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      The dynamic role of autophagy and MAPK signaling in determining cell fate under cisplatin stress in osteosarcoma cells

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          Abstract

          Osteosarcoma (OS) is an aggressive bone malignancy commonly observed in children and adolescents. Sub-optimal therapy for years has irretrievably compromised the chances of OS patient survival; also, lack of extensive research on this rare disease has hindered therapeutic development. Cisplatin, a common anti-tumor drug, is currently an integral part of treatment regime for OS along with methotrexate and doxorubicin. However, toxicity issues associated with combination module impede OS therapy. Also, despite the proven benefits of cisplatin, acquisition of resistance remains a concern with cisplatin-based therapy. This prompted us to investigate the molecular effects of cisplatin exposure and changes associated with acquired resistance in OS cells. Cisplatin shock was found to activate MAPK signaling and autophagy in OS cells. An activation of JNK and autophagy acted as pro-survival strategy, while ERK1/2 triggered apoptotic signals upon cisplatin stress. A crosstalk between JNK and autophagy was observed. Maximal sensitivity to cisplatin was obtained with simultaneous inhibition of both autophagy and JNK pathway. Cisplatin resistant cells were further developed by repetitive drug exposure followed by clonal selection. The resistant cells showed an altered signaling circuitry upon cisplatin exposure. Our results provide valuable cues to possible molecular alterations that can be considered for development of improved therapeutic strategy against osteosarcoma.

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          Dual role of 3-methyladenine in modulation of autophagy via different temporal patterns of inhibition on class I and III phosphoinositide 3-kinase.

          A group of phosphoinositide 3-kinase (PI3K) inhibitors, such as 3-methyladenine (3-MA) and wortmannin, have been widely used as autophagy inhibitors based on their inhibitory effect on class III PI3K activity, which is known to be essential for induction of autophagy. In this study, we systematically examined and compared the effects of these two inhibitors on autophagy under both nutrient-rich and deprivation conditions. To our surprise, 3-MA is found to promote autophagy flux when treated under nutrient-rich conditions with a prolonged period of treatment, whereas it is still capable of suppressing starvation-induced autophagy. We first observed that there are marked increases of the autophagic markers in cells treated with 3-MA in full medium for a prolonged period of time (up to 9 h). Second, we provide convincing evidence that the increase of autophagic markers is the result of enhanced autophagic flux, not due to suppression of maturation of autophagosomes or lysosomal function. More importantly, we found that the autophagy promotion activity of 3-MA is due to its differential temporal effects on class I and class III PI3K; 3-MA blocks class I PI3K persistently, whereas its suppressive effect on class III PI3K is transient. Because 3-MA has been widely used as an autophagy inhibitor in the literature, understanding the dual role of 3-MA in autophagy thus suggests that caution should be exercised in the application of 3-MA in autophagy study.
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            Role of JNK activation in apoptosis: a double-edged sword.

            JNK is a key regulator of many cellular events, including programmed cell death (apoptosis). In the absence of NF-kB activation, prolonged JNK activation contributes to TNF-a induced apoptosis. JNK is also essential for UV induced apoptosis. However, recent studies reveal that JNK can suppress apoptosis in IL-3-dependent hematopoietic cells via phosphorylation of the proapoptotic Bcl-2 family protein BAD. Thus, JNK has pro- or antiapoptotic functions, depending on cell type, nature of the death stimulus, duration of its activation and the activity of other signaling pathways.
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              Cell death by autophagy: facts and apparent artefacts.

              Autophagy (the process of self-digestion by a cell through the action of enzymes originating within the lysosome of the same cell) is a catabolic process that is generally used by the cell as a mechanism for quality control and survival under nutrient stress conditions. As autophagy is often induced under conditions of stress that could also lead to cell death, there has been a propagation of the idea that autophagy can act as a cell death mechanism. Although there is growing evidence of cell death by autophagy, this type of cell death, often called autophagic cell death, remains poorly defined and somewhat controversial. Merely the presence of autophagic markers in a cell undergoing death does not necessarily equate to autophagic cell death. Nevertheless, studies involving genetic manipulation of autophagy in physiological settings provide evidence for a direct role of autophagy in specific scenarios. This article endeavours to summarise these physiological studies where autophagy has a clear role in mediating the death process and discusses the potential significance of cell death by autophagy.
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                Author and article information

                Contributors
                Role: Editor
                Journal
                PLoS One
                PLoS ONE
                plos
                plosone
                PLoS ONE
                Public Library of Science (San Francisco, CA USA )
                1932-6203
                9 June 2017
                2017
                : 12
                : 6
                : e0179203
                Affiliations
                [001]Department of Biological Sciences, Birla Institute of Technology and Science (BITS), Pilani, Rajasthan, India
                Univerzitet u Beogradu, SERBIA
                Author notes

                Competing Interests: The authors have declared that no competing interests exist.

                • Conceptualization: RC.

                • Data curation: SM RC.

                • Formal analysis: SM SD RC.

                • Funding acquisition: RC.

                • Investigation: SM RC SD.

                • Methodology: SM RC.

                • Project administration: RC.

                • Resources: RC.

                • Software: SD KL.

                • Supervision: RC.

                • Validation: SD KL.

                • Visualization: SM RC.

                • Writing – original draft: SM RC.

                • Writing – review & editing: SM RC.

                Author information
                http://orcid.org/0000-0002-6041-0613
                Article
                PONE-D-16-50072
                10.1371/journal.pone.0179203
                5466322
                28598976
                f5351399-fdf8-4521-a5dd-7a56936a7933
                © 2017 Mukherjee et al

                This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 19 December 2016
                : 25 May 2017
                Page count
                Figures: 7, Tables: 0, Pages: 21
                Funding
                Funded by: Science and Engineering Research Board (IN)
                Award ID: SB/FT/LS-233/2012
                Award Recipient :
                This work was supported by SERB, Science and Engineering Research Board, SB/FT/LS-233/2012 dated 02 May, 2013 for Dr Rajdeep Chowdhury. The funder had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
                Categories
                Research Article
                Biology and Life Sciences
                Cell Biology
                Cell Processes
                Cell Death
                Autophagic Cell Death
                Biology and Life Sciences
                Cell Biology
                Cell Processes
                Cell Death
                Apoptosis
                Medicine and Health Sciences
                Pharmaceutics
                Drug Therapy
                Biology and life sciences
                Cell biology
                Signal transduction
                Cell signaling
                Signaling cascades
                MAPK signaling cascades
                Biology and Life Sciences
                Molecular Biology
                Molecular Biology Techniques
                Molecular Probe Techniques
                Immunoblotting
                Research and Analysis Methods
                Molecular Biology Techniques
                Molecular Probe Techniques
                Immunoblotting
                Medicine and Health Sciences
                Oncology
                Cancer Treatment
                Biology and Life Sciences
                Cell Biology
                Signal Transduction
                Cell Signaling
                Signaling Cascades
                Stress Signaling Cascade
                Biology and life sciences
                Cell biology
                Signal transduction
                Cell signaling
                Signaling cascades
                c-Jun N-terminal kinase signaling cascade
                Custom metadata
                All relevant data are within the paper and its Supporting Information files.

                Uncategorized
                Uncategorized

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