Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin

Stress granules are membraneless organelles composed of numerous components including ribonucleoproteins. The stress granules are characterized by a dynamic complex assembly in response to various environmental stressors, which has been implicated in the coordinated regulation of diverse biological...

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Main Authors: Ye-Jin Park, Dong Wook Choi, Sang Woo Cho, Jaeseok Han, Siyoung Yang, Cheol Yong Choi
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:International Journal of Molecular Sciences
Subjects:
PKR
Online Access:https://www.mdpi.com/1422-0067/21/15/5360
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spelling doaj-20742b156a3c4de095257d9326794a152020-11-25T03:01:46ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672020-07-01215360536010.3390/ijms21155360Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by MorusinYe-Jin Park0Dong Wook Choi1Sang Woo Cho2Jaeseok Han3Siyoung Yang4Cheol Yong Choi5Department of Biological Sciences, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Biological Sciences, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Biological Sciences, Sungkyunkwan University, Suwon 16419, KoreaSoonchunhyang Institute of Medi-bio Science (SIMS), Soonchunhyang University, Cheonan, Chungcheongnam-do 31151, KoreaDepartment of Biomedical Sciences, Ajou University Graduate School of Medicine, Suwon 16499, KoreaDepartment of Biological Sciences, Sungkyunkwan University, Suwon 16419, KoreaStress granules are membraneless organelles composed of numerous components including ribonucleoproteins. The stress granules are characterized by a dynamic complex assembly in response to various environmental stressors, which has been implicated in the coordinated regulation of diverse biological pathways, to exert a protective role against stress-induced cell death. Here, we show that stress granule formation is induced by morusin, a novel phytochemical displaying antitumor capacity through barely known mechanisms. Morusin-mediated induction of stress granules requires activation of protein kinase R (PKR) and subsequent eIF2α phosphorylation. Notably, genetic inactivation of stress granule formation mediated by G3BP1 knockout sensitized cancer cells to morusin treatment. This protective function against morusin-mediated cell death can be attributed at least in part to the sequestration of receptors for activated C kinase-1 (RACK1) within the stress granules, which reduces caspase-3 activation. Collectively, our study provides biochemical evidence for the role of stress granules in suppressing the antitumor capacity of morusin, proposing that morusin treatment, together with pharmacological inhibition of stress granules, could be an efficient strategy for targeting cancer.https://www.mdpi.com/1422-0067/21/15/5360stress granulemorusinPKReIF2αRACK1cell death
collection DOAJ
language English
format Article
sources DOAJ
author Ye-Jin Park
Dong Wook Choi
Sang Woo Cho
Jaeseok Han
Siyoung Yang
Cheol Yong Choi
spellingShingle Ye-Jin Park
Dong Wook Choi
Sang Woo Cho
Jaeseok Han
Siyoung Yang
Cheol Yong Choi
Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
International Journal of Molecular Sciences
stress granule
morusin
PKR
eIF2α
RACK1
cell death
author_facet Ye-Jin Park
Dong Wook Choi
Sang Woo Cho
Jaeseok Han
Siyoung Yang
Cheol Yong Choi
author_sort Ye-Jin Park
title Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
title_short Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
title_full Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
title_fullStr Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
title_full_unstemmed Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
title_sort stress granule formation attenuates rack1-mediated apoptotic cell death induced by morusin
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1661-6596
1422-0067
publishDate 2020-07-01
description Stress granules are membraneless organelles composed of numerous components including ribonucleoproteins. The stress granules are characterized by a dynamic complex assembly in response to various environmental stressors, which has been implicated in the coordinated regulation of diverse biological pathways, to exert a protective role against stress-induced cell death. Here, we show that stress granule formation is induced by morusin, a novel phytochemical displaying antitumor capacity through barely known mechanisms. Morusin-mediated induction of stress granules requires activation of protein kinase R (PKR) and subsequent eIF2α phosphorylation. Notably, genetic inactivation of stress granule formation mediated by G3BP1 knockout sensitized cancer cells to morusin treatment. This protective function against morusin-mediated cell death can be attributed at least in part to the sequestration of receptors for activated C kinase-1 (RACK1) within the stress granules, which reduces caspase-3 activation. Collectively, our study provides biochemical evidence for the role of stress granules in suppressing the antitumor capacity of morusin, proposing that morusin treatment, together with pharmacological inhibition of stress granules, could be an efficient strategy for targeting cancer.
topic stress granule
morusin
PKR
eIF2α
RACK1
cell death
url https://www.mdpi.com/1422-0067/21/15/5360
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AT sangwoocho stressgranuleformationattenuatesrack1mediatedapoptoticcelldeathinducedbymorusin
AT jaeseokhan stressgranuleformationattenuatesrack1mediatedapoptoticcelldeathinducedbymorusin
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