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Enzyme kinetics and distinct modulation of the protein kinase N family of kinases by lipid activators and small molecule inhibitors.
Falk, Matthew D; Liu, Wei; Bolaños, Ben; Unsal-Kacmaz, Keziban; Klippel, Anke; Grant, Stephan; Brooun, Alexei; Timofeevski, Sergei.
Afiliación
  • Falk MD; Pfizer Oncology Research Unit, Pfizer Inc., San Diego, CA 92121, U.S.A.
  • Liu W; Pfizer Worldwide Medicinal Chemistry, Pfizer Inc., San Diego, CA 92121, U.S.A.
  • Bolaños B; Pfizer Worldwide Medicinal Chemistry, Pfizer Inc., San Diego, CA 92121, U.S.A.
  • Unsal-Kacmaz K; Pfizer Oncology Research Unit, Pfizer Inc., Pearl River, NY 10965, U.S.A.
  • Klippel A; Pfizer Oncology Research Unit, Pfizer Inc., Pearl River, NY 10965, U.S.A.
  • Grant S; Pfizer Oncology Research Unit, Pfizer Inc., San Diego, CA 92121, U.S.A.
  • Brooun A; Pfizer Worldwide Medicinal Chemistry, Pfizer Inc., San Diego, CA 92121, U.S.A.
  • Timofeevski S; Pfizer Oncology Research Unit, Pfizer Inc., San Diego, CA 92121, U.S.A. sergei.timofeevski@pfizer.com.
Biosci Rep ; 34(2)2014 04 01.
Article en En | MEDLINE | ID: mdl-27919031
ABSTRACT
The PKN (protein kinase N) family of Ser/Thr protein kinases regulates a diverse set of cellular functions, such as cell migration and cytoskeletal organization. Inhibition of tumour PKN activity has been explored as an oncology therapeutic approach, with a PKN3-targeted RNAi (RNA interference)-derived therapeutic agent in Phase I clinical trials. To better understand this important family of kinases, we performed detailed enzymatic characterization, determining the kinetic mechanism and lipid sensitivity of each PKN isoform using full-length enzymes and synthetic peptide substrate. Steady-state kinetic analysis revealed that PKN1-3 follows a sequential ordered Bi-Bi kinetic mechanism, where peptide substrate binding is preceded by ATP binding. This kinetic mechanism was confirmed by additional kinetic studies for product inhibition and affinity of small molecule inhibitors. The known lipid effector, arachidonic acid, increased the catalytic efficiency of each isoform, mainly through an increase in kcat for PKN1 and PKN2, and a decrease in peptide KM for PKN3. In addition, a number of PKN inhibitors with various degrees of isoform selectivity, including potent (Ki<10 nM) and selective PKN3 inhibitors, were identified by testing commercial libraries of small molecule kinase inhibitors. This study provides a kinetic framework and useful chemical probes for understanding PKN biology and the discovery of isoform-selective PKN-targeted inhibitors.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Proteína Quinasa C / Adenosina Trifosfato / Ácido Araquidónico / Inhibidores de Proteínas Quinasas Límite: Humans Idioma: En Revista: Biosci Rep Año: 2014 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Proteína Quinasa C / Adenosina Trifosfato / Ácido Araquidónico / Inhibidores de Proteínas Quinasas Límite: Humans Idioma: En Revista: Biosci Rep Año: 2014 Tipo del documento: Article País de afiliación: Estados Unidos