran Costales; Michelle Mathur; Savithri Ramurthy; Jiong Lan; Sharadha Subramanian; Rama Jain; Gordana Atallah; Lina Setti; Mika Lindvall; Brent A. Appleton; Elizabeth Ornelas; Paul Feucht; Bob Warne; Laura Doyle; Stephen E. Basham; Ida Aronchik; Anne B. Jefferson; Cynthia Shafer
2-Amino-7-substituted benzoxazole analogs were identified by HTS as inhibitors of RSK2. Molecular modeling and medicinal chemistry techniques were employed to explore the SAR for this series with a focus of improving in vitro and target modulation potency and physicochemical properties.
Bioorganic & Medicinal Chemistry Letters | 2016
Gisele Nishiguchi; Matthew Burger; Wooseok Han; Jiong Lan; Gordana Atallah; Victoriano Tamez; Mika Lindvall; Cornelia Bellamacina; Pablo Garcia; Paul Feucht; Tatiana Zavorotinskaya; Yumin Dai; Kent Wong
The Pim proteins (1, 2 and 3) are serine/threonine kinases that have been found to be upregulated in many hematological malignancies and solid tumors. As a result of overlapping functions among the three isoforms, inhibition of all three Pim kinases has become an attractive strategy for cancer therapy. Herein we describe our efforts in identifying potent pan-PIM inhibitors that are derived from our previously reported pyridyl carboxamide scaffold as part of a medicinal chemistry strategy to address metabolic stability.
Bioorganic & Medicinal Chemistry Letters | 2018
Rama Jain; Michelle Mathur; Jiong Lan; Abran Costales; Gordana Atallah; Savithri Ramurthy; Sharadha Subramanian; Lina Setti; Paul Feucht; Bob Warne; Laura Doyle; Stephen E. Basham; Anne B. Jefferson; Brent A. Appleton; Mika Lindvall; Cynthia Shafer
Utilizing the already described 3,4-bi-aryl pyridine series as a starting point, incorporation of a second ring system with a hydrogen bond donor and additional hydrophobic contacts yielded the azaindole series which exhibited potent, picomolar RSK2 inhibition and the most potent in vitro target modulation seen thus far for a RSK inhibitor. In the context of the more potent core, several changes at the phenol moiety were assessed to potentially find a tool molecule appropriate for in vivo evaluation.
Archive | 2007
Matthew Burger; Zhi-Jie Ni; Sabina Pecchi; Gordana Atallah; Sarah Bartulis; Kelly Frazier; Aaron Smith; Joelle Verhagen; Yanchen Zhang; Allan S. Wagman; Simon Ng; Keith B. Pfister; Daniel J. Poon; Alicia Louie; Teresa E. Pick; Paul A. Barsanti; Edwin Iwanowicz; Wendy J. Fantl; Thomas Hendrickson; Mark Knapp; Hanne Meritt; Charles Voliva; Marion Wiesmann; Xiahua Xin