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Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation

BACKGROUND: Acute lung injury (ALI) is a severe life-threatening inflammatory disease. Neutrophil activation is a major pathogenic factor in ALI. Protein kinase B (PKB)/AKT regulates diverse cellular responses, but the significance in neutrophilic inflammation and ALI remains unknown. METHODS: Human...

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Autores principales: Chen, Po-Jen, Ko, I-Ling, Lee, Chia-Lin, Hu, Hao-Chun, Chang, Fang-Rong, Wu, Yang-Chang, Leu, Yann-Lii, Wu, Chih-Ching, Lin, Cheng-Yu, Pan, Chang-Yu, Tsai, Yung-Fong, Hwang, Tsong-Long
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413683/
https://www.ncbi.nlm.nih.gov/pubmed/30709770
http://dx.doi.org/10.1016/j.ebiom.2019.01.043
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author Chen, Po-Jen
Ko, I-Ling
Lee, Chia-Lin
Hu, Hao-Chun
Chang, Fang-Rong
Wu, Yang-Chang
Leu, Yann-Lii
Wu, Chih-Ching
Lin, Cheng-Yu
Pan, Chang-Yu
Tsai, Yung-Fong
Hwang, Tsong-Long
author_facet Chen, Po-Jen
Ko, I-Ling
Lee, Chia-Lin
Hu, Hao-Chun
Chang, Fang-Rong
Wu, Yang-Chang
Leu, Yann-Lii
Wu, Chih-Ching
Lin, Cheng-Yu
Pan, Chang-Yu
Tsai, Yung-Fong
Hwang, Tsong-Long
author_sort Chen, Po-Jen
collection PubMed
description BACKGROUND: Acute lung injury (ALI) is a severe life-threatening inflammatory disease. Neutrophil activation is a major pathogenic factor in ALI. Protein kinase B (PKB)/AKT regulates diverse cellular responses, but the significance in neutrophilic inflammation and ALI remains unknown. METHODS: Human neutrophils and neutrophil-like differentiated HL-60 (dHL-60) cells were used to examine the anti-inflammatory effects of 5,7-dimethoxy-1,4-phenanthrenequinone (CLLV-1). The therapeutic potential of CLLV-1 was determined in a mouse model of lipopolysaccharide (LPS)-induced ALI. FINDINGS: CLLV-1 inhibited respiratory burst, degranulation, adhesion, and chemotaxis in human neutrophils and dHL-60 cells. CLLV-1 inhibited the phosphorylation of AKT (Thr308 and Ser473), but not of ERK, JNK, or p38. Furthermore, CLLV-1 blocked AKT activity and covalently reacted with AKT Cys310 in vitro. The AKT(309–313) peptide-CLLV-1 adducts were determined by NMR or mass spectrometry assay. The alkylation agent-conjugated AKT (reduced form) level was also inhibited by CLLV-1. Significantly, CLLV-1 ameliorated LPS-induced ALI, neutrophil infiltration, and AKT activation in mice. INTERPRETATION: Our results identify CLLV-1 as a covalent allosteric AKT inhibitor by targeting AKT Cys310. CLLV-1 shows potent anti-inflammatory activity in human neutrophils and LPS-induced mouse ALI. Our findings provide a mechanistic framework for redox modification of AKT that may serve as a novel pharmacological target to alleviate neutrophilic inflammation.
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spelling pubmed-64136832019-03-22 Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation Chen, Po-Jen Ko, I-Ling Lee, Chia-Lin Hu, Hao-Chun Chang, Fang-Rong Wu, Yang-Chang Leu, Yann-Lii Wu, Chih-Ching Lin, Cheng-Yu Pan, Chang-Yu Tsai, Yung-Fong Hwang, Tsong-Long EBioMedicine Research paper BACKGROUND: Acute lung injury (ALI) is a severe life-threatening inflammatory disease. Neutrophil activation is a major pathogenic factor in ALI. Protein kinase B (PKB)/AKT regulates diverse cellular responses, but the significance in neutrophilic inflammation and ALI remains unknown. METHODS: Human neutrophils and neutrophil-like differentiated HL-60 (dHL-60) cells were used to examine the anti-inflammatory effects of 5,7-dimethoxy-1,4-phenanthrenequinone (CLLV-1). The therapeutic potential of CLLV-1 was determined in a mouse model of lipopolysaccharide (LPS)-induced ALI. FINDINGS: CLLV-1 inhibited respiratory burst, degranulation, adhesion, and chemotaxis in human neutrophils and dHL-60 cells. CLLV-1 inhibited the phosphorylation of AKT (Thr308 and Ser473), but not of ERK, JNK, or p38. Furthermore, CLLV-1 blocked AKT activity and covalently reacted with AKT Cys310 in vitro. The AKT(309–313) peptide-CLLV-1 adducts were determined by NMR or mass spectrometry assay. The alkylation agent-conjugated AKT (reduced form) level was also inhibited by CLLV-1. Significantly, CLLV-1 ameliorated LPS-induced ALI, neutrophil infiltration, and AKT activation in mice. INTERPRETATION: Our results identify CLLV-1 as a covalent allosteric AKT inhibitor by targeting AKT Cys310. CLLV-1 shows potent anti-inflammatory activity in human neutrophils and LPS-induced mouse ALI. Our findings provide a mechanistic framework for redox modification of AKT that may serve as a novel pharmacological target to alleviate neutrophilic inflammation. Elsevier 2019-01-30 /pmc/articles/PMC6413683/ /pubmed/30709770 http://dx.doi.org/10.1016/j.ebiom.2019.01.043 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Chen, Po-Jen
Ko, I-Ling
Lee, Chia-Lin
Hu, Hao-Chun
Chang, Fang-Rong
Wu, Yang-Chang
Leu, Yann-Lii
Wu, Chih-Ching
Lin, Cheng-Yu
Pan, Chang-Yu
Tsai, Yung-Fong
Hwang, Tsong-Long
Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
title Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
title_full Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
title_fullStr Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
title_full_unstemmed Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
title_short Targeting allosteric site of AKT by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
title_sort targeting allosteric site of akt by 5,7-dimethoxy-1,4-phenanthrenequinone suppresses neutrophilic inflammation
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413683/
https://www.ncbi.nlm.nih.gov/pubmed/30709770
http://dx.doi.org/10.1016/j.ebiom.2019.01.043
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